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References:
Syljuåsen, R.G. 2007: Checkpoint adaptation in human cells. Oncogene 26(40): 5833-5839
Vydzhak, O.; Bender, K.; Klermund, J.; Busch, A.; Reimann, S.; Luke, B. 2020: Checkpoint adaptation in recombination-deficient cells drives aneuploidy and resistance to genotoxic agents. Dna Repair 95: 102939
Dart, A. 2019: Checkpoint ahead - be prepared to stop!. Nature Reviews. Cancer 19(2): 61
Yue, W.; Chen, L.; Yu, L.; Zhou, B.; Yin, H.; Ren, W.; Liu, C.; Guo, L.; Zhang, Y.; Sun, L.; Zhang, K.; Xu, H.; Chen, Y. 2019: Checkpoint blockade and nanosonosensitizer-augmented noninvasive sonodynamic therapy combination reduces tumour growth and metastases in mice. Nature Communications 10(1): 2025
Gubin, M.M.; Zhang, X.; Schuster, H.; Caron, E.; Ward, J.P.; Noguchi, T.; Ivanova, Y.; Hundal, J.; Arthur, C.D.; Krebber, W-Jan.; Mulder, G.E.; Toebes, M.; Vesely, M.D.; Lam, S.S.K.; Korman, A.J.; Allison, J.P.; Freeman, G.J.; Sharpe, A.H.; Pearce, E.L.; Schumacher, T.N.; Aebersold, R.; Rammensee, H-Georg.; Melief, C.J.M.; Mardis, E.R.; Gillanders, W.E.; Artyomov, M.N.; Schreiber, R.D. 2014: Checkpoint blockade cancer immunotherapy targets tumour-specific mutant antigens. Nature 515(7528): 577-581
Fehlings, M.; Simoni, Y.; Penny, H.L.; Becht, E.; Loh, C.Y.; Gubin, M.M.; Ward, J.P.; Wong, S.C.; Schreiber, R.D.; Newell, E.W. 2017: Checkpoint blockade immunotherapy reshapes the high-dimensional phenotypic heterogeneity of murine intratumoural neoantigen-specific CD8 + T cells. Nature Communications 8(1): 562
Casulo, C. 2021: Checkpoint blockade in FL: eluding the king. Blood 137(5): 581-582
Wein, L.; Luen, S.J.; Savas, P.; Salgado, R.; Loi, S. 2018: Checkpoint blockade in the treatment of breast cancer: current status and future directions. British Journal of Cancer 119(1): 4-11
Lorrey, S.J.; Kemeny, H.R.; Fecci, P.E. 2020: Checkpoint blockade therapy for functioning pituitary adenomas. Oncoscience 7(5-6): 38-39
Walsh, M.J.; Dougan, M. 2021: Checkpoint blockade toxicities: Insights into autoimmunity and treatment. Seminars in Immunology 52: 101473
Carreau, N.A.; Armand, P.; Merryman, R.W.; Advani, R.H.; Spinner, M.A.; Herrera, A.F.; Ramchandren, R.; Hamid, M.S.; Assouline, S.; Santiago, R.; Wagner-Johnston, N.; Paul, S.; Svoboda, J.; Bair, S.M.; Barta, S.K.; Nathan, S.; Karmali, R.; Torka, P.; David, K.; Lansigan, F.; Persky, D.; Godfrey, J.; Chavez, J.C.; Xia, Y.; Diefenbach, C. 2020: Checkpoint blockade treatment sensitises relapsed/refractory non-Hodgkin lymphoma to subsequent therapy. British Journal of Haematology 191(1): 44-51
Wolchok, J.D. 2021: Checkpoint blockade: the end of the beginning. Original Articles 21(10): 621
Medema, R.H.; Macůrek, L. 2012: Checkpoint control and cancer. Oncogene 31(21): 2601-2613
Ren, W.; Cabush, A.; Irudayaraj, J. 2020: Checkpoint enrichment for sensitive detection of target bacteria from large volume of food matrices. Analytica Chimica Acta 1127: 114-121
Macpherson, A.J.; Ganal-Vonarburg, S.C. 2018: Checkpoint for gut microbes after birth. Nature 560(7719): 436-438
Wodarz, D. 2004: Checkpoint genes, ageing, and the development of cancer. Oncogene 23(47): 7799-7809
Elnair, R.; Lunning, M.A. 2020: Checkpoint inhibition in ENKTL: Kno_le_ge G_ps. Blood 136(24): 2721-2722
Spaas, M.; Sundahl, N.; Hulstaert, E.; Kruse, V.; Rottey, S.; De Maeseneer, D.; Surmont, V.; Meireson, A.; Brochez, L.; Reynders, D.; Goetghebeur, E.; Van den Begin, R.; Van Gestel, D.; Renard, V.; Dirix, P.; Mestdagh, P.; Ost, P. 2021: Checkpoint inhibition in combination with an immunoboost of external beam radiotherapy in solid tumors (CHEERS): study protocol for a phase 2, open-label, randomized controlled trial. Bmc Cancer 21(1): 514
Seiffert, M. 2018: Checkpoint inhibition in the bone marrow. Nature Biomedical Engineering 2(11): 793-794
Pringle, S.; Wang, X.; Vissink, A.; Bootsma, H.; Kroese, F.G.M. 2020: Checkpoint inhibition-induced sicca: a type Ii interferonopathy?. Clinical and Experimental Rheumatology 38 Suppl 126(4): 253-260
Stojanovic, A.; Cerwenka, A. 2018: Checkpoint inhibition: NK cells enter the scene. Nature Immunology 19(7): 650-652
Suijkerbuijk, K.P.M.; May, A.M.; van Eijs, M.J.M. 2021: Checkpoint inhibition: protecting against or predisposing for second primary tumors?. Annals of Oncology: Official Journal of the European Society for Medical Oncology 32(7): 935
Bradley, C.A. 2018: Checkpoint inhibitor combination sets the wheels IMmotion. Nature Reviews. Urology 15(8): 465
Xu, W.; Atkins, M.B.; McDermott, D.F. 2020: Checkpoint inhibitor immunotherapy in kidney cancer. Nature Reviews. Urology 17(3): 137-150
Au, M.; Body, A.; Mant, A.; Nicoll, A. 2021: Checkpoint inhibitor induced steroid refractory drug-induced liver injury. Internal Medicine Journal 51(5): 810-811
Zhang, C.; Gao, F.; Jin, S.; Gao, W.; Chen, S.; Guo, R. 2020: Checkpoint inhibitor pneumonitis in Chinese lung cancer patients: clinical characteristics and risk factors. Annals of Palliative Medicine 9(6): 3957-3965
Chang, H.-L.; Wei, P.-J.; Wu, K.-L.; Huang, H.-L.; Yang, C.-J. 2020: Checkpoint inhibitor pneumonitis mimicking COVID-19 infection during the COVID-19 pandemic. Lung Cancer 146: 376-377
Perazella, M.A.; Sprangers, B. 2021: Checkpoint inhibitor therapy-associated acute kidney injury: time to move on to evidence-based recommendations. Clinical Kidney Journal 14(5): 1301-1306
Collison, J. 2019: Checkpoint inhibitor-induced arthritis is persistent. Nature Reviews. Rheumatology 15(12): 698
Moura, C.Antonio.; Moura, C.Geraldo. 2019: Checkpoint inhibitors and arthritis: seeking balance between victories and defeats. Annals of the Rheumatic Diseases 78(9): E91
Bertamini, L.; Gay, F. 2020: Checkpoint inhibitors and myeloma: promises, deadlocks and new directions. Annals of Translational Medicine 8(12): 777
Carlo, M.I.; Voss, M.H.; Motzer, R.J. 2016: Checkpoint inhibitors and other novel immunotherapies for advanced renal cell carcinoma. Nature Reviews. Urology 13(7): 420-431
Phan, T.Giang.; Long, G.V.; Scolyer, R.A. 2015: Checkpoint inhibitors for cancer immunotherapy. Multiple checkpoints on the long road towards cancer immunotherapy. Immunology and Cell Biology 93(4): 323-325
Zander, H.; Müller-Egert, S.; Zwiewka, M.; Groß, S.; van Zandbergen, G.; Engelbergs, J.ör. 2020: Checkpoint inhibitors for cancer therapy. Bundesgesundheitsblatt Gesundheitsforschung Gesundheitsschutz 63(11): 1322-1330
Smyth, E.C.; Gambardella, V.; Cervantes, A.; Fleitas, T. 2021: Checkpoint inhibitors for gastroesophageal cancers: dissecting heterogeneity to better understand their role in first-line and adjuvant therapy. Annals of Oncology: Official Journal of the European Society for Medical Oncology 32(5): 590-599
Senior, M. 2019: Checkpoint inhibitors go viral. Nature Biotechnology 37(1): 12-17
Sasse, S.; Momotow, J.; Engert, A. 2020: Checkpoint inhibitors in Hodgkin lymphoma. Der Internist 61(7): 660-668
Alexa, T.; Antoniu, S.A.; Alexa, I.; Ilie, A.; Marinca, M.; Gafton, B.; Stefaniu, R. 2020: Checkpoint inhibitors in NSCLC for the elderly: current challenges and perspectives. Expert Review of Anticancer Therapy 2020: 1-9
Bozcuk, H.; Yıldırım, M.; Sever, Öz.; Mutlu, H.; Artaç, M. 2020: Checkpoint inhibitors in advanced nonsmall-cell lung cancer; a Bayesian network meta-analysis. Journal of Cancer Research and Therapeutics 16(4): 828-837
De Vries-Brilland, M.; McDermott, D.F.; Suárez, C.; Powles, T.; Gross-Goupil, M.; Ravaud, A.; Flippot, R.; Escudier, B.; Albigès, L. 2021: Checkpoint inhibitors in metastatic papillary renal cell carcinoma. Cancer Treatment Reviews 99: 102228
Balzarotti, M.; Santoro, A. 2020: Checkpoint inhibitors in primary mediastinal B-cell lymphoma: a step forward in refractory/relapsing patients?. Annals of Translational Medicine 8(16): 1035
Garutti, M.; Lambertini, M.; Puglisi, F. 2021: Checkpoint inhibitors, fertility, pregnancy, and sexual life: a systematic review. Esmo Open 6(5): 100276
Lamos, C.; Hunger, R.E. 2020: Checkpoint inhibitors-indications and application in melanoma patients. Zeitschrift für Rheumatologie 79(8): 818-825
Tort, F.; Hernández, S.; Beà, S.; Camacho, E.; Fernández, V.; Esteller, M.; Fraga, M.F.; Burek, C.; Rosenwald, A.; Hernández, L.; Campo, E. 2005: Checkpoint kinase 1 (CHK1) protein and mRNA expression is downregulated in aggressive variants of human lymphoid neoplasms. Leukemia 19(1): 112-117
Schuler, F.; Weiss, J.G.; Lindner, S.E.; Lohmüller, M.; Herzog, S.; Spiegl, S.F.; Menke, P.; Geley, S.; Labi, V.; Villunger, A. 2017: Checkpoint kinase 1 is essential for normal B cell development and lymphomagenesis. Nature Communications 8(1): 1697
Liu, X.-M.; Chen, F.; Wang, L.; Zhang, F.; Huo, L.-J. 2021: Checkpoint kinases are required for oocyte meiotic progression by the maintenance of normal spindle structure and chromosome condensation. Experimental Cell Research 405(2): 112657
Fan, Z.; Luo, H.; Zhou, J.; Wang, F.; Zhang, W.; Wang, J.; Li, S.; Lai, Q.; Xu, Y.; Wang, G.; Liang, A.; Xu, J. 2020: Checkpoint kinase‑1 inhibition and etoposide exhibit a strong synergistic anticancer effect on chronic myeloid leukemia cell line K562 by impairing homologous recombination DNA damage repair. Oncology Reports 44(5): 2152-2164
Carr, A.M.; Green, M.H.; Lehmann, A.R. 1992: Checkpoint policing by p53. Nature 359(6395): 486-487
Abraham, R.T. 2002: Checkpoint signalling: focusing on 53BP1. Nature Cell Biology 4(12): E277-E279
Xu, Z.; Yang, Y.; Li, B.; Li, Y.; Xia, K.; Yang, Y.; Li, X.; Wang, M.; Li, S.; Wu, H. 2018: Checkpoint suppressor 1 suppresses transcriptional activity of ERα and breast cancer cell proliferation via deacetylase SIRT1. Cell Death and Disease 9(5): 559
Clifford, D.B. 2020: Checkpoint therapy for progressive multifocal leukoencephalopathy: pointless?. European Journal of Neurology 27(11): 2114-2116
Williams, K.M. 2021: Checkpoint-blocked T cells checkmate AML. Blood 137(23): 3155-3156
Morafraile, E.C.; Diffley, J.F.X.; Tercero, Jé.Antonio.; Segurado, Mónica. 2015: Checkpoint-dependent RNR induction promotes fork restart after replicative stress. Scientific Reports 5: 7886
Zegerman, P.; Diffley, J.F.X. 2010: Checkpoint-dependent inhibition of DNA replication initiation by Sld3 and Dbf4 phosphorylation. Nature 467(7314): 474-478
Mohebi, S.; Mizuno, K'Ichi.; Watson, A.; Carr, A.M.; Murray, J.M. 2015: Checkpoints are blind to replication restart and recombination intermediates that result in gross chromosomal rearrangements. Nature Communications 6: 6357
Reijm, S.; Kissel, T.; Toes, R.E.M. 2020: Checkpoints controlling the induction of B cell mediated autoimmunity in human autoimmune diseases. European Journal of Immunology 50(12): 1885-1894
von Boehmer, H.; Melchers, F. 2010: Checkpoints in lymphocyte development and autoimmune disease. Nature Immunology 11(1): 14-20
Rodriguez-Collell, J.R.; Mifsut-Miedes, D. 2021: Checkrein Deformity of the Hallux and Second Toe after Soft-Tissue Injury. Case Reports in Orthopedics 2021: 8459586
Kurosaki, T. 2003: Checks and balances on developing B cells. Nature Immunology 4(1): 13-15
Puyol, E. 1945: Chediak's microreaction in leprosy. Revista Argentina de Dermatosifilologia 29: 314
Pandita, R.; Quadri, M.I. 1989: Chediak-Higashi syndrome. Indian Pediatrics 26(8): 825-828
Bedoya, V.; Grimley, P.M.; Duque, O. 1969: Chediak-Higashi syndrome. Archives of Pathology 88(4): 340-349
Bondarenko, G.P.; Bondarenko, A.I.; Bondarenko, L.P. 1984: Chediak-Higashi syndrome. Vrachebnoe Delo 8: 50-52
Lokuarachchi, S.K.; Lamabadusuriya, S.P.; Kodikaraarachchi, S.; Fernando, R. 1995: Chediak-Higashi syndrome. Ceylon Medical Journal 40(1): 42-43
Usha, H.N.; Prabhu, P.D.; Sridevi, M.; Baindur, K.; Balakrishnan, C.M. 1994: Chediak-Higashi syndrome. Indian Pediatrics 31(9): 1115-1119
Lazarchick, J.; McRae, B. 2005: Chediak-Higashi syndrome. Blood 105(11): 4162
Yasukawa, M.; Ishida, Y.; Bando, S. 2008: Chediak-Higashi syndrome. Japanese Journal of Clinical Hematology 49(4): 213
Dufourcq-Lagelouse, R.; Lambert, N.; Duval, M.; Viot, G.; Vilmer, E.; Fischer, A.; Prieur, M.; de Saint Basile, G. 1999: Chediak-Higashi syndrome associated with maternal uniparental isodisomy of chromosome 1. European Journal of Human Genetics: Ejhg 7(6): 633-637
Sharma, P.; Nicoli, E.-R.; Serra-Vinardell, J.; Morimoto, M.; Toro, C.; Malicdan, M.C.V.; Introne, W.J. 2020: Chediak-Higashi syndrome: a review of the past, present, and future. Drug Discovery Today. Disease Models 31: 31-36
Yliranta, A.; Mäkinen, J. 2020: Chediak-Higashi syndrome: neurocognitive and behavioral data from infancy to adulthood after bone marrow transplantation. Neurocase 2020: 1-7
Goyal, K.; Swick, M.; Mattox, A.; Pelster, M.W.; Maher, I.A. 2021: Cheek Interpolation Flaps: a Review of the Uses and Execution of Melolabial and Paranasal Interpolation Flaps. Dermatologic Surgery: Official Publication for American Society for Dermatologic Surgery 47(2): 200-205
Ho, C.-T.; Lai, H.-C.; Lin, H.-H.; Lo, L.-J.; Denadai, R. 2021: Cheek soft tissue prediction in cleft orthognathic surgery: a 3D computer-assisted investigation with comparative analysis. Journal of Plastic Reconstructive and Aesthetic Surgery: Jpras 74(10): 2683-2693
Howe, S.L.; März, M.; Pinter, J.; Krüger-Ziolek, S.; Pretty, C.; Shaw, G.M.; Desaive, T.; Möller, K.; Chase, J.G. 2020: Cheek support affects lung mechanics measurements of tidal-based spontaneous breathing. Computer Methods and Programs in Biomedicine 193: 105526
Kopecký, A.; Rokohl, A.C.; Wawer Matos, P.A.; Němčanský, J.; Heindl, L.M. 2022: Cheek-midface lifting with lateral canthoplasy for the repair of complex iatrogenic lower eyelid ectropion. European Journal of Ophthalmology 32(4): 2085-2092
Zhao, C.; Cai, L.; Nie, M.; Shang, L.; Wang, Y.; Zhao, Y. 2021: Cheerios Effect Inspired Microbubbles as Suspended and Adhered Oral Delivery Systems. Advanced Science 8(7): 2004184
Heinemann, M.K. 2021: Cheers, Silver Apricot!. Thoracic and Cardiovascular Surgeon 69(7): 583
Plante, A.M.; McCarthy, A.L.; O'Halloran, F. 2020: Cheese as a functional food for older adults: comparing the bioactive properties of different cheese matrices following simulated gastrointestinal in vitro digestion. International Journal of Food Sciences and Nutrition 2020: 1-14
Davidson, A.R. 2017: Cheese, phages and anti-CRISPRs. Nature Microbiology 2(10): 1338-1339
Cailleau, R. 1949: Cheeses and wines as sources of B vitamins. Bulletin de l'Academie Nationale de Medecine 133(9-10): 204-206
Leroux, Mël.; Hetem, R.Shelia.; Hausberger, M.; Lemasson, A. 2018: Cheetahs discriminate familiar and unfamiliar human voices. Scientific Reports 8(1): 15516
Heinrich, S.K.; Hofer, H.; Courtiol, A.; Melzheimer, Jörg.; Dehnhard, M.; Czirják, Gábor.Á.; Wachter, B. 2017: Cheetahs have a stronger constitutive innate immunity than leopards. Scientific Reports 7: 44837
Odier, C. 1948: Chef's value and valence. Schweizer Archiv für Neurologie und Psychiatrie. Archives Suisses de Neurologie et de Psychiatrie. Archivio Svizzero di Neurologia e Psichiatria 61(1-2): 408-410
Obbagy, J.E.; Condrasky, M.D.; Roe, L.S.; Sharp, J.L.; Rolls, B.J. 2011: Chefs' opinions about reducing the calorie content of menu items in restaurants. Obesity 19(2): 332-337
Condrasky, M.; Ledikwe, J.H.; Flood, J.E.; Rolls, B.J. 2007: Chefs' opinions of restaurant portion sizes. Obesity 15(8): 2086-2094
Hellebuyck, T.; Couck, L.; Ducatelle, R.; Van den Broeck, W.; Marschang, R.E. 2021: Cheilitis Associated with a Novel Herpesvirus in two Panther Chameleons (Furcifer pardalis). Journal of Comparative Pathology 182: 58-66
Burckhardt, W. 1945: Cheilitis glandularis superficialis suppurativa (bältz). Dermatologica 91: 247
Faninger, A.; Isvaneski, M. 1954: Cheilitis granulomatosa (Miescher). Medicinski Pregled 7(2): 147-151
Kumekawa, M.; Yamamoto, T. 2020: Cheilitis granulomatosa in a child with juvenile periodontal disease. Journal of Dermatology 47(11): E397-E398
Napier, S.S.; MacDonald, D.G.; Lamey, P.J. 1996: Cheilo-candidosis in an adult. British Dental Journal 181(9): 336-338
Rodriguez Segade, F. 1947: Cheiloplasties and Stenon's duct. Galicia-Clinica 19(3): 163-175
Virenque, M. 1946: Cheiloplasty by the curtain method. Revue d'Odonto-Stomatologie 2: 237-253
De Cardoso, A.A.; Gomes, G.L.; Torres, C.M. 1956: Cheiloschisis and cheilognatoschisis inferior. Memorias do Instituto Oswaldo Cruz 54(2): 409-412
Jeddy, N.; Radhika, T.; Sai Lakshmi, L.J.; Khodabux, R.J.; Srilekha, R.; Sruthi, G. 2019: Cheiloscopy and dermatoglyphics as screening tools for type 2 diabetes mellitus. Journal of Forensic Dental Sciences 11(3): 163-166
Shivakumar, H.G.; Nandini, D.B.; Mohan Kumar, K.P.; Selvamani, M.; Priya, N.K.; Madhushankari, G.S. 2021: Cheiloscopy and dermatoglyphics in normal and obese individuals: a study in Indian subpopulation. Journal of Oral and Maxillofacial Pathology: Jomfp 25(1): 61-67
Thermadam, T.P.; Chatra, L.; Ahsan, A. 2020: Cheiloscopy in gender determination: a study on 2112 individuals. Journal of Family Medicine and Primary Care 9(3): 1386-1390
Reichstein, T.; Schwarz, H. 1946: Cheirotoxin, a cardiac glycoside from Cheiranthus Cheiri, gold lacquer seeds. Schweizerische Apotheker Zeitung 84(42): 767
Bugyi, B.; Chekhov, A.P. 1980: Chekhov, the physician. Orvosi Hetilap 121(46): 2834-2837
Ionescu, R.; Campbell, B.; Wu, R.; Aytan, E.; Patalano, A.; Ruiz, I.; Howell, S.W.; McDonald, A.E.; Beechem, T.E.; Mkhoyan, K.Andre.; Ozkan, M.; Ozkan, C.S. 2017: Chelant Enhanced Solution Processing for Wafer Scale Synthesis of Transition Metal Dichalcogenide Thin Films. Scientific Reports 7(1): 6419
Chen, Z-Ning.; Yoshimura, T.; Abe, M.; Sasaki, Y.; Ishizaka, S.; Kim, H-Boo.; Kitamura, N. 2001: Chelate Formation around a Hexarhenium Cluster Core by the Diphosphane Ligand Ph 2 P(CH 2 ) 6 PPh 2. Angewandte Chemie 40(1): 239-242
Varindani, A.; Anantha Singh, T.S.; Menon, P.; Nidheesh, P.V. 2021: Chelate modified Electro-Fenton process for mixed industrial wastewater treatment. Environmental Technology 2021: 1-21
Paciello, R.; Siggel, L.; Röper, M. 1999: Chelated Bisphosphites with a Calix[4]arene Backbone: new Ligands for Rhodium-Catalyzed Low-Pressure Hydroformylation with Controlled Regioselectivity. Angewandte Chemie 38(13-14): 1920-1923
Lamprecht, Z.; Malan, F.P.; Fernández, I.; Lotz, S.; Bezuidenhout, D.I. 2020: Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry. Dalton Transactions 49(43): 15339-15354
Zuo, P.; Yin, G. 2021: Chelated electrolytes for divalent metal ions. Science 374(6564): 156
Mills, S.C.; Starr, N.E.; Bohannon, N.J.; Andrew, J.S. 2021: Chelating Agent Functionalized Substrates for the Formation of Thick Films via Electrophoretic Deposition. Frontiers in Chemistry 9: 703528
Nurchi, V.M.; Cappai, R.; Crisponi, G.; Sanna, G.; Alberti, G.; Biesuz, R.; Gama, S. 2020: Chelating Agents in Soil Remediation: a new Method for a Pragmatic Choice of the Right Chelator. Frontiers in Chemistry 8: 597400
Ying, J.; Wang, J.-S.; Yao, L.; Lu, W.; Wu, X.-F. 2020: Chelating Group Enabled Palladium-Catalyzed Regiodivergent Carbonylative Synthesis of 2,3-Dihydroquinolin-4(1H)-ones. Chemistry 26(64): 14565-14569
Tang, C.; Ku, K.H.; Lennon Luo, S.-X.; Concellón, A.; Wu, Y.-C.M.; Lu, R.-Q.; Swager, T.M. 2020: Chelating Phosphine Ligand Stabilized AuNPs in Methane Detection. Acs Nano 14(9): 11605-11612
Fitzgerald, C. 1980: Chelating agent in non-USP calcium gluconate injection. American Journal of Hospital Pharmacy 37(11): 1474; 1480
Shulha, T.N.; Serdechnova, M.; Lamaka, S.V.; Wieland, D.C.F.; Lapko, K.N.; Zheludkevich, M.L. 2018: Chelating agent-assisted in situ LDH growth on the surface of magnesium alloy. Scientific Reports 8(1): 16409
Richardson, G.M. 1961: Chelating agents for selective growth of bacteria. Nature 189: 78-79
Sundberg, M.W.; Meares, C.F.; Goodwin, D.A.; Diamanti, C.I. 1974: Chelating agents for the binding of metal ions to macromolecules. Nature 250(467): 587-588
Schubert, J.; Fried, J.F. 1960: Chelating agents in the treatment of poisoning by polymerizable radioelements. Nature 185(4712): 551-552
Guo, R.; Liu, Y.; Huo, Y.; Zhang, A.; Hong, J.; Ai, Y. 2022: Chelating effect between uranyl and pyridine N containing covalent organic frameworks: a combined experimental and DFT approach. Journal of Colloid and Interface Science 606(Part 2): 1617-1626
Fortuna, S.; Fogolari, F.; Scoles, G. 2015: Chelating effect in short polymers for the design of bidentate binders of increased affinity and selectivity. Scientific Reports 5: 15633
Zhang, M.; Feng, M.; Bai, X.; Liu, L.; Lin, K.; Li, J. 2022: Chelating surfactant N-lauroyl ethylenediamine triacetate enhanced electrokinetic remediation of copper and decabromodiphenyl ether co-contaminated low permeability soil: Applicability analysis. Journal of Environmental Management 301: 113888
Wang, Y-Kun.; Ma, D.; Yuan, F.; Singh, K.; Pina, J.M.; Johnston, A.; Dong, Y.; Zhou, C.; Chen, B.; Sun, B.; Ebe, H.; Fan, J.; Sun, M-Jia.; Gao, Y.; Lu, Z-Hong.; Voznyy, O.; Liao, L-Sheng.; Sargent, E.H. 2020: Chelating-agent-assisted control of CsPbBr 3 quantum well growth enables stable blue perovskite emitters. Nature Communications 11(1): 3674
Groborz, O.ře.; Poláková, L.; Kolouchová, K.ýn.; Švec, P.; Loukotová, L.; Miriyala, V.M.; Francová, P.; Kučka, J.; Krijt, J.; Páral, P.; Báječný, M.; Heizer, T.áš; Pohl, R.; Dunlop, D.; Czernek, J.ří; Šefc, L.ěk.; Beneš, J.ří; Štěpánek, P.; Hobza, P.; Hrubý, M. 2020: Chelating Polymers for Hereditary Hemochromatosis Treatment. Macromolecular Bioscience 20(12): E2000254
Chen, Y.; Miller, P.G.; Ding, X.; Stowell, C.E.T.; Kelly, K.M.; Wang, Y. 2020: Chelation Crosslinking of Biodegradable Elastomers. Advanced Materials 32(43): E2003761
Deblonde, G.J-P.; Sturzbecher-Hoehne, M.; Rupert, P.B.; An, D.D.; Illy, M-Claire.; Ralston, C.Y.; Brabec, J.; de Jong, W.A.; Strong, R.K.; Abergel, R.J. 2017: Chelation and stabilization of berkelium in oxidation state +IV. Nature Chemistry 9(9): 843-849
Kurtin, A.; Orentreich, N. 1954: Chelation deactivation of nickel ion in allergic eczematous sensitivity. Journal of Investigative Dermatology 22(6): 441-445
Kosnett, M.J. 2010: Chelation for heavy metals (arsenic, lead, and mercury): protective or perilous?. Clinical Pharmacology and Therapeutics 88(3): 412-415
Cherian, M.G. 1980: Chelation of cadmium with BAL and DTPA in rats. Nature 287(5785): 871-872
Harris, L.K. 1989: Chelation therapy and Uncle John. Cmaj: Canadian Medical Association Journal 141(2): 98
Strassberg, D. 2002: Chelation therapy for patients with ischemic heart disease. JAMA 287(16): 2077; Author Reply 2077-8
Perry, H.M. 1961: Chelation therapy in circulatory and sclerosing diseases. Federation Proceedings 20(3)pt 2: 254-257
Vaughn, B.A.; Ahn, S.H.; Aluicio-Sarduy, E.; Devaraj, J.; Olson, A.P.; Engle, J.; Boros, E. 2020: Chelation with a twist: a bifunctional chelator to enable room temperature radiolabeling and targeted PET imaging with scandium-44. Chemical Science 11(2): 333-342
David-Chausse, F. 1957: Chelation, a topical therapy. Journal de Medecine de Bordeaux et du Sud-Ouest 134(12): 1484-1487
Callaway, E. 2012: Chelation-therapy heart trial draws fire. Nature 491(7424): 313-315
Wong, D.E.; Cunniffe, J.C.; Scher, H.B.; Jeoh, T. 2020: Chelator Regulation of in Situ Calcium Availability to Enable Spray-Dry Microencapsulation in Cross-Linked Alginates. Acs Omega 5(38): 24453-24460
Shemon, A.N.; Sluyter, R.; Conigrave, A.D.; Wiley, J.S. 2004: Chelerythrine and other benzophenanthridine alkaloids block the human P2X7 receptor. British Journal of Pharmacology 142(6): 1015-1019
Jana, J.; Mondal, S.; Bhattacharjee, P.; Sengupta, P.; Roychowdhury, T.; Saha, P.; Kundu, P.; Chatterjee, S. 2017: Chelerythrine down regulates expression of VEGFA, BCL2 and KRAS by arresting G-Quadruplex structures at their promoter regions. Scientific Reports 7: 40706
Yang, T.; Xu, R.; Su, Q.; Wang, H.; Liu, F.; Dai, B.; Wang, B.; Zhang, Y. 2020: Chelerythrine hydrochloride inhibits proliferation and induces mitochondrial apoptosis in cervical cancer cells via PI3K/BAD signaling pathway. Toxicology in Vitro: An International Journal Published in Association with Bibra 68: 104965
Yang, B.; Zhang, D.; Qian, J.; Cheng, Y. 2020: Chelerythrine suppresses proliferation and metastasis of human prostate cancer cells via modulating MMP/TIMP/NF-κB system. Molecular and Cellular Biochemistry 474(1-2): 199-208
Zhou, F.; Cao, G.; Dai, S.; Li, G.; Li, H.; Ding, Z.; Hou, S.; Xu, B.; You, W.; Wiseglass, G.; Shi, F.; Yang, X.; Rubinstein, R.; Jin, Y. 2020: Chelicerata sDscam isoforms combine homophilic specificities to define unique cell recognition. Proceedings of the National Academy of Sciences of the United States of America 117(40): 24813-24824
Tanaka, G.; Hou, X.; Ma, X.; Edgecombe, G.D.; Strausfeld, N.J. 2013: Chelicerate neural ground pattern in a Cambrian great appendage arthropod. Nature 502(7471): 364-367
Jang, H.-J.; Yang, J.H.; Hong, E.; Jo, E.; Lee, S.; Lee, S.; Choi, J.S.; Yoo, H.S.; Kang, H. 2021: Chelidonine Induces Apoptosis via GADD45a-p53 Regulation in Human Pancreatic Cancer Cells. Integrative Cancer Therapies 20: 15347354211006191
Xie, Y.-J.; Gao, W.-N.; Wu, Q.-B.; Yao, X.-J.; Jiang, Z.-B.; Wang, Y.-W.; Wang, W.-J.; Li, W.; Hussain, S.; Liu, L.; Leung, E.L.-H.; Fan, X.-X. 2020: Chelidonine selectively inhibits the growth of gefitinib-resistant non-small cell lung cancer cells through the EGFR-AMPK pathway. Pharmacological Research 159: 104934
Popovic, A.; Deljanin, M.; Popovic, S.; Todorovic, D.; Djurdjevic, P.; Matic, S.; Stankovic, M.; Avramovic, D.; Baskic, D. 2021: Chelidonium majus crude extract induces activation of peripheral blood mononuclear cells and enhances their cytotoxic effect toward HeLa cells. International Journal of Environmental Health Research 2021: 1-13
James, A.; Page-Karjian, A.; Charles, K.E.; Edwards, J.; Gregory, C.R.; Cheetham, S.; Buter, B.P.; Marancik, D.P. 2021: Chelonid Alphaherpesvirus 5 Prevalence and first Confirmed Case of Sea Turtle Fibropapillomatosis in Grenada, West Indies. Animals: An Open Access Journal from Mdpi 11(6)
Tung, C-Wei.; Wang, C-Chi.; Wang, S-Shan.; Lin, P. 2018: ChemDIS-Mixture: an online tool for analyzing potential interaction effects of chemical mixtures. Scientific Reports 8(1): 10047
Waroquiers, D.; George, J.; Horton, M.; Schenk, S.; Persson, K.A.; Rignanese, G.M.; Gonze, X.; Hautier, G. 2020: ChemEnv: a fast and robust coordination environment identification tool. Acta Crystallographica Section B Structural Science Crystal Engineering and Materials 76(Part 4): 683-695
Tao, M.; Keller, A.A. 2020: ChemFate: a fate and transport modeling framework for evaluating radically different chemicals under comparable conditions. Chemosphere 255: 126897
Goli, E.; Vyas, S.; Koric, S.; Sobh, N.; Geubelle, P.H. 2020: ChemNet: a Deep Neural Network for Advanced Composites Manufacturing. Journal of Physical Chemistry. B 124(42): 9428-9437
Weir, H.; Thompson, K.; Woodward, A.; Choi, B.; Braun, A.; Martínez, T.J. 2021: ChemPix: automated recognition of hand-drawn hydrocarbon structures using deep learning. Chemical Science 12(31): 10622-10633
Hu, B.; Lin, A.; Brinson, L.C. 2021: ChemProps: a RESTful APi enabled database for composite polymer name standardization. Journal of Cheminformatics 13(1): 22
Hanthazi, A.én.; Jespers, P.; Vegh, G.ég.; Dubois, C.; Hubesch, G.ér.; Springael, J.-Y.; Dewachter, L.; Mc Entee, K. 2020: Chemerin Added to Endothelin-1 Promotes Rat Pulmonary Artery Smooth Muscle Cell Proliferation and Migration. Frontiers in Physiology 11: 926
Zhou, J-xian.; Liao, D.; Zhang, S.; Cheng, N.; He, H-qiong.; Ye, R.D. 2014: Chemerin C9 peptide induces receptor internalization through a clathrin-independent pathway. Acta Pharmacologica Sinica 35(5): 653-663
Shafer-Eggleton, J.; Adams-Huet, B.; Jialal, I. 2020: Chemerin Ratios to HDL-cholesterol and Adiponectin as Biomarkers of Metabolic Syndrome. Endocrine Research 45(4): 241-245
Rennier, K.; Shin, W.J.; Krug, E.; Virdi, G.; Pachynski, R.K. 2020: Chemerin Reactivates PTEN and Suppresses PD-L1 in Tumor Cells via Modulation of a Novel CMKLR1-mediated Signaling Cascade. Clinical Cancer Research: An Official Journal of the American Association for Cancer Research 26(18): 5019-5035
Reznik, E.; Jiang, H.; Hakimi, A.A. 2021: Chemerin Tips the Scales in ccRCC to Evade Ferroptosis. Cancer Discovery 11(8): 1879-1880
Acewicz, M.; Kasacka, I. 2021: Chemerin activity in selected pathological states of human body - a systematic review. Advances in Medical Sciences 66(2): 270-278
Lin, Y.; Yang, X.; Yue, W.; Xu, X.; Li, B.; Zou, L.; He, R. 2014: Chemerin aggravates DSS-induced colitis by suppressing M2 macrophage polarization. Cellular and Molecular Immunology 11(4): 355-366
Ferland, D.J.; Mullick, A.E.; Watts, S.W. 2020: Chemerin as a Driver of Hypertension: a Consideration. American Journal of Hypertension 33(11): 975-986
Zhu, L.; Huang, J.; Wang, Y.; Yang, Z.; Chen, X. 2021: Chemerin causes lipid metabolic imbalance and induces passive lipid accumulation in human hepatoma cell line via the receptor GPR1. Life Sciences 278: 119530
Huang, C.-L.; Xiao, L.-L.; Xu, M.; Li, J.; Li, S.-F.; Zhu, C.-S.; Lin, Y.-L.; He, R.; Li, X. 2021: Chemerin deficiency regulates adipogenesis is depot different through TIMP1. Genes and Diseases 8(5): 698-708
Jia, J.; Yu, F.; Xiong, Y.; Wei, W.; Ma, H.; Nisi, F.; Song, X.; Yang, L.; Wang, D.; Yuan, G.; Zhou, H. 2020: Chemerin enhances the adhesion and migration of human endothelial progenitor cells and increases lipid accumulation in mice with atherosclerosis. Lipids in Health and Disease 19(1): 207
Hu, S.; Shao, Z.; Zhang, C.; Chen, L.; Mamun, A.A.; Zhao, N.; Cai, J.; Lou, Z.; Wang, X.; Chen, J. 2020: Chemerin facilitates intervertebral disc degeneration via TLR4 and CMKLR1 and activation of NF-kB signaling pathway. Aging 12(12): 11732-11753
Lin, Y.; Yang, X.; Liu, W.; Li, B.; Yin, W.; Shi, Y.; He, R. 2017: Chemerin has a protective role in hepatocellular carcinoma by inhibiting the expression of IL-6 and GM-CSF and MDSC accumulation. Oncogene 36(25): 3599-3608
Huang, H.; Tong, T.-T.; Yau, L.-F.; Wang, J.-R.; Lai, M.-H.; Zhang, C.-R.; Wen, X.-H.; Li, S.-N.; Li, K.-Y.; Liu, J.-Q.; Ma, H.-X.; Tsang, B.K.; Jiang, Z.-H. 2020: Chemerin isoform analysis in human biofluids using an LC/MRM-MS-based targeted proteomics approach with stable isotope-labeled standard. Analytica Chimica Acta 1139: 79-87
Wang, D.; Wang, H.; Li, M.; Zhao, R. 2022: Chemerin levels and its genetic variants are associated with Gestational diabetes mellitus: a hospital-based study in a Chinese cohort. Gene 807: 145888
Jialal, I. 2021: Chemerin levels in metabolic syndrome: a promising biomarker. Archives of Physiology and Biochemistry 2021: 1-3
Jun, L.; Lin-Lin, S.; Hui, S. 2021: Chemerin promotes microangiopathy in diabetic retinopathy via activation of ChemR23 in rat primary microvascular endothelial cells. Molecular Vision 27: 575-587
Zhang, Y.; Shen, W-Jun.; Qiu, S.; Yang, P.; Dempsey, G.; Zhao, L.; Zhou, Q.; Hao, X.; Dong, D.; Stahl, A.; Kraemer, F.B.; Leung, L.L.; Morser, J. 2021: Chemerin regulates formation and function of brown adipose tissue: Ablation results in increased insulin resistance with high fat challenge and aging. Faseb Journal: Official Publication of the Federation of American Societies for Experimental Biology 35(7): E21687
Takahashi, M.; Okimura, Y.; Iguchi, G.; Nishizawa, H.; Yamamoto, M.; Suda, K.; Kitazawa, R.; Fujimoto, W.; Takahashi, K.; Zolotaryov, F.N.; Hong, K.Su.; Kiyonari, H.; Abe, T.; Kaji, H.; Kitazawa, S.; Kasuga, M.; Chihara, K.; Takahashi, Y. 2011: Chemerin regulates β-cell function in mice. Scientific Reports 1: 123
Zhang, Y.; Xu, N.; Ding, Y.; Doycheva, D.Met.; Zhang, Y.; Li, Q.; Flores, J.; Haghighiabyaneh, M.; Tang, J.; Zhang, J.H. 2019: Chemerin reverses neurological impairments and ameliorates neuronal apoptosis through ChemR23/CAMKK2/AMPK pathway in neonatal hypoxic-ischemic encephalopathy. Cell Death and Disease 10(2): 97
Li, J-Jing.; Yin, H-Kun.; Guan, D-Xian.; Zhao, J-Sha.; Feng, Y-Xiong.; Deng, Y-Zhen.; Wang, X.; Li, N.; Wang, X-Fan.; Cheng, S-Qun.; Bao, Y.; Xie, D. 2018: Chemerin suppresses hepatocellular carcinoma metastasis through CMKLR1-PTEN-Akt axis. British Journal of Cancer 118(10): 1337-1348
Buechler, C. 2014: Chemerin, a novel player in inflammatory bowel disease. Cellular and Molecular Immunology 11(4): 315-316
Chen, S.; Han, C.; Bian, S.; Chen, J.; Feng, X.; Li, G.; Wu, X. 2021: Chemerin-9 Attenuates Experimental Abdominal Aortic Aneurysm Formation in ApoE-/- Mice. Journal of Oncology 2021: 6629204
Yamamoto, A.; Sagara, A.; Otani, K.; Okada, M.; Yamawaki, H. 2021: Chemerin-9 stimulates migration in rat cardiac fibroblasts in vitro. European Journal of Pharmacology 912: 174566
An, X.; Liu, J.; Li, Y.; Dou, Z.; Li, N.; Suo, Y.; Ma, Y.; Sun, M.; Tian, Z.; Xu, L. 2021: Chemerin/CMKLR1 ameliorates nonalcoholic steatohepatitis by promoting autophagy and alleviating oxidative stress through the JAK2-STAT3 pathway. Peptides 135: 170422
Zhao, R-jun.; Wang, H. 2011: Chemerin/ChemR23 signaling axis is involved in the endothelial protection by K(ATP) channel opener iptakalim. Acta Pharmacologica Sinica 32(5): 573-580
Cash, J.L.; Bena, S.; Headland, S.E.; McArthur, S.; Brancaleone, V.; Perretti, M. 2013: Chemerin15 inhibits neutrophil-mediated vascular inflammation and myocardial ischemia-reperfusion injury through ChemR23. Embo Reports 14(11): 999-1007
Tager, J.M.; Veldsema-Currie, R.D.; Slater, E.C. 1966: Chemi-osmotic theory of oxidative phosphorylation. Nature 212(5060): 376-379
Stoll, A. 1947: Chemia and agronomy at the service of the pharmaceutical industry; digitalis, ergot and rye. Produits Pharmaceutiques 2(7): 293-302
Kozmin, S.A. 2008: Chemical "knockout" challenges the amphotericin B channel model. Nature Chemical Biology 4(1): 19-20
Al-Obaidi, R.; Salehi, H.; Desoutter, A.; Bonnet, L.; Etienne, P.; Terrer, E.; Jacquot, B.; Levallois, B.; Tassery, H.; Cuisinier, F.J.G. 2018: Chemical & Nano-mechanical Study of Artificial Human Enamel Subsurface Lesions. Scientific Reports 8(1): 4047
Attaallah, W.; Uprak, T.K.; Kara, B.; Sen, A.; Tuney, D.; Yegen, C. 2021: Chemical Ablation for Treating Anal Fistulas without Surgical Intervention: Long-Term Results. Surgical Innovation 28(6): 731-737
Zeng, S.; Kan, E. 2020: Chemical Activation of Forage Grass-Derived Biochar for Treatment of Aqueous Antibiotic Sulfamethoxazole. Acs Omega 5(23): 13793-13801
Jabba, S.V.; Diaz, A.N.; Erythropel, H.C.; Zimmerman, J.B.; Jordt, S.-E. 2020: Chemical Adducts of Reactive Flavor Aldehydes Formed in E-Cigarette Liquids Are Cytotoxic and Inhibit Mitochondrial Function in Respiratory Epithelial Cells. Nicotine and Tobacco Research: Official Journal of the Society for Research on Nicotine and Tobacco 22(Suppl 1): S25-S34
Chiochan, P.; Kaewruang, S.; Phattharasupakun, N.; Wutthiprom, J.; Maihom, T.; Limtrakul, J.; Nagarkar, S.S.; Horike, S.; Sawangphruk, M. 2017: Chemical Adsorption and Physical Confinement of Polysulfides with the Janus-faced Interlayer for High-performance Lithium-Sulfur Batteries. Scientific Reports 7(1): 17703
Athanasiadou, S.; Almvik, M.; Hellström, J.; Madland, E.; Simic, N.; Steinshamn, H.åv. 2021: Chemical Analysis and Anthelmintic Activity Against Teladorsagia Circumcincta of Nordic Bark Extracts in vitro. Frontiers in Veterinary Science 8: 666924
Chebbac, K.; Moussaoui, A.El.; Bourhia, M.; Salamatullah, A.Mohammad.; Alzahrani, A.; Guemmouh, R. 2021: Chemical Analysis and Antioxidant and Antimicrobial Activity of Essential oils from Artemisia negrei L. against Drug-Resistant Microbes. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 5902851
Bailey, K.A.; Klymenko, Y.; Feist, P.E.; Hummon, A.B.; Stack, M.Sharon.; Schultz, Z.D. 2017: Chemical Analysis of Morphological Changes in Lysophosphatidic Acid-Treated Ovarian Cancer Cells. Scientific Reports 7(1): 15295
Kim, K-Woo.; Yoon, C-Su.; Park, S-Joo.; Bae, G-Sang.; Kim, D-Gu.; Kim, Y-Chul.; Oh, H. 2021: Chemical Analysis of the Ingredients of 20% Aqueous Ethanol Extract of Nardostachys jatamansi through Phytochemical Study and Evaluation of Anti-Neuroinflammatory Component. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 5901653
Saito-Tarashima, N. 2020: Chemical Approaches for RNAi Drug Development. Yakugaku Zasshi: Journal of the Pharmaceutical Society of Japan 140(10): 1259-1268
England, W.E.; Garfio, C.M.; Spitale, R.C. 2021: Chemical Approaches to Analyzing RNA Structure Transcriptome-Wide. Chembiochem: a European Journal of Chemical Biology 22(7): 1114-1121
LeValley, P.J.; Kloxin, A.M. 2019: Chemical Approaches to Dynamically Modulate the Properties of Synthetic Matrices. Acs Macro Letters 8(1): 7-16
Raman, K.; Arungundram, S. 2022: Chemical Approaches to Prepare Modified Heparin and Heparosan Polymers for Biological Studies. Methods in Molecular Biology 2303: 289-296
Abdullah, C.S.; Ray, P.; Alam, S.; Kale, N.; Aishwarya, R.; Morshed, M.; Dutta, D.; Hudziak, C.; Banerjee, S.K.; Mallik, S.; Banerjee, S.; Bhuiyan, M.S.; Quadir, M. 2020: Chemical Architecture of Block Copolymers Differentially Abrogate Cardiotoxicity and Maintain the Anticancer Efficacy of Doxorubicin. Molecular Pharmaceutics 17(12): 4676-4690
Monge, P.; Tvilum, A.; Søgaard, A.B.; Løvschall, K.B.; Jarlstad Olesen, M.T.; Zelikin, A.N. 2020: Chemical Artificial Internalizing Receptors for Primary T Cells. Advanced Science 7(18): 2001395
Ichim, M.C.; Booker, A. 2021: Chemical Authentication of Botanical Ingredients: a Review of Commercial Herbal Products. Frontiers in Pharmacology 12: 666850
Wada, A. 2021: Chemical Biology Studies Using Vitamin a Analogs. Yakugaku Zasshi: Journal of the Pharmaceutical Society of Japan 141(4): 557-577
Huey, J.; Keutler, K.; Schultz, C. 2020: Chemical Biology Toolbox for Studying Pancreatic Islet Function - a Perspective. Cell Chemical Biology 27(8): 1015-1031
Shen, D.; Bai, Y.; Liu, Y. 2022: Chemical Biology Toolbox to Visualize Protein Aggregation in Live Cells. Chembiochem: a European Journal of Chemical Biology 23(4): E202100443
Liu, Y.; Ferguson, F.M.; Li, L.; Kuljanin, M.; Mills, C.E.; Subramanian, K.; Harshbarger, W.; Gondi, S.; Wang, J.; Sorger, P.K.; Mancias, J.D.; Gray, N.S.; Westover, K.D. 2020: Chemical Biology Toolkit for DCLK1 Reveals Connection to RNA Processing. Cell Chemical Biology 27(10): 1229-1240.E4
Brown, A.R.; Gordon, R.A.; Hyland, S.N.; Siegrist, M.S.; Grimes, C.L. 2020: Chemical Biology Tools for Examining the Bacterial Cell Wall. Cell Chemical Biology 27(8): 1052-1062
You, X-Rui.; Feng, L-Yan.; Li, R.; Zhai, H-Jin. 2017: Chemical Bonding and σ-Aromaticity in Charged Molecular Alloys: [Pd 2 As 14 ] 4- and [Au 2 Sb 14 ] 4- Clusters. Scientific Reports 7(1): 791
Lee, T.H.; Elliott, S.R. 2020: Chemical Bonding in Chalcogenides: the Concept of Multicenter Hyperbonding. Advanced Materials 32(28): E2000340
Denise Holley-Harrison, H.; Cunningham, D.; Velamuri, S.R.; Hickerson, W.L.; Hill, D.M. 2021: Chemical Burns from Secondary Exposure to Paraquat Through Mishandling Urine of a Patient with Toxic Exposure. Journal of Burn Care and Research: Official Publication of the American Burn Association 42(5): 1026-1029
Ercan, U.K.; Smith, J.; Ji, H-Feng.; Brooks, A.D.; Joshi, S.G. 2016: Chemical Changes in Nonthermal Plasma-Treated N-Acetylcysteine (NAC) Solution and Their Contribution to Bacterial Inactivation. Scientific Reports 6: 20365
Baba, B.; Caliskan, M.; Boyuk, G.; Hacisevki, A. 2021: Chemical Chaperone PBA Attenuates ER Stress and Upregulates SOCS3 Expression as a Regulator of Leptin Signaling. BIOCHEMISTRY. Biokhimiia 86(4): 480-488
Tang, C.-L.; Zhao, C.-H.; Shen, H.-Y.; Liang, Y.-P.; Wang, Z.-H. 2021: Chemical Characteristics and Causes of Groups Water in Niangziguan Spring. Huan Jing Ke Xue= Huanjing Kexue 42(3): 1416-1423
Xu, N.; Wang, T.-T.; Li, X.; Tang, R.-Z.; Guo, S.; Hu, M. 2021: Chemical Characteristics and Source Apportionment of Organic Aerosols in Atmospheric PM2.5 in Winter in Beijing. Huan Jing Ke Xue= Huanjing Kexue 42(5): 2101-2109
Fang, Y.; Cao, F.; Fan, M.-Y.; Zhang, Y.-L. 2020: Chemical Characteristics and Source Apportionment of Water-Soluble Ions in Atmosphere Aerosols over the East China Sea Island During Winter and Summer. Huan Jing Ke Xue= Huanjing Kexue 41(3): 1025-1035
Li, X.; Yu, S.; Li, L.; Guo, Y.-L. 2020: Chemical Characteristics of Groundwater and Material Sources Analysis in Shiqi River Basin. Huan Jing Ke Xue= Huanjing Kexue 41(9): 4021-4029
Deng, Y.; Ye, X.; Chen, Y.; Ren, H.; Xia, L.; Liu, Y.; Liu, M.; Liu, H.; Zhang, H.; Wang, K.; Zhang, J.; Zhang, Z. 2020: Chemical Characteristics of Platycodon grandiflorum and its Mechanism in Lung Cancer Treatment. Frontiers in Pharmacology 11: 609825
Zhao, G.; Feng, Y.; Hadiatullah, H.; Zheng, F.; Yao, Y. 2020: Chemical Characteristics of Three Kinds of Japanese Soy Sauce Based on Electronic Senses and GC-MS Analyses. Frontiers in Microbiology 11: 579808
Aimad, A.; Sanae, R.; Anas, F.; Abdelfattah, E.Moussaoui.; Bourhia, M.; Mohammad Salamatullah, A.; Alzahrani, A.; Alyahya, H.Khalil.; Albadr, N.A.; Abdelkrim, A.; El Barnossi, A.; Noureddine, E. 2021: Chemical Characterization and Antioxidant, Antimicrobial, and Insecticidal Properties of Essential Oil from Mentha pulegium L. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 1108133
Sivakumar, J.S.; Ajay, R.; Sudhakar, V.; Ravivarman, C.; Vignesh, S.; Ahamed, S. 2021: Chemical Characterization and Physical Properties of Dental Restorative Composite Resin with a Novel Multifunctional Cross-linking Comonomer. Journal of Contemporary Dental Practice 22(6): 630-636
Müller-Sepúlveda, A.; Chevecich, C.C.; Jara, J.é A.; Belmar, C.; Sandoval, P.; Meyer, R.ío.S.; Quijada, R.úl.; Moura, S.; López-Muñoz, R.; Díaz-Dosque, M.; Molina-Berríos, A. 2020: Chemical Characterization of Lavandula dentata Essential Oil Cultivated in Chile and its Antibiofilm Effect against Candida albicans. Planta Medica 86(16): 1225-1234
Becerra, L.D.; Ruíz, R.Y.; Rodríguez Cortina, J.; Quintanilla-Carvajal, M.X.; Coy-Barrera, E.; Escobar Parra, S.án. 2021: Chemical Characterization of Quality-Related Compounds in Cocoa Matrices: An Overview of Analytical Methods Applied for their Analysis. Critical Reviews in Analytical Chemistry 2021: 1-29
Annunziato, K.M.; Doherty, J.; Lee, J.; Clark, J.M.; Liang, W.; Clark, C.W.; Nguyen, M.; Roy, M.A.; Timme-Laragy, A.R. 2020: Chemical Characterization of a Legacy Aqueous Film-Forming Foam Sample and Developmental Toxicity in Zebrafish (Danio rerio). Environmental Health Perspectives 128(9): 97006
Zapata, Félix.; García-Ruiz, C. 2020: Chemical Classification of Explosives. Critical Reviews in Analytical Chemistry 2020: 1-18
Fan, Y.; Feng, H.; Liu, L.; Zhang, Y.; Xin, X.; Gao, D. 2020: Chemical Components and Antibacterial Activity of the Essential Oil of Six Pyrrosia Species. Chemistry and Biodiversity 17(10): E2000526
Chen, L.; Liu, L.; Abdulla, R.; Tursun, X.; Xin, X.; Aisa, H.Akber. 2020: Chemical Components and Hepatoprotective Mechanism of Xwak Granule in Mice Treated with Acute Alcohol. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2020: 8538474
Zhao, X.-N.; Wang, S.-B.; Yang, J.-R.; Ma, Q.-H.; Liu, Y.; Zhang, R.-Q. 2021: Chemical Components and Sources of PM2.5 and their Evolutive Characteristics in Zhengzhou. Huan Jing Ke Xue= Huanjing Kexue 42(8): 3633-3643
Morimoto, G.; Kawahira, H.; Takayama, S.; Lefor, A.K. 2022: Chemical Components of Smoke Produced from Versatile Training Tissue Models Using Electrocautery. Simulation in Healthcare: Journal of the Society for Simulation in Healthcare 17(1): 29-34
Dalli, M.; Daoudi, N.E.; Azizi, S.-E.; Benouda, H.; Bnouham, M.; Gseyra, N. 2021: Chemical Composition Analysis Using HPLC-UV/GC-MS and Inhibitory Activity of Different Nigella sativa Fractions on Pancreatic α-Amylase and Intestinal Glucose Absorption. Biomed Research International 2021: 9979419
Bouhajeb, R.; Selmi, S.; Nakbi, A.; Jlassi, I.; Montevecchi, G.; Flamini, G.; Zarrad, I.; Dabbou, S. 2020: Chemical Composition Analysis, Antioxidant, and Antibacterial Activities of Eggplant Leaves. Chemistry and Biodiversity 17(12): E2000405
Yang, W.-C.; Zhang, Y.-Y.; Li, Y.-J.; Nie, Y.-Y.; Liang, J.-Y.; Liu, Y.-Y.; Liu, J.-S.; Zhang, Y.-P.; Song, C.; Qian, Z.-J.; Zhang, Y. 2020: Chemical Composition and Anti-Alzheimer's Disease-Related Activities of a Functional Oil from the Edible Seaweed Hizikia fusiforme. Chemistry and Biodiversity 17(8): E2000055
Dissanayake, A.A.; Mills, G.L.; Bonito, G.; Rennick, B.; Nair, M.G. 2021: Chemical Composition and Anti-Inflammatory and Antioxidant Activities of Extracts from Cultivated Morel Mushrooms, Species of Genus Morchella (Ascomycota). International Journal of Medicinal Mushrooms 23(9): 73-83
Jaber, H.; Oubihi, A.; Ouryemchi, I.; Boulamtat, R.; Oubayoucef, A.; Bourkhiss, B.; Ouhssine, M. 2021: Chemical Composition and Antibacterial Activities of Eight Plant Essential Oils from Morocco against Escherichia coli Strains Isolated from Different Turkey Organs. Biochemistry Research International 2021: 6685800
Azimkhanova, B.B.; Ustenova, G.O.; Sharipov, K.O.; Rakhimov, K.D.; Sayakova, G.M.; Jumagaziyeva, A.B.; Flisyuk, E.V.; Gemejiyeva, N.G. 2021: Chemical Composition and Antimicrobial Activity of Subcritical CO2 Extract of Lepidium latifolium L. (Brassicaceae). International Journal of Biomaterials 2021: 4389967
Shiromi, P.Samaraweera.Arachchige.Ishara.; Hewawasam, R.Punyakanthi.; Jayalal, R.Gedara.Udeni.; Rathnayake, H.; Wijayaratne, W.Mudiyanselage.Dilip.Gaya.Bandara.; Wanniarachchi, D. 2021: Chemical Composition and Antimicrobial Activity of Two Sri Lankan Lichens, Parmotrema rampoddense , and Parmotrema tinctorum against Methicillin-Sensitive and Methicillin-Resistant Staphylococcus aureus. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 9985325
Chatoui, K.; Harhar, H.; El Kamli, T.; Tabyaoui, M. 2020: Chemical Composition and Antioxidant Capacity of Lepidium sativum Seeds from Four Regions of Morocco. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2020: 7302727
Huang, C.-W.; Hung, Y.-C.; Chen, L.-Y.; Asatiani, M.; Elisashvili, V.I.; Klarsfeld, G.; Melamed, D.; Fares, B.; Wasser, S.P.; Mau, J.-L. 2021: Chemical Composition and Antioxidant Properties of Different Combinations of Submerged Cultured Mycelia of Medicinal Mushrooms. International Journal of Medicinal Mushrooms 23(8): 1-24
Alizadeh Behbahani, B.; Falah, F.; Lavi Arab, F.; Vasiee, M.; Tabatabaee Yazdi, F. 2020: Chemical Composition and Antioxidant, Antimicrobial, and Antiproliferative Activities of Cinnamomum zeylanicum Bark Essential Oil. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2020: 5190603
Nkuimi Wandjou, J.G.; Quassinti, L.; Gudžinskas, Z.; Nagy, D.U.; Cianfaglione, K.; Bramucci, M.; Maggi, F. 2020: Chemical Composition and Antiproliferative Effect of Essential Oils of Four Solidago Species (S. canadensis, S. gigantea, S. virgaurea and S.×niederederi). Chemistry and Biodiversity 17(11): E2000685
Hanif, M.U.; Hussain, A.I.; Aslam, N.; Kamal, G.M.; Chatha, S.A.S.; Shahida, S.; Khalid, M.; Hussain, R. 2020: Chemical Composition and Bioactivities of Essential Oil from Leaves of Syzygium cumini (L.) Skeels Native to Punjab, Pakistan. Chemistry and Biodiversity 17(8): E1900733
Muslimin, L.; Burhan, A.; Khairuddin, K.; Kriswanty, C.; Arsyandi, A.; Megawati, M. 2020: Chemical Composition and Bioactivity of Vitex cofassus Reinw. Extracts on the Larval and Pupal Stages of Aedes aegypti. Journal of Pharmacy and Bioallied Sciences 12(1): 77-81
Yang, Z.-D.; Zhang, Y.; Zhao, W.-H.; Shu, Z.-M. 2020: Chemical Composition and Biological Activities of Endophytic Fungus Talaromyces Wortmannii LGT-4, Cultured in CYM Medium. Iranian Journal of Pharmaceutical Research: Ijpr 19(2): 259-263
Nartey, D.; Gyesi, J.N.; Borquaye, L.S. 2021: Chemical Composition and Biological Activities of the Essential Oils of Chrysophyllum albidum G. Don (African Star Apple). Biochemistry Research International 2021: 9911713
Lahmadi, G.; Lahmar, A.; Znati, M.; Elaieb, M.T.; Khouja, M.L.; Ascrizzi, R.; Flamini, G.; Harrath, A.H.; Chekir-Ghedira, L.; Jannet, H.B. 2021: Chemical Composition and Cytotoxic Activity of Eucalyptus torquata Luehm. and Eucalyptus salmonophloia F. Muell. Trunk Bark Essential Oils against Human SW620 and MDA-MB-231 Cancer Cell Lines. Chemistry and Biodiversity 18(11): E2100315
Gebremariam, T.; Belay, S. 2021: Chemical Composition and Digestibility of Major Feed Resources in Tanqua-Abergelle District of Central Tigray, Northern Ethiopia. Thescientificworldjournal 2021: 5234831
Nazarudin, M.Farhan.; Isha, A.; Mastuki, S.Nurulhuda.; Ain, N.Mohd.; Mohd Ikhsan, N.Fatin.; Abidin, A.Zainal.; Aliyu-Paiko, M. 2020: Chemical Composition and Evaluation of the α -Glucosidase Inhibitory and Cytotoxic Properties of Marine Algae Ulva intestinalis, Halimeda macroloba , and Sargassum ilicifolium. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2020: 2753945
Aidoo, O.; Kuntworbe, N.; Owusu, F.W.A.; Nii Okantey Kuevi, D. 2021: Chemical Composition and in Vitro Evaluation of the Mosquito (Anopheles) Repellent Property of Neem (Azadirachta indica) Seed Oil. Journal of Tropical Medicine 2021: 5567063
Zhao, Q.; Li, X.-R.; Wang, G.-X.; Zhang, L.; Yang, Y.; Liu, S.-Q.; Sun, N.-N.; Huang, Y.; Lei, W.-K.; Liu, X.-G. 2021: Chemical Composition and Source Analysis of PM2.5 in Yuncheng, Shanxi Province in Autumn and Winter. Huan Jing Ke Xue= Huanjing Kexue 42(4): 1626-1635
Ho, K.; Kim, K.S.; de Beer, S.; Walker, G.C. 2021: Chemical Composition and Strain at Interfaces between Different Morphologies in Block Copolymer Thin Films. Langmuir: the Acs Journal of Surfaces and Colloids 37(43): 12723-12731
Kalitukha, L.; Sari, M. 2021: Chemical Composition and Ultraviolet Absorption Activity of an Aqueous Alkali Extract from the Fruiting Bodies of the Tinder Conk Mushroom, Fomes fomentarius (Agaricomycetes). International Journal of Medicinal Mushrooms 23(4): 23-37
Harrabi, S.; Ferchichi, A.; Fellah, H.; Feki, M.; Hosseinian, F. 2021: Chemical Composition and in vitro Anti-inflammatory Activity of Wheat Germ Oil Depending on the Extraction Procedure. Journal of Oleo Science 70(8): 1051-1058
Peng, L.; Xiong, Y.; Wang, M.; Han, M.; Cai, W.; Li, Z. 2018: Chemical Composition of Essential Oil in Mosla Chinensis Maxim Cv. Jiangxiangru and its Inhibitory Effect on Staphylococcus Aureus Biofilm Formation. Open Life Sciences 13: 1-10
Abifarin, T.O.; Otunola, G.A.; Afolayan, A.J. 2020: Chemical Composition of Essential Oils Obtained from Heteromorpha arborescens (Spreng.) Cham. and Schltdl Leaves Using two Extraction Methods. Thescientificworldjournal 2020: 9232810
Shamout, M.; Wang, P.; Wong, F.; Chen, W.; Kumagai, K.; Pérez, J.é J.; Watson, C.H.; Valentín-Blasini, L.; Tanz, L.; Herzig, C.; Oakley, L.P.; Peak, C.M.; Heinzerling, A.; Williams, R.J.; Hess, C.; Wang, C.; Planche, S.; Al-Shawaf, M.; Melstrom, P.; Marynak, K.; Tynan, M.A.; Agaku, I.T.; King, B.A. 2021: Chemical Composition of JUUL Pods Collected from Students in California High Schools. Journal of Adolescent Health: Official Publication of the Society for Adolescent Medicine 69(2): 342-345
Yang, L.; Liu, R.; Fan, A.; Zhao, J.; Zhang, Y.; He, J. 2020: Chemical Composition of Pterospermum heterophyllum Root and its Anti-Arthritis Effect on Adjuvant-Induced Arthritis in Rats via Modulation of Inflammatory Responses. Frontiers in Pharmacology 11: 584849
Vera, R.; Mondon, J.M.; Pieribattesti, J.C. 1993: Chemical Composition of The Essential Oil and Aqueous Extract of Plectranthus amboinicus. Planta Medica 59(2): 182-183
Kaasik, H.; Souza, R.C.Z.; Zandonadi, Fávia.S.; Tófoli, Lís.Fernando.; Sussulini, A. 2020: Chemical Composition of Traditional and Analog Ayahuasca. Journal of Psychoactive Drugs 2020: 1-11
Rashan, L.; White, A.; Haulet, M.; Favelin, N.; Das, P.; Cock, I.Edwin. 2021: Chemical Composition, Antibacterial Activity, and Antibiotic Potentiation of Boswellia sacra Flueck. Oleoresin Extracts from the Dhofar Region of Oman. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 9918935
Chen, Q.; Zhao, X.; Lu, T.; Yang, Y.; Hong, Y.; Tian, M.; Zhou, Y. 2021: Chemical Composition, Antibacterial, and Anti-Inflammatory Activities of Essential Oils from Flower, Leaf, and Stem of Rhynchanthus beesianus. Biomed Research International 2021: 5562461
Wu, P.; Tang, X.; Jian, R.; Li, J.; Lin, M.; Dai, H.; Wang, K.; Sheng, Z.; Chen, B.; Xu, X.; Li, C.; Lin, Z.; Zhang, Q.; Zheng, X.; Zhang, K.; Li, D.; Hong, W.D. 2021: Chemical Composition, Antimicrobial and Insecticidal Activities of Essential Oils of Discarded Perfume Lemon and Leaves (Citrus Limon (L.) Burm. F.) as Possible Sources of Functional Botanical Agents. Frontiers in Chemistry 9: 679116
Rejeb, I.B.; Dhen, N.; Gargouri, M.; Boulila, A. 2020: Chemical Composition, Antioxidant Potential and Enzymes Inhibitory Properties of Globe Artichoke By-Products. Chemistry and Biodiversity 17(9): E2000073
Haile, T.; Cardoso, S.M.; de Oliveira Raphaelli, C.; Pereira, O.ív.R.; Pereira, E.D.S.; Vizzotto, M.ár.; Nora, L.; Asfaw, A.A.; Periasamy, G.; Karim, A. 2021: Chemical Composition, Antioxidant Potential, and Blood Glucose Lowering Effect of Aqueous Extract and Essential Oil of Thymus Serrulatus Hochst. Ex Benth. Frontiers in Pharmacology 12: 621536
Bayala, B.; Nadembega, C.; Guenné, S.; Buñay, J.; Mahoukèdè Zohoncon, T.éo.; Wendkuuni Djigma, F.; Yonli, A.; Baron, S.èr.; Figueredo, G.; A Lobaccaro, J.-M.; Simpore, J. 2020: Chemical Composition, Antioxidant and Cytotoxic Activities of <i>Hyptis suaveolens</i> (L.) Poit. Essential Oil on Prostate and Cervical Cancers Cells. Pakistan Journal of Biological Sciences: Pjbs 23(9): 1184-1192
Zaabat, N.; Hay, A.-E.; Michalet, S.; Skandrani, I.ès.; Chekir-Ghedira, L.; Dijoux-Franca, M.-G.èv.; Akkal, S. 2020: Chemical Composition, Antioxidant, Genotoxique and Antigenotoxic Potentials of Phlomis Bovei de Noé Aerial Parts. Iranian Journal of Pharmaceutical Research: Ijpr 19(1): 282-291
Babotă, M.; Voştinaru, O.; Păltinean, R.; Mihali, C.; Dias, M.I.ês.; Barros, L.; Ferreira, I.C.F.R.; Mocan, A.; Crişan, O.; Nicula, C.; Crişan, G. 2021: Chemical Composition, Diuretic, and Antityrosinase Activity of Traditionally Used Romanian Cerasorum stipites. Frontiers in Pharmacology 12: 647947
Revilla-León, M.; Morillo, J.A.; Att, W.; Özcan, M. 2021: Chemical Composition, Knoop Hardness, Surface Roughness, and Adhesion Aspects of Additively Manufactured Dental Interim Materials. Journal of Prosthodontics: Official Journal of the American College of Prosthodontists 30(8): 698-705
Chen, X.; He, Y.; Deng, Y. 2021: Chemical Composition, Pharmacological, and Toxicological Effects of Betel Nut. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 1808081
Zielinski, A.ác.A.F.; Haminiuk, C.W.I.; Nunes, C.A.; Schnitzler, E.; van Ruth, S.M.; Granato, D. 2014: Chemical Composition, Sensory Properties, Provenance, and Bioactivity of Fruit Juices as Assessed by Chemometrics: a Critical Review and Guideline. Comprehensive Reviews in Food Science and Food Safety 13(3): 300-316
Lim, C.Y.; Abbatt, J.P. 2020: Chemical Composition, Spatial Homogeneity, and Growth of Indoor Surface Films. Environmental Science and Technology 54(22): 14372-14379
Omoba, O.S.; Oyewole, G.O.; Oloniyo, R.O. 2020: Chemical Compositions and Antioxidant Properties of Orange Fleshed Sweet Potato Leaves and the Consumer Acceptability in Vegetable Soup. Preventive Nutrition and Food Science 25(3): 293-300
Yi, Y.-N.; Hou, Z.-F.; Yang, Q.-C.; Liu, X.-d.; Li, Z.; Meng, J.-J.; Yan, L.; Wei, B.-J.; Fu, M.-X. 2020: Chemical Compositions and Sources of n-Alkanes and Saccharides in PM2.5 from Taian City During the Summer. Huan Jing Ke Xue= Huanjing Kexue 41(3): 1045-1055
Azizi, M.N.; Loh, T.C.; Foo, H.L.; Akit, H.; Izuddin, W.I.; Shazali, N.; Teik Chung, E.L.; Samsudin, A.A. 2021: Chemical Compositions of Brown and Green Seaweed, and Effects on Nutrient Digestibility in Broiler Chickens. Animals: An Open Access Journal from Mdpi 11(7)
Volckmar, J.; Knop, L.; Hirsch, T.; Frentzel, S.; Erck, C.; van Ham, M.; Stegemann-Koniszewski, S.; Bruder, D. 2021: Chemical Conjugation of a Purified DEC-205-Directed Antibody with Full-Length Protein for Targeting Mouse Dendritic Cells in Vitro and in Vivo. Journal of Visualized Experiments: Jove 2021(168)
Zhang, W.; Li, H.; Pan, L.; Xu, J.; Yang, X.; Dong, W.; Shan, J.; Wu, S.; Deng, F.; Chen, Y.; Guo, X. 2021: Chemical constituents and sources of indoor PM2.5 and cardiopulmonary function in patients with chronic obstructive pulmonary disease: Estimation of individual and joint effects. Environmental Research 197: 111191
Hu, Y.-H.; Liu, J.; Li, H.; Tang, W.; Li, X.-W.; Guo, Y.-W. 2020: Chemical Constituents from Citrus changshan-huyou and their Anti-Inflammatory Activities. Chemistry and Biodiversity 17(11): E2000503
Gao, S.; Tian, W.-J.; Liao, Z.-J.; Wang, G.-H.; Zeng, D.-Q.; Liu, X.-Z.; Wang, X.-Y.; Zhou, H.; Chen, H.-F.; Lin, T. 2020: Chemical Constituents from Endophytic Fungus Annulohypoxylon cf. stygium in Leaves of Anoectochilus roxburghii. Chemistry and Biodiversity 17(9): E2000424
Aung, T.T.T.; Xia, M.-Y.; Hein, P.P.; Tang, R.; Zhang, D.-D.; Yang, J.; Yang, X.-F.; Hu, D.-B.; Wang, Y.-H. 2020: Chemical Constituents from the Whole Plant of Cuscuta reflexa. Natural Products and Bioprospecting 10(5): 337-344
Phan, M.Giang.; Do, T.Thao.; Nguyen, T.Nga.; Do, T.Viet.Huong.; Dong, N.Phuc.; Vu, M.Trang. 2021: Chemical Constituents of Eupatorium japonicum and Anti-Inflammatory, Cytotoxic, and Apoptotic Activities of Eupatoriopicrin on Cancer Stem Cells. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 6610347
Tori, M.; Kuroda, C. 2020: Chemical Constituents of Ligularia Species (Asteraceae) and their Diversity in East Asia. Progress in the Chemistry of Organic Natural Products 113: 1-247
Wang, C.-F.; Huang, X.-F.; Xiao, H.-X.; Hao, Y.-J.; Xu, L.; Yan, Q.-X.; Zou, Z.-B.; Xie, C.-L.; Xu, Y.-Q.; Yang, X.-W. 2021: Chemical Constituents of the Marine Fungus Penicillium sp. MCCC 3A00228. Chemistry and Biodiversity 18(10): E2100697
Ki, D.-W.; Kodama, T.; El-Desoky, A.H.; Wong, C.P.; Nguyen, H.M.; Do, K.M.; Thai, Q.M.; Ton Nu, L.H.; Morita, H. 2020: Chemical Constituents of the Vietnamese Marine Sponge Gelliodes sp. and their Cytotoxic Activities. Chemistry and Biodiversity 17(9): E2000303
Styles, M.J.; Early, S.A.; Tucholski, T.; West, K.H.J.; Ge, Y.; Blackwell, H.E. 2020: Chemical Control of Quorum Sensing in E. coli: Identification of Small Molecule Modulators of SdiA and Mechanistic Characterization of a Covalent Inhibitor. Acs Infectious Diseases 6(12): 3092-3103
Chae, D.; Lee, J.; Lee, N.; Park, K.; Moon, S.J.; Kim, H.H. 2020: Chemical Controllable Gene Drive in Drosophila. Acs Synthetic Biology 9(9): 2362-2377
Liu, X.; Xu, Z.; Iqbal, A.; Chen, M.; Ali, N.; Low, C.; Qi, R.; Zai, J.; Qian, X. 2021: Chemical Coupled PEDOT:PSS/Si Electrode: Suppressed Electrolyte Consumption Enables Long-Term Stability. Nano-MicroLetters 13(1): 54
Haneef, A.; Giridhara Gopalan, R.O.; Rajendran, D.T.; Nunes, J.; Kuppamuthu, D.; Radhakrishnan, N.; Young, T.-H.; Hsieh, H.-Y.; Prajna, N.V.; Willoughby, C.E.; Williams, R. 2021: Chemical Cross-Linking of Corneal Tissue to Reduce Progression of Loss of Sight in Patients with Keratoconus. Translational Vision Science and Technology 10(5): 6
Zheng, J.; Corzo, C.; Chang, M.Ra.; Shang, J.; Lam, V.Q.; Brust, R.; Blayo, A-Laure.; Bruning, J.B.; Kamenecka, T.M.; Kojetin, D.J.; Griffin, P.R. 2018: Chemical Crosslinking Mass Spectrometry Reveals the Conformational Landscape of the Activation Helix of PPARγ; a Model for Ligand-Dependent Antagonism. Structure 26(11): 1431-1439.E6
Roychowdhury, T.; Chattopadhyay, S. 2020: Chemical Decorations of "MARs" Residents in Orchestrating Eukaryotic Gene Regulation. Frontiers in Cell and Developmental Biology 8: 602994
Román-Ramírez, L.A.; McKeown, P.; Shah, C.; Abraham, J.; Jones, M.D.; Wood, J. 2020: Chemical Degradation of End-of-Life Poly(lactic acid) into Methyl Lactate by a Zn(II) Complex. Industrial and Engineering Chemistry Research 59(24): 11149-11156
Zhen, L.; Lange, H.; Zongo, L.; Crestini, C. 2021: Chemical Derivatization of Commercially Available Condensed and Hydrolyzable Tannins. Acs Sustainable Chemistry and Engineering 9(30): 10154-10166
Hofferek, V.; Su, H.; Reid, G.E. 2021: Chemical Derivatization-Aided High Resolution Mass Spectrometry for Shotgun Lipidome Analysis. Methods in Molecular Biology 2306: 61-75
Cheval, M.; Hans, M.J. 1949: Chemical Diagnosis of Pregnancy by the Detection of Histidine in the Urine. Bruxelles Medical 29(14): 715-719
Zhao, R.; Chenoweth, D.M.; Zhang, H. 2021: Chemical Dimerization-Induced Protein Condensates on Telomeres. Journal of Visualized Experiments: Jove 2021(170)
Bokić, B.S.; Rat, M.M.; Kladar, N.ša.V.; Anačkov, G.T.; Božin, B.N. 2020: Chemical Diversity of Volatile Compounds of Mints from Southern Part of Pannonian Plain and Balkan Peninsula - new Data. Chemistry and Biodiversity 17(8): E2000211
Godara, S.; Radhakrishnan, A.; Paranjothy, M. 2020: Chemical Dynamics Simulations of Curtius Reaction of Acetyl- and Fluorocarbonyl Azides. Journal of Physical Chemistry. a 124(32): 6438-6444
Ali, J.G.; Casteel, C.L.; Mauck, K.E.; Trase, O. 2020: Chemical Ecology of Multitrophic Microbial Interactions: Plants, Insects, Microbes and the Metabolites that Connect them. Journal of Chemical Ecology 46(8): 645-648
Blomquist, G.J.; Ginzel, M.D. 2021: Chemical Ecology, Biochemistry, and Molecular Biology of Insect Hydrocarbons. Annual Review of Entomology 66: 45-60
Rulev, A. 2021: Chemical Education contra Chemophobia. Chimia 75(1): 98-100
Williams, M.; Ventura, J.; Loza, A.; Wang, Y.; Talbot, P. 2020: Chemical Elements in Electronic Cigarette Solvents and Aerosols Inhibit Mitochondrial Reductases and Induce Oxidative Stress. Nicotine and Tobacco Research: Official Journal of the Society for Research on Nicotine and Tobacco 22(Suppl 1): S14-S24
Song, Y.; Shvartsman, S.Y. 2020: Chemical Embryology Redux: Metabolic Control of Development. Trends in Genetics: Tig 36(8): 577-586
Weißl, M.; Kraft, G.; Innerlohinger, J.; Nypelö, T.; Spirk, S. 2021: Chemical Engineering Laboratory Projects in Student Teams in Real Life and Transformed Online: Viscose Fiber Spinning and Characterization. Journal of Chemical Education 98(5): 1776-1782
Savery, M.E.; Rogers, W.J.; Pillai, M.; Mork, J.G.; Demner-Fushman, D. 2020: Chemical Entity Recognition for MEDLINE Indexing. AMIA Joint Summits on Translational Science Proceedings. AMIA Joint Summits on Translational Science 2020: 561-568
Khin, M.; Cech, N.B.; Kellogg, J.J.; Caesar, L.K. 2020: Chemical Evaluation of the Effects of Storage Conditions on the Botanical Goldenseal using Marker-based and Metabolomics Approaches. Yale Journal of Biology and Medicine 93(2): 265-275
Cui, J.-Q.; Li, X.-Y.; Shi, H.-B.; Sun, Y.-N.; An, H.-J.; Xing, J.-P. 2020: Chemical Evolution and Formation Mechanism of Groundwater in Hetao Irrigation Area. Huan Jing Ke Xue= Huanjing Kexue 41(9): 4011-4020
Lü, X.-L.; Liu, J.-T.; Han, Z.-T.; Zhou, B.; Zhu, L.; Chen, X. 2020: Chemical Evolution of Groundwater in the Tacheng Basin of Xinjiang in the Process of Urbanization. Huan Jing Ke Xue= Huanjing Kexue 41(3): 1197-1206
Bischler, V. 1945: Chemical Examinations During a Scintillatio Nivea Corporis Vitrea. Annales d'Oculistique 178: 221
Chan, R.W.; Lawrence, L.S.P.; Oglesby, R.T.; Chen, H.; Stewart, J.; Theriault, A.; Campbell, M.; Ruschin, M.; Myrehaug, S.; Atenafu, E.G.; Keller, B.; Chugh, B.; MacKenzie, S.; Tseng, C.-L.; Detsky, J.; Maralani, P.J.; Czarnota, G.J.; Stanisz, G.J.; Sahgal, A.; Lau, A.Z. 2021: Chemical exchange saturation transfer MRi in central nervous system tumours on a 1.5 T MR-Linac. RadioTherapy and Oncology: Journal of the European Society for Therapeutic Radiology and Oncology 162: 140-149
Dasgupta, R.; Gupta, K.B.S.S.; Nami, F.; de Groot, H.J.M.; Canters, G.W.; Groenen, E.J.J.; Ubbink, M. 2020: Chemical Exchange at the Trinuclear Copper Center of Small Laccase from Streptomyces coelicolor. Biophysical Journal 119(1): 9-14
Hermbstaedt, S.H. 1800: Chemical Experiments and Observations, on the Extraction of Sugar and Syrup from Indigenous Plants. Medical and Physical Journal 4(20): 347-349
Pigatto, P.D.; Ronchi, A.; Guzzi, G. 2020: Chemical Exposure, Risk of Multiple Chemical Sensitivity, and Occupational Safety. Safety and Health at Work 11(3): 383-384
Zhang, Y.; Li, W.; Chen, T.-T.; Yang, Y.; Wu, M.-Y.; Luo, J.-Y.; Gong, Y.; Zou, L. 2020: Chemical Fingerprint Analysis and Ultra-Performance Liquid Chromatography Quadrupole Time-of-Flight Mass Spectrometry-Based Metabolomics Study of the Protective Effect of Buxue Yimu Granule in Medical-Induced Incomplete Abortion Rats. Frontiers in Pharmacology 11: 578217
Wang, Y.; Wu, S.; Chen, L.; Xu, G.; Wang, X.; Wu, J.; Wang, B.; Zhou, M. 2021: Chemical Fingerprint Profiles and Pharmacodynamic Investigation for Quality Evaluation of Moxa Smoke by UHPLC in a Rat Model of Superficial Infection. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 9929596
Mofikoya, O.O.; Mäkinen, M.; Jänis, J. 2020: Chemical Fingerprinting of Conifer Needle Essential Oils and Solvent Extracts by Ultrahigh-Resolution Fourier Transform Ion Cyclotron Resonance Mass Spectrometry. Acs Omega 5(18): 10543-10552
Pal, R.; Bourgeois, L.; Weyland, M.; Sikder, A.K.; Saito, K.; Funston, A.M.; Bellare, J.R. 2021: Chemical Fingerprinting of Polymers Using Electron Energy-Loss Spectroscopy. Acs Omega 6(37): 23934-23942
Chen, M.; Wu, Q.; Lin, C.; Zhang, J.; Zhao, J.; Chen, J.; Xu, Y. 2020: Chemical Fixation of CO2 Using Highly Dispersed Cu on Hierarchically Porous N-Doped Carbon. Acs Applied Materials and Interfaces 12(36): 40236-40247
Martín, N.; Tagmatarchis, N.; Wang, Q.H.; Zhang, X. 2020: Chemical Functionalization of 2D Materials. Chemistry 26(29): 6292-6295
Park, B.R.; Son, H.J.; Park, J.H.; Kim, E.S.; Heo, S.J.; Youn, H.R.; Koo, Y.M.; Heo, A.Y.; Choi, H.W.; Sang, M.K.; Lee, S.-W.; Choi, S.H.; Hong, J.K. 2021: Chemical Fungicides and Bacillus siamensis H30-3 against Fungal and Oomycete Pathogens Causing Soil-Borne Strawberry Diseases. Plant Pathology Journal 37(1): 79-85
Wang, Q.; Steinbock, O. 2021: Chemical Garden Membranes in Temperature-Controlled Microfluidic Devices. Langmuir: the Acs Journal of Surfaces and Colloids 37(7): 2485-2493
Kalandarishvili, M.; Kolbe, E.-W.; Winde, G.ün.; Kaspari, M. 2021: Chemical Gastroenterocolitis after Dental Root Canal Therapy with Camphorated and Mentholated Chlorophenol. Case Reports in Gastrointestinal Medicine 2021: 9918830
Plank, M.; Perepelkina, M.; Müller, M.; Vaga, S.; Zou, X.; Bourgoint, Célia.; Berti, M.; Saarbach, J.; Haesendonckx, S.; Winssinger, N.; Aebersold, R.; Loewith, R. 2020: Chemical Genetics of AGC-kinases Reveals Shared Targets of Ypk1, Protein Kinase A and Sch9. Molecular and Cellular Proteomics: Mcp 19(4): 655-671
Baddar, N.W.A.H.; Dwaraka, V.B.; Ponomareva, L.V.; Thorson, J.S.; Voss, S.R. 2021: Chemical genetics of regeneration: Contrasting temporal effects of CoCl2 on axolotl tail regeneration. Developmental Dynamics: An Official Publication of the American Association of Anatomists 250(6): 852-865
Jin, Y.N.; Peterson, R.T. 2021: Chemical Genetics: Manipulating the Germline with Small Molecules. Methods in Molecular Biology 2218: 61-73
Chandrashekar, C.; Hossain, M.A.; Wade, J.D. 2021: Chemical Glycosylation and its Application to Glucose Homeostasis-Regulating Peptides. Frontiers in Chemistry 9: 650025
Caraballo-Rodríguez, A.és.M.; Puckett, S.P.; Kyle, K.E.; Petras, D.; da Silva, R.; Nothias, L.-F.él.; Ernst, M.; van der Hooft, J.J.J.; Tripathi, A.; Wang, M.; Balunas, M.J.; Klassen, J.L.; Dorrestein, P.C. 2021: Chemical Gradients of Plant Substrates in an Atta texana Fungus Garden. Msystems 6(4): E0060121
Ahmad, J.B.; Ajani, E.O.; Sabiu, S. 2021: Chemical Group Profiling, In Vitro and In Silico Evaluation of Aristolochia ringens on α -Amylase and α -Glucosidase Activity. Evidence-BasedComplementaryandAlternativeMedicine:Ecam 2021: 6679185
Erdoğan, A.şe.ül.; Esen, M.; Simpson, R. 2020: Chemical Imaging of Human Fingermark by X-ray Photoelectron Spectroscopy (XPS). Journal of Forensic Sciences 65(5): 1730-1735
Liu, X.; Hummon, A.B. 2016: Chemical Imaging of Platinum-Based Drugs and their Metabolites. Scientific Reports 6: 38507
Shah, S.A.; Baldelli, S. 2020: Chemical Imaging of Surfaces with Sum Frequency Generation Vibrational Spectroscopy. Accounts of Chemical Research 53(6): 1139-1150
Oliveira, T.T.; Fontes-Dantas, F.íc.L.; de Medeiros Oliveira, R.K.; Pinheiro, D.M.L.; Coutinho, L.G.; da Silva, V.L.; de Souza, S.J.é; Agnez-Lima, L.F. 2021: Chemical Inhibition of Apurinic-Apyrimidinic Endonuclease 1 Redox and DNA Repair Functions Affects the Inflammatory Response via Different but Overlapping Mechanisms. Frontiers in Cell and Developmental Biology 9: 731588
Garnar-Wortzel, L.; Bishop, T.R.; Kitamura, S.; Milosevich, N.; Asiaban, J.N.; Zhang, X.; Zheng, Q.; Chen, E.; Ramos, A.R.; Ackerman, C.J.; Hampton, E.N.; Chatterjee, A.K.; Young, T.S.; Hull, M.V.; Sharpless, K.Barry.; Cravatt, B.F.; Wolan, D.W.; Erb, M.A. 2021: Chemical Inhibition of ENL/AF9 YEATS Domains in Acute Leukemia. Acs Central Science 7(5): 815-830
Min, K.B.; Hwang, W.; Lee, K.-M.; Kim, J.B.; Yoon, S.S. 2021: Chemical inhibitors of the conserved bacterial transcriptional regulator DksA1 suppressed quorum sensing-mediated virulence of Pseudomonas aeruginosa. Journal of Biological Chemistry 296: 100576
Faisal, M.; Saeed, A. 2020: Chemical Insights into the Synthetic Chemistry of Quinazolines: Recent Advances. Frontiers in Chemistry 8: 594717
Hu, C.; Chen, R.; Zheng, N. 2021: Chemical Insights into Interfacial Effects in Inorganic Nanomaterials. Advanced Materials 33(50): E2006159
Li, Q.; Badia, A.; Fernandez, R.P.; Mahajan, A.S.; López-Noreña, A.I.; Zhang, Y.; Wang, S.; Puliafito, E.; Cuevas, C.A.; Saiz-Lopez, A. 2021: Chemical Interactions Between Ship-Originated Air Pollutants and Ocean-Emitted Halogens. Journal of Geophysical Research. Atmospheres: Jgr 126(4): E2020jd034175
Andersson, L.; Sandberg, P.; Åström, E.; Lillqvist, M.; Claeson, A-Sara. 2020: Chemical Intolerance Is Associated With Altered Response Bias, not Greater Sensory Sensitivity. I-Perception 11(6): 2041669520978424
Zhao, S.; Li, L. 2021: Chemical Isotope Labeling LC-MS for Metabolomics. Advances in Experimental Medicine and Biology 1280: 1-18
Chen, D.; Su, X.; Wang, N.; Li, Y.; Yin, H.; Li, L.; Li, L. 2017: Chemical Isotope Labeling LC-MS for Monitoring Disease Progression and Treatment in Animal Models: Plasma Metabolomics Study of Osteoarthritis Rat Model. Scientific Reports 7: 40543
Feng, Y.; Li, J.; Zhang, Y. 2020: Chemical Knockdown of MicroRNA with Small-Molecule Chimeras. Chembiochem: a European Journal of Chemical Biology 21(22): 3180-3185
Jadhav, P.B. 2020: Chemical Leucoderma of Oral and Labial Mucosal Surfaces from Neem [Azadirachta indica]. a Case Series. Indian Dermatology Online Journal 11(3): 433-435
Cheung, K.M.; Stemer, D.M.; Zhao, C.; Young, T.D.; Belling, J.N.; Andrews, A.M.; Weiss, P.S. 2020: Chemical Lift-Off Lithography of Metal and Semiconductor Surfaces. Acs Materials Letters 2(1): 76-83
Hewage, K.A.H.; Yang, J.-F.; Wang, D.; Hao, G.-F.; Yang, G.-F.; Zhu, J.-K. 2020: Chemical Manipulation of Abscisic Acid Signaling: a new Approach to Abiotic and Biotic Stress Management in Agriculture. Advanced Science 7(18): 2001265
Synge, R.L.M. 1945: Chemical Means for Approaching the Structure of Proteins. Bulletin de la Societe de Chimie Biologique 27: 286-292
Bryliakov, K.P. 2020: Chemical Mechanisms of Prebiotic Chirality Amplification. Research 2020: 5689246
Scherlach, K.; Hertweck, C. 2020: Chemical Mediators at the Bacterial-Fungal Interface. Annual Review of Microbiology 74: 267-290
Takahashi, M.; Tanabe, M.; Inaba, A.; Orimo, S. 2020: Chemical Meningitis after a Golf Swing-induced Dermoid Cyst Rupture. Internal Medicine 59(20): 2583-2586
Boberg, J.; Bredsdorff, L.; Petersen, A.; Löbl, N.; Jensen, B.H.; Vinggaard, A.M.; Nielsen, E. 2021: Chemical Mixture Calculator - a novel tool for mixture risk assessment. Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research Association 152: 112167
Kalloo, G.; Wellenius, G.A.; McCandless, L.; Calafat, A.M.; Sjodin, A.; Sullivan, A.J.; Romano, M.E.; Karagas, M.R.; Chen, A.; Yolton, K.; Lanphear, B.P.; Braun, J.M. 2021: Chemical mixture exposures during pregnancy and cognitive abilities in school-aged children. Environmental Research 197: 111027
Zhang, Y.; Wang, Q.; Wang, J.; Tang, X. 2021: Chemical Modification and Transformation Strategies of Guide RNAs in CRISPR-Cas9 Gene Editing Systems. Chempluschem 86(4): 587-600
Orlando, I.; Basnett, P.; Nigmatullin, R.; Wang, W.; Knowles, J.C.; Roy, I. 2020: Chemical Modification of Bacterial Cellulose for the Development of an Antibacterial Wound Dressing. Frontiers in Bioengineering and Biotechnology 8: 557885
Niu, T.; Wang, X.; Wu, C.; Sun, D.; Zhang, X.; Chen, Z.; Fang, L. 2020: Chemical Modification of Cotton Fabrics by a Bifunctional Cationic Polymer for Salt-Free Reactive Dyeing. Acs Omega 5(25): 15409-15416
Chuang, C-Hao.; Ray, S.C.; Mazumder, D.; Sharma, S.; Ganguly, A.; Papakonstantinou, P.; Chiou, J-Wern.; Tsai, H-Ming.; Shiu, H-Wei.; Chen, C-Hao.; Lin, H-Ji.; Guo, J.; Pong, W-Faung. 2017: Chemical Modification of Graphene Oxide by Nitrogenation: An X-ray Absorption and Emission Spectroscopy Study. Scientific Reports 7: 42235
Shapiro, J.; Tovin, A.; Iancu, O.; Allen, D.; Hendel, A. 2021: Chemical Modification of Guide RNAs for Improved CRISPR Activity in CD34+ Human Hematopoietic Stem and Progenitor Cells. Methods in Molecular Biology 2162: 37-48
Poudel, Y.B.; Chowdari, N.S.; Cheng, H.; Iwuagwu, C.I.; King, H.D.; Kotapati, S.; Passmore, D.; Rampulla, R.; Mathur, A.; Vite, G.; Gangwar, S. 2020: Chemical Modification of Linkers Provides Stable Linker-Payloads for the Generation of Antibody-Drug Conjugates. Acs Medicinal Chemistry Letters 11(11): 2190-2194
Fujiwara, D.; Mihara, K.; Takayama, R.; Nakamura, Y.; Ueda, M.; Tsumuraya, T.; Fujii, I. 2021: Chemical Modification of Phage-Displayed Helix-Loop-Helix Peptides to Construct Kinase-Focused Libraries. Chembiochem: a European Journal of Chemical Biology 22(24): 3406-3409
Tanner, A.J.; Kerr, R.; Fielding, H.H.; Thornton, G. 2021: Chemical Modification of Polaronic States in Anatase TiO2(101). Journal of Physical Chemistry. C Nanomaterials and Interfaces 125(26): 14348-14355
Sampedro, J.é G.; Cataño, Y. 2021: Chemical Modification of the Tryptophan Residue in a Recombinant Ca2+-ATPase N-domain for Studying Tryptophan-ANS FRET. Journal of Visualized Experiments: Jove 2021(176)
Park, S.; Padeste, C.; Schift, H.; Gobrecht, J.; Scharf, T. 2005: Chemical Nanopatterns via Nanoimprint Lithography for Simultaneous Control over Azimuthal and Polar Alignment of Liquid Crystals. Advanced Materials 17(11): 1398-1401
Vaughan, D. 1871: Chemical Nature of Malaria. Dental Register 25(12): 501-511
Hooker, J.M. 2021: Chemical Neuroscience and the Paths to Impact. Acs Chemical Neuroscience 12(1): 1
Yan, L.; Brodfueher, P.; Fu, L.; Zhang, F.; Chen, S.; Dordick, J.S.; Linhardt, R.J. 2020: Chemical O-sulfation of N-sulfoheparosan: a route to rare N-sulfo-3-O-sulfoglucosamine and 2-O-sulfoglucuronic acid. Glycoconjugate Journal 37(5): 589-597
Ghosh, P.S.; Arya, A.; Basak, C.B.; Poswal, A.K.; Banerjee, S. 2021: Chemical ordering as a precursor to formation of orderedδ-UZr2phase: a theoretical and experimental study. Journal of Physics. Condensed Matter: An Institute of Physics Journal 33(25)
Teng, F.; Wu, X.; Libera, M. 2020: Chemical Orthogonality in Surface-Patterned Poly(ethylene glycol) Microgels. Langmuir: the Acs Journal of Surfaces and Colloids 36(35): 10622-10627
Li, G.; Cortes, W.; Zhang, Q.; Zhang, Y. 2020: Chemical Oscillation and Morphological Oscillation in Catalyst-Embedded Lyotropic Liquid Crystalline Gels. Frontiers in Chemistry 8: 583165
Kurin-Csörgei, K.; Poros-Tarcali, E.; Molnár, I.án.; Orbán, M.ós.; Szalai, I.án. 2020: Chemical Oscillations with Sodium Perborate as Oxidant. Frontiers in Chemistry 8: 561788
Shackelford, J. 2020: Chemical Paradigm vs. Biological Paradigm in the Biological Clock Controversy. Ambix 67(4): 366-388
Lima, N.B.D.; Dutra, Jé.Diogo.L.; Gonçalves, S.M.C.; Freire, R.O.; Simas, A.M. 2016: Chemical Partition of the Radiative Decay Rate of Luminescence of Europium Complexes. Scientific Reports 6: 21204
McCully, K.S. 2020: Chemical Pathology of Homocysteine VIII. Effects of Tocotrienol, Geranylgeraniol, and Squalene on Thioretinaco Ozonide, Mitochondrial Permeability, and Oxidative Phosphorylation in Arteriosclerosis, Cancer, Neurodegeneration and Aging. Annals of Clinical and Laboratory Science 50(5): 567-577
Bae, G.; Song, D.S.; Lim, Y.R.; Jeon, I.S.; Jang, M.; Yoon, Y.; Jeon, C.; Song, W.; Myung, S.; Lee, S.S.; Park, C.-Y.; An, K.-S. 2020: Chemical Patterning of Graphene via Metal-Assisted Highly Energetic Electron Irradiation for Graphene Homojunction-Based Gas Sensors. Acs Applied Materials and Interfaces 12(42): 47802-47810
Jiang, A.J.; Soon, S.L.; Rullan, P.; Brody, H.J.; Monheit, G.D.; Lee, K.C. 2021: Chemical Peels as Field Therapy for Actinic Keratoses: a Systematic Review. Dermatologic Surgery: Official Publication for American Society for Dermatologic Surgery 47(10): 1343-1346
Espino, J.A.; Zhang, Z.; Jones, L.M. 2020: Chemical Penetration Enhancers Increase Hydrogen Peroxide Uptake in C. elegans for in Vivo Fast Photochemical Oxidation of Proteins. Journal of Proteome Research 19(9): 3708-3715
Philippou, K.; Davis, A.M.; Davis, S.J.; Sánchez-Villarreal, A. 2020: Chemical Perturbation of Chloroplast-Related Processes Affects Circadian Rhythms of Gene Expression in Arabidopsis: Salicylic Acid Application can Entrain the Clock. Frontiers in Physiology 11: 429
Tzitzoglaki, C.; McGuire, K.; Lagarias, P.; Konstantinidi, A.; Hoffmann, A.; Fokina, N.A.; Ma, C.; Papanastasiou, I.P.; Schreiner, P.R.; Vázquez, S.; Schmidtke, M.; Wang, J.; Busath, D.D.; Kolocouris, A. 2020: Chemical Probes for Blocking of Influenza a M2 Wild-type and S31N Channels. Acs Chemical Biology 15(9): 2331-2337
Yagi, Y.; Yamada, T.; Nakatani, K. 2020: Chemical Probing of Thymine in the TGG/CGG Triad to Explore the Deamination of 5-Methylcytosine in the CGG Repeat. Biochemistry 59(29): 2679-2683
Witkowska-Banaszczak, E.; Radzikowska, D.; Ratajczak, K. 2018: Chemical Profile and Antioxidant Activity of Trollius Europaeus under the Influence of Feeding Aphids. Open Life Sciences 13: 312-318
Wang, Y.; Yu, L.; Zhu, Y.; Zhao, A.; Zhang, F.; Zhang, H.; Jin, Q.; Wu, G.; Wang, X. 2020: Chemical Profiles of Twenty-three Monovarietal Olive Oils Produced in Liangshan Region of China. Journal of Oleo Science 69(6): 605-615
Javaid, U.; Javaid, S.; Ashraf, W.; Rasool, M.Fawad.; Noman, O.M.; Alqahtani, A.S.; Majeed, A.; Shakeel, W.; Albekairi, T.H.; Alqahtani, F.; Imran, I. 2021: Chemical Profiling and Dose-Dependent Assessment of Fear Reducing and Memory-Enhancing Effects of Solanum virginianum in Rats. Dose-Response:aPublicationofInternationalHormesisSociety 19(1): 1559325821998486
Knutson, S.D.; Korn, M.M.; Johnson, R.P.; Monteleone, L.R.; Dailey, D.M.; Swenson, C.S.; Beal, P.A.; Heemstra, J.M. 2020: Chemical Profiling of A-to-i RNA Editing Using a Click-Compatible Phenylacrylamide. Chemistry 26(44): 9874-9878
Reese, K.L.; Fisher, C.L.; Lane, P.D.; Jaryenneh, J.D.; Moorman, M.W.; Jones, A.Daniel.; Frank, M.; Lane, T.W. 2019: Chemical Profiling of Volatile Organic Compounds in the Headspace of Algal Cultures as Early Biomarkers of Algal Pond Crashes. Scientific Reports 9(1): 13866
Larrazábal-Fuentes, M.ía.J.é; Fernández-Galleguillos, C.; Palma-Ramírez, J.; Romero-Parra, J.; Sepúlveda, K.; Galetovic, A.; González, J.; Paredes, A.án.; Bórquez, J.; Simirgiotis, M.J.; Echeverría, J. 2020: Chemical Profiling, Antioxidant, Anticholinesterase, and Antiprotozoal Potentials of Artemisia copa Phil. (Asteraceae). Frontiers in Pharmacology 11: 594174
Rocha, M.A.; Sprague-Piercy, M.A.; Kwok, A.O.; Roskamp, K.W.; Martin, R.W. 2021: Chemical Properties Determine Solubility and Stability in βγ-Crystallins of the Eye Lens. Chembiochem: a European Journal of Chemical Biology 22(8): 1329-1346
Chen, N.; Liu, Y.; Li, Y.; Wang, C. 2020: Chemical Proteomic Profiling of Protein 4'-Phosphopantetheinylation in Mammalian Cells. Angewandte Chemie 59(37): 16069-16075
Cai, R.; Dong, X.; Yu, K.; He, X.; Liu, X.; Wang, Y. 2020: Chemical Proteomic Profiling of the Interacting Proteins of Isoprenoid Pyrophosphates. Analytical Chemistry 92(12): 8031-8036
Zhang, X. 2020: Chemical Proteomics for Expanding the Druggability of Human Disease. Chembiochem: a European Journal of Chemical Biology 21(23): 3319-3320
Webster, B.; Ivanov, P.; Russell, B.; Collins, S.; Stora, T.; Ramos, J.Pedro.; Köster, U.; Robinson, A.Paul.; Read, D. 2019: Chemical Purification of Terbium-155 from Pseudo-Isobaric Impurities in a Mass Separated Source Produced at CERN. Scientific Reports 9(1): 10884
Bae, J.Woo.; Kwon, S.Chul.; Na, Y.; Kim, V.Narry.; Kim, J-Seo. 2020: Chemical RNA digestion enables robust RNA-binding site mapping at single amino acid resolution. Nature Structural and Molecular Biology 27(7): 678-682
Burueva, D.B.; Eills, J.; Blanchard, J.W.; Garcon, A.; Picazo-Frutos, R.án.; Kovtunov, K.V.; Koptyug, I.V.; Budker, D. 2020: Chemical Reaction Monitoring using Zero-Field Nuclear Magnetic Resonance Enables Study of Heterogeneous Samples in Metal Containers. Angewandte Chemie 59(39): 17026-17032
Wu, Y.; Miao, G.; Subotnik, J.E. 2020: Chemical Reaction Rates for Systems with Spin-Orbit Coupling and an Odd Number of Electrons: Does Berry's Phase Lead to Meaningful Spin-Dependent Nuclear Dynamics for a two State Crossing?. Journal of Physical Chemistry. a 124(37): 7355-7372
Gissinger, J.R.; Jensen, B.D.; Wise, K.E. 2017: Chemical Reactions in Classical Molecular Dynamics. Polymer 128: 211-217
Ouled Aitouna, A.; Belghiti, M.E.; Eşme, A.ı; Anouar, E.; Ouled Aitouna, A.; Zeroual, A.; Salah, M.; Chekroun, A.; Alaoui El Abdallaoui, H.E.; Benharref, A.; Mazoir, N. 2021: Chemical reactivities and molecular docking studies of parthenolide with the main protease of HEP-G2 and SARS-CoV-2. Journal of Molecular Structure 1243: 130705
Padmanabhan, J.; Arif, Z.; Singh, P.; Parthasarathi, R. 2021: Chemical Reactivity and Skin Sensitization Studies on a Series of Chloro- and Fluoropyrroles-A Computational Approach. Acs Omega 6(33): 21514-21524
Yu, X.; Roth, J.P.; Wang, J.; Sauter, E.; Nefedov, A.; Heißler, S.; Pacchioni, G.; Wang, Y.; Wöll, C. 2020: Chemical Reactivity of Supported ZnO Clusters: Undercoordinated Zinc and Oxygen Atoms as Active Sites. Chemphyschem: a European Journal of Chemical Physics and Physical Chemistry 21(23): 2553-2564
Cheung, E.; Alberti, C.; Enthaler, S. 2020: Chemical Recycling of End-of-Life Poly(lactide) via Zinc-Catalyzed Depolymerization and Polymerization. Chemistryopen 9(12): 1223
Cheung, E.; Alberti, C.; Enthaler, S. 2020: Chemical Recycling of End-of-Life Poly(lactide) via Zinc-Catalyzed Depolymerization and Polymerization. Chemistryopen 9(12): 1224-1228
Saito, N. 2021: Chemical Research on Antitumor Isoquinoline Marine Natural Products and Related Compounds. Chemical and Pharmaceutical Bulletin 69(2): 155-177
Dauphinee, A.N.; Cardoso, C.; Dalman, K.; Ohlsson, J.A.; Fick, S.Berglund.; Robert, Séphanie.; Hicks, G.R.; Bozhkov, P.V.; Minina, E.A. 2019: Chemical Screening Pipeline for Identification of Specific Plant Autophagy Modulators1. Plant Physiology 181(3): 855-866
Lafuerza, S.; Carlantuono, A.; Retegan, M.; Glatzel, P. 2020: Chemical Sensitivity of Kβ and Kα X-ray Emission from a Systematic Investigation of Iron Compounds. Inorganic Chemistry 59(17): 12518-12535
Barupal, D.Kumar.; Fiehn, O. 2017: Chemical Similarity Enrichment Analysis (ChemRICH) as alternative to biochemical pathway mapping for metabolomic datasets. Scientific Reports 7(1): 14567
Kalinitchenko, V.P.; Glinushkin, A.P.; Minkina, T.M.; Mandzhieva, S.S.; Sushkova, S.N.; Sukovatov, V.A.; Il'ina, L.P.; Makarenkov, D.A. 2020: Chemical Soil-Biological Engineering Theoretical Foundations, Technical Means, and Technology for Safe Intrasoil Waste Recycling and Long-Term Higher Soil Productivity. Acs Omega 5(28): 17553-17564
Chhabra, S.; Kumar, S.; Parkesh, R. 2021: Chemical Space Exploration of DprE1 Inhibitors Using Chemoinformatics and Artificial Intelligence. Acs Omega 6(22): 14430-14441
Benhachem, F.Z.; Harrache, D. 2021: Chemical Speciation and Potential Mobility of Heavy Metals in Forest Soil Near Road Traffic in Hafir, Algeria. Journal of Health and Pollution 11(30): 210614
Suzuki, S.; Yoshimura, M. 2017: Chemical Stability of Graphene Coated Silver Substrates for Surface-Enhanced Raman Scattering. Scientific Reports 7(1): 14851
Kasada, R.; Ha, Y.; Higuchi, T.; Sakamoto, K. 2016: Chemical State Mapping of Degraded B4C Control Rod Investigated with Soft X-ray Emission Spectrometer in Electron Probe Micro-analysis. Scientific Reports 6: 25700
Li, W.-H.; Li, Y.-M. 2020: Chemical Strategies to Boost Cancer Vaccines. Chemical Reviews 120(20): 11420-11478
Lee, S.N.; Jin, S.M.; Shin, H.S.; Lim, Y.T. 2020: Chemical Strategies to Enhance the Therapeutic Efficacy of Toll-like Receptor Agonist Based Cancer Immunotherapy. Accounts of Chemical Research 53(10): 2081-2093
Ajay, R.; Suma, K.; Sasikala, R.; Sajidabegum, S.; Vignesh, V.; Bhuvaneshkumar, D. 2020: Chemical Structure and Physical Properties of Heat-cured Poly(methyl methacrylate) Resin Processed with Cycloaliphatic Comonomer: An in Vitro Study. Journal of Contemporary Dental Practice 21(3): 285-290
Park, H-Gyu.; Sathiyanarayanan, G.; Hwang, C-Hwan.; Ann, D-Hee.; Kim, J-Ho.; Bang, G.; Jang, K-Soon.; Ryu, H.Wook.; Lee, Y.Kyung.; Yang, Y-Hun.; Kim, Y-Gon. 2017: Chemical Structure of the Lipid A component of Pseudomonas sp. strain PAMC 28618 from Thawing Permafrost in Relation to Pathogenicity. Scientific Reports 7(1): 2168
Paraf, J. 1948: Chemical Studies on the Pathogenesis and Therapy of Tuberculosis. La Semaine des Hopitaux: Organe Fonde Par l'Association d'Enseignement Medical des Hopitaux de Paris 24(9): 243
Wagner, B.; Huttner, A.; Bischof, D.; Engel, A.; Witte, G.; Heine, J. 2020: Chemical Surface Reactivity and Morphological Changes of Bismuth Triiodide (BiI3) under Different Environmental Conditions. Langmuir: the Acs Journal of Surfaces and Colloids 36(23): 6458-6464
Cai, J.; Hu, J.; Qin, C.; Li, L.; Shen, D.; Tian, G.; Zou, X.; Seeberger, P.H.; Yin, J. 2020: Chemical Synthesis Elucidates the Key Antigenic Epitope of the Autism-Related Bacterium Clostridium bolteae Capsular Octadecasaccharide. Angewandte Chemie 59(46): 20529-20537
Ramadan, S.; Li, T.; Yang, W.; Zhang, J.; Rashidijahanabad, Z.; Tan, Z.; Parameswaran, N.; Huang, X. 2020: Chemical Synthesis and Anti-Inflammatory Activity of Bikunin Associated Chondroitin Sulfate 24-mer. Acs Central Science 6(6): 913-920
Groenevelt, J.M.; Corey, D.J.; Fehl, C. 2021: Chemical Synthesis and Biological Applications of O-GlcNAcylated Peptides and Proteins. Chembiochem: a European Journal of Chemical Biology 22(11): 1854-1870
Zheng, J.; Miao, T.; Xu, R.; Ping, X.; Wu, Y.; Lu, Z.; Zhang, Z.; Hu, D.; Liu, L.; Zhang, Q.; Li, D.; Cheng, Z.; Ma, W.; Xie, L.; Jiao, L. 2021: Chemical Synthesis and Integration of Highly Conductive PdTe2 with Low-Dimensional Semiconductors for p-Type Transistors with Low Contact Barriers. Advanced Materials 33(27): E2101150
Zeng, C.; Sun, B.; Cao, X.; Zhu, H.; Oluwadahunsi, O.M.; Liu, D.; Zhu, H.; Zhang, J.; Zhang, Q.; Zhang, G.; Gibbons, C.A.; Liu, Y.; Zhou, J.; Wang, P.G. 2020: Chemical Synthesis of Homogeneous Human E-Cadherin N-Linked Glycopeptides: Stereoselective Convergent Glycosylation and Chemoselective Solid-Phase Aspartylation. Organic Letters 22(21): 8349-8353
Ohkubo, A.; Muto, K.; Watanabe, R.; Ogata, D. 2021: Chemical Synthesis of Modified Oligonucleotides Containing 5'-Amino-5'-Deoxy-5'-Hydroxymethylthymidine Residues. Current Protocols 1(3): E70
Kossmann, C.; Ma, S.; Clemmensen, L.S.; Strømgaard, K. 2021: Chemical Synthesis of PDZ Domains. Methods in Molecular Biology 2256: 193-216
Ito, S.; Kikuzato, K.; Nakamura, H.; Asami, T. 2021: Chemical Synthesis of Triazole-Derived Suppressors of Strigolactone Functions. Methods in Molecular Biology 2309: 25-30
Shanmugasundaram, M.; Senthilvelan, A.; Kore, A.R. 2021: Chemical Synthesis of a Locked Nucleic Acid-Substituted Dinucleotide Cap Analog. Current Protocols 1(1): E22
Liao, P.; He, C. 2021: Chemical Synthesis of the Sec-To-Cys Homologue of Human Selenoprotein F and Elucidation of its Disulfide-pairing Mode. Frontiers in Chemistry 9: 735149
Luo, W.-Y.; Lu, B.; Zhou, R.-Y.; Hu, X.; Wang, J. 2020: Chemical Synthesis of the Trisaccharide Epitope of Phenolic Glycolipid-1 Surface Antigen from Mycobacterium leprae. Journal of Organic Chemistry 85(16): 10973-10979
Hector, G.; Appert, E.; Sarigiannidou, E.; Matheret, E.éa.; Roussel, H.é; Chaix-Pluchery, O.; Consonni, V. 2020: Chemical Synthesis of β-Ga2O3 Microrods on Silicon and its Dependence on the Gallium Nitrate Concentration. Inorganic Chemistry 59(21): 15696-15706
Lloyd, J.U. 1881: Chemical Theory or Chemical Philosophy. Dental Register 35(3): 120-126
Qiao, Y.; Hayashi, H.; Chong Teo, S. 2020: Chemical Toolbox to Decode the Microbiota Lexicon. Chemistry An Asian Journal 15(14): 2117-2128
Shiraiwa, K.; Cheng, R.; Nonaka, H.; Tamura, T.; Hamachi, I. 2020: Chemical Tools for Endogenous Protein Labeling and Profiling. Cell Chemical Biology 27(8): 970-985
Hwang, S.H.; Kim, J.M.; Kim, S.; Yoon, M.J.; Park, K.S. 2020: Chemical Transformation of Astaxanthin from Haematococcus pluvialis Improves its Antioxidative and Anti-inflammatory Activities. Acs Omega 5(30): 19120-19130
Chu, C.K.; Joseph, A.J.; Limjoco, M.D.; Yang, J.; Bose, S.; Thapa, L.S.; Langer, R.; Anderson, D.G. 2020: Chemical Tuning of Fibers Drawn from Extensible Hyaluronic Acid Networks. Journal of the American Chemical Society 142(46): 19715-19721
Yoon, C.; Kim, S.; Park, D.; Choi, Y.; Jo, J.; Lee, K. 2020: Chemical use and Associated Health Concerns in the Semiconductor Manufacturing Industry. Safety and Health at Work 11(4): 500-508
Liu, S.; Wang, M.; Yang, X.; Shi, Q.; Qiao, Z.; Lucero, M.; Ma, Q.; More, K.L.; Cullen, D.A.; Feng, Z.; Wu, G. 2020: Chemical Vapor Deposition for Atomically Dispersed and Nitrogen Coordinated Single Metal Site Catalysts. Angewandte Chemie 59(48): 21698-21705
Giusto, P.; Cruz, D.; Heil, T.; Tarakina, N.; Patrini, M.; Antonietti, M. 2021: Chemical Vapor Deposition of Highly Conjugated, Transparent Boron Carbon Nitride Thin Films. Advanced Science 8(17): E2101602
Wang, Z.; Liu, P.; Ito, Y.; Ning, S.; Tan, Y.; Fujita, T.; Hirata, A.; Chen, M. 2016: Chemical Vapor Deposition of Monolayer Mo(1-x)W(x)S2 Crystals with Tunable Band Gaps. Scientific Reports 6: 21536
Sanders, S.; Stümmler, D.; Pfeiffer, P.; Ackermann, N.; Simkus, G.; Heuken, M.; Baumann, P.K.; Vescan, A.; Kalisch, H. 2019: Chemical Vapor Deposition of Organic-Inorganic Bismuth-Based Perovskite Films for Solar Cell Application. Scientific Reports 9(1): 9774
Macewicz, L.; Pyrchla, K.; Bogdanowicz, R.; Sumanasekera, G.; Jasinski, J.B. 2021: Chemical Vapor Transport Route toward Black Phosphorus Nanobelts and Nanoribbons. Journal of Physical Chemistry Letters 12(34): 8347-8354
Pacheco-Hernández, Y.; Sánchez-Hernández, G.R.í; Reyes-Cervantes, E.; Romero-Arenas, O.; Pérez-Xochipa, I.; Villa-Ruano, N. 2020: Chemical Variation and Pharmacological Properties of Dyssodia decipiens Essential Oil. Chemistry and Biodiversity 17(10): E2000487
Caliskan, D.; Sezen, H.; Ozbay, E.; Suzer, S. 2015: Chemical Visualization of a GaN p-n junction by XPS. Scientific Reports 5: 14091
Ghosh, S. 2020: Chemical Vitiligo: a Subset of Vitiligo. Indian Journal of Dermatology 65(6): 443-449
Tin, D.; Pepper, M.; Hart, A.; Hertelendy, A.; Ciottone, G. 2021: Chemical Warfare Agents in Terrorist Attacks: An Interregional Comparison, Tactical Response Implications, and the Emergence of Counterterrorism Medicine. Journal of Special Operations Medicine: a Peer Reviewed Journal for Sof Medical Professionals 21(3): 51-54
Risso, R.C.; Ferraro, L.H.C.; Nouer Frederico, T.; Peng, P.W.H.; Luzo, M.V.; Debieux, P.; Sakata, R.K. 2021: Chemical Ablation of Genicular Nerve with Phenol for Pain Relief in Patients with Knee Osteoarthritis: a Prospective Study. Pain Practice: the Official Journal of World Institute of Pain 21(4): 438-444
Ben-David, U.; Benvenisty, N. 2014: Chemical ablation of tumor-initiating human pluripotent stem cells. Nature Protocols 9(3): 729-740
Fauser, S.; Trushin, E.; Neiss, C.; Görling, A. 2021: Chemical accuracy with σ-functionals for the Kohn-Sham correlation energy optimized for different input orbitals and eigenvalues. Journal of Chemical Physics 155(13): 134111
Fang, Y.; Akimoto, M.; Mayanagi, K.; Hatano, A.; Matsumoto, M.; Matsuda, S.; Yasukawa, T.; Kang, D. 2020: Chemical acetylation of mitochondrial transcription factor a occurs on specific lysine residues and affects its ability to change global DNA topology. Mitochondrion 53: 99-108
Scholes, G.; Weiss, J. 1950: Chemical action of ionizing radiations on nucleic acids in aqueous systems. Nature 166(4224): 640-642
Punkkinen, M.; Mahfouz, M.M.; Fujii, H. 2021: Chemical activation of Arabidopsis SnRK2.6 by pladienolide B. Plant Signaling and Behavior 2021: 1885165
Cuervo, R.; Chimal-Monroy, Jús. 2013: Chemical activation of RARβ induces post-embryonically bilateral limb duplication during Xenopus limb regeneration. Scientific Reports 3: 1886
Castoldi, F.; Hyvönen, M.T.; Durand, Sère.; Aprahamian, F.; Sauvat, A.; Malik, S.A.; Baracco, E.Elena.; Vacchelli, E.; Opolon, P.; Signolle, N.; Lefevre, Déborah.; Bossut, N.; Eisenberg, T.; Dammbrueck, C.; Pendl, T.; Kremer, M.; Lachkar, S.; Einer, C.; Michalke, B.; Zischka, H.; Madeo, F.; Keinänen, T.A.; Maiuri, M.Chiara.; Pietrocola, F.; Kroemer, G. 2020: Chemical activation of SAT1 corrects diet-induced metabolic syndrome. Cell Death and Differentiation 27(10): 2904-2920
Nour-Eldin, F. 1967: Chemical activation of blood-clotting factors and thrombosis. Nature 214(5095): 1362-1363
Plaman, B.A.; Chan, W.Cheung.; Bishop, A.C. 2019: Chemical activation of divergent protein tyrosine phosphatase domains with cyanine-based biarsenicals. Scientific Reports 9(1): 16148
Mahon, J.H.; Pugsley, L.I. 1956: Chemical additives in foods. Canadian Services Medical Journal 12(6): 494-502
Longenecker, H.E. 1951: Chemical additives in foods. Journal of the American Dietetic Association 27(3): 185-189
Cvjetinovic, A.; Ramseier, C.A.; Salvi, G.E.; Laugisch, O. 2020: Chemical additives in toothpastes to inhibit calculus formation. Swiss Dental Journal 130(6): 503-513
Li, D.; Cui, H.; Cheng, Y.; Xue, L.; Wang, B.; He, H.; Hua, Y.; Chu, Q.; Feng, Y.; Yang, L. 2021: Chemical aging of hydrochar improves the Cd2+ adsorption capacity from aqueous solution. Environmental Pollution 287: 117562
Ahmad, I.; Chau, Y.K.; Wong, P.T.; Carty, A.J.; Taylor, L. 1980: Chemical alkylation of lead (II) salts to tetraalkyllead (IV) in aqueous solution. Nature 287(5784): 716-717
Kattnig, D.R.; Evans, E.W.; Déjean, V.; Dodson, C.A.; Wallace, M.I.; Mackenzie, S.R.; Timmel, C.R.; Hore, P.J. 2016: Chemical amplification of magnetic field effects relevant to avian magnetoreception. Nature Chemistry 8(4): 384-391
Lutfia, A.; Munir, E.; Yurnaliza, Y.; Basyuni, M. 2021: Chemical analysis and anticancer activity of sesterterpenoid from an endophytic fungus Hypomontagnella monticulosa Zg15SU and its host Zingiber griffithii Baker. Heliyon 7(2): E06292
Felipe do Nascimento, K.; Leite Kassuya, C.Aparecida.; Pereira Cabral, Márcia.Regina.; Carvalho Souza, R.Isaias.; Marangoni, J.Alberto.; Mussury Franco Silva, R.Mara.; Alves da Costa Canella, D.; Nazari Formagio, A.Samara. 2021: Chemical analysis and antioxidant, anti-inflammatory and toxicological evaluations of the hydromethanolic extract of Psidium guineense Swartz leaves. Journal of Ethnopharmacology 281:: 114492
Liang, J.; Sun, J.; Chen, P.; Frazier, J.; Benefield, V.; Zhang, M. 2021: Chemical analysis and classification of black pepper (Piper nigrum L.) based on their country of origin using mass spectrometric methods and chemometrics. Food Research International 140: 109877
Di Turo, F.; Moro, G.; Artesani, A.; Albertin, F.; Bettuzzi, M.; Cristofori, D.; Moretto, L.Maria.; Traviglia, A. 2021: Chemical analysis and computed tomography of metallic inclusions in Roman glass to unveil ancient coloring methods. Scientific Reports 11(1): 11187
Moumeh, B.; Dolores Garrido, M.ía.; Diaz, P.; Peñaranda, I.; Linares, M.ía.B.én. 2020: Chemical analysis and sensory evaluation of honey produced by honeybee colonies fed with different sugar pastes. Food Science and Nutrition 8(11): 5823-5831
Lovell, D.; Briggs, J.C.; Schorah, C.J. 1966: Chemical analysis of acid mucopolysaccharides of mixed salivary tumours. British Journal of Cancer 20(3): 463-468
Leyva-Padrón, G.; Vanegas-Espinoza, P.E.; Evangelista-Lozano, S.; Del Villar-Martínez, A.A.él.; Bazaldúa, C. 2020: Chemical analysis of callus extracts from toxic and non-toxic varieties of Jatropha curcas L. Peerj 8: E10172
Podstata, J.; Brázda, A.; Zedníková, K.; Skálová, P. 1982: Chemical analysis of inorganic components in human submandibular calculi. Acta Universitatis Palackianae Olomucensis Facultatis Medicae 103: 155-158
Shaida, M.A.; Dutta, R.K.; Sen, A.K.; Ram, S.S.; Sudarshan, M.; Naushad, M.; Boczkaj, G.; Nawab, M.S. 2022: Chemical analysis of low carbon content coals and their applications as dye adsorbent. Chemosphere 287(Part 4): 132286
Koch, F.; Kowalczyk, J.; Wagner, B.; Klevenhusen, F.; Schenkel, H.; Lahrssen-Wiederholt, M.; Pieper, R. 2021: Chemical analysis of materials used in pig housing with respect to the safety of products of animal origin. Animal: An International Journal of Animal Bioscience 15(9): 100319
Yao, F.; Yi, B.; Shen, C.; Tao, F.; Liu, Y.; Lin, Z.; Xu, P. 2015: Chemical analysis of the Chinese liquor Luzhoulaojiao by comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry. Scientific Reports 5: 9553
Ajith, A.; Sthanikam, Y.; Banerjee, S. 2021: Chemical analysis of the human brain by imaging mass spectrometry. Analyst 146(18): 5451-5473
Alesci, A.; Miller, A.; Tardugno, R.; Pergolizzi, S. 2021: Chemical analysis, biological and therapeutic activities of Olea europaea L. extracts. Natural Product Research 2021: 1-14
Khamis, A.-D.S.; Chai, L.C. 2021: Chemical and Antimicrobial Analyses of Juniperus chinensis and Juniperus seravschanica Essential Oils and Comparison with their Methanolic Crude Extracts. International Journal of Analytical Chemistry 2021: 9937522
Ba, K.; Jiang, W.; Cheng, J.; Bao, J.; Xuan, N.; Sun, Y.; Liu, B.; Xie, A.; Wu, S.; Sun, Z. 2017: Chemical and Bandgap Engineering in Monolayer Hexagonal Boron Nitride. Scientific Reports 7: 45584
Kumar Sharma, S.; Gautam, N. 2017: Chemical and Bioactive Profiling, and Biological Activities of Coral Fungi from Northwestern Himalayas. Scientific Reports 7: 46570
Stanca, S.E.; Hänschke, F.; Ihring, A.; Zieger, G.; Dellith, J.; Kessler, E.; Meyer, H-G. 2017: Chemical and Electrochemical Synthesis of Platinum Black. Scientific Reports 7(1): 1074
Krzywiecki, M.; Pluczyk-Małek, S.; Powroźnik, P.; Ślusarczyk, C.ła.; Król-Molenda, W.; Smykała, S.; Kurek, J.; Koptoń, P.; Łapkowski, M.ła.; Blacha-Grzechnik, A. 2021: Chemical and Electronic Structure Characterization of Electrochemically Deposited Nickel Tetraamino-phthalocyanine: a Step toward more Efficient Deposition Techniques for Organic Electronics Application. Journal of Physical Chemistry. C Nanomaterials and Interfaces 125(24): 13542-13550
Mokbli, S.; Sbihi, H.M.; Nehdi, I.A.; Azam, M.; Fadhila, A.; Romdhani-Younes, M.; Al-Resayes, S.I. 2021: Chemical and Fatty Acid Compositions of Crude and Purified Extracts Obtained from Datura innoxia Seeds Extracted with Different Solvents. Journal of Oleo Science 70(3): 321-332
Schiestl, F.P. 2020: Chemical and Functional Complexity in Flower Fragrance. Chimia 74(10): 820
Curnutt, A.; Smith, K.; Darrow, E.; Walters, K.B. 2020: Chemical and Microstructural Characterization of pH and [Ca 2+ ] Dependent Sol-Gel Transitions in Mucin Biopolymer. Scientific Reports 10(1): 8760
Kiełtyka-Dadasiewicz, A.; Ludwiczuk, A.; Tarasevičienė, Ži.ė; Michalak, M.; Głowacka, A.; Baj, T.; Kręcisz, B.; Krochmal-Marczak, B. 2021: Chemical and Nutritional Compounds of Different Parts of Lemongrass (Cymbopogon citratus (DC) Stapf.) Cultivated in Temperate Climate of Poland. Journal of Oleo Science 70(1): 125-133
Gnapareddy, B.; Dugasani, S.Reddy.; Ha, T.; Paulson, B.; Hwang, T.; Kim, T.; Kim, J.Hoon.; Oh, K.; Park, S.Ha. 2015: Chemical and Physical Characteristics of Doxorubicin Hydrochloride Drug-Doped Salmon DNA Thin Films. Scientific Reports 5: 12722
Nodeh, H.R.; Rashidi, L.; Gabris, M.A.; Gholami, Z.; Shahabuddin, S.; Sridewi, N. 2020: Chemical and Physical Characterization of the Hackberry (Celtis australis) Seed Oil: Analysis of Tocopherols, Sterols, ECN and Fatty Acid Methyl Esters. Journal of Oleo Science 69(11): 1359-1366
Shakeraneh, P.; Robinson, R.; Kufel, W.D.; Tumey, L.N.; Benjamin, S.R.; Miller, C.D.; Darko, W.; Probst, L.A.; Seabury, R.W. 2021: Chemical and Physical Stability of an Admixture Containing Cefepime and Vancomycin in Lactated Ringer Solution. Hospital Pharmacy 56(4): 338-342
Nagle, N.J.; Donohoe, B.S.; Wolfrum, E.J.; Kuhn, E.M.; Haas, T.J.; Ray, A.E.; Wendt, L.M.; Delwiche, M.E.; Weiss, N.D.; Radtke, C. 2020: Chemical and Structural Changes in Corn Stover After Ensiling: Influence on Bioconversion. Frontiers in Bioengineering and Biotechnology 8: 739
Jiang, H.; Ahmed, C.M.S.; Martin, T.J.; Canchola, A.; Oswald, I.W.H.; Garcia, J.A.; Chen, J.Y.; Koby, K.A.; Buchanan, A.J.; Zhao, Z.; Zhang, H.; Chen, K.; Lin, Y.-H. 2020: Chemical and Toxicological Characterization of Vaping Emission Products from Commonly Used Vape Juice Diluents. Chemical Research in Toxicology 33(8): 2157-2163
de Lima, L.Bezerra.; Viturino da Silva, W.Alves.; Silva, S.Luanne.; Felipe Dos Santos, E.Cintya.; Barbosa Machado, Jína.Carla.; Procópio, T.Figueiredo.; de Moura, M.Celine.; Napoleão, T.Henrique.; Assunção Ferreira, M.Rhayanny.; Soares, L.Alberto.Lira. 2021: Chemical and antibacterial analysis of Cinnamomum verum leaves extract and fractions against multidrug resistant bacteria. Natural Product Research 2021: 1-6
Schaal, B.; Coureaud, Gérard.; Langlois, D.; Giniès, C.; Sémon, E.; Perrier, G. 2003: Chemical and behavioural characterization of the rabbit mammary pheromone. Nature 424(6944): 68-72
Schmitz, E.; Francis, J.; Gutke, K.; Nordberg Karlsson, E.; Adlercreutz, P.; Paulsson, M. 2021: Chemical and biochemical bleaching of oat hulls: the effect of hydrogen peroxide, laccase, xylanase and sonication on optical properties and chemical composition. Biotechnology Reports 30: E00624
Litvin, A.; Ferrer Zanchi, A. 1945: Chemical and biochemical reactions to investigate milk and colostrum stains. Revista de la Asociacion Medica Argentina 59: 1376-1380
Kogl, F. 1949: Chemical and biochemical studies on tumor proteins. Chimia 3(3): 70
Kogl, F. 1949: Chemical and biochemical studies on tumor proteins. Experientia 5(5): 173-180
Ribeiro, P.P.íc.C.; Damasceno, K.S.F.d.S.C.; de Veras, B.O.; de Oliveira, J.ão.R.S.; Lima, V.L.úc.d.M.; de Assis, C.R.D.; da Silva, M.V.; de Sousa Júnior, F.C.é; de Assis, C.F.; Padilha, C.E.d.A.új.; Stamford, T.C.M. 2021: Chemical and biological activities of faveleira (Cnidoscolus quercifolius Pohl) seed oil for potential health applications. Food Chemistry 337: 127771
Checker, R.; Patwardhan, R.S.; Jayakumar, S.; Maurya, D.Kumar.; Bandekar, M.; Sharma, D.; Sandur, S.K. 2021: Chemical and biological basis for development of novel radioprotective drugs for cancer therapy. Free Radical Research 2021: 1-31
Arslan, M.; Sevgiler, Y.; Güven, C.; Murathan, Z.T.ğb.; Erbil, N.; Yıldırım, D.; Büyükleyla, M.; Karadaş, Şa.; Çelik, R.; Rencüzoğulları, E.üp. 2021: Chemical and biological characteristics of propolis from Apis mellifera caucasica from the Ardahan and Erzurum provinces of Turkey: a comparative study. Arhiv Za Higijenu Rada i Toksikologiju 72(1): 53-69
Brown, B.S.; Mills, J.; Hulse, J.M. 1974: Chemical and biological degradation of waste plastics. Nature 250(462): 161-163
Abdel-Sattar, E.; Shams, M.M.; Abd-Rabo, M.M.; Mahmoud, N.; Mahrous, E.A. 2021: Chemical and biological investigations of Limonium axillare reveal mechanistic evidence for its antidiabetic activity. Plos one 16(8): E0255904
Goswami, S.; Parashar, S.; Dwivedi, V.; Shajahan, A.; Sampathkumar, S.-G. 2018: Chemical and biological methods for probing the structure and functions of polysialic acids. Emerging Topics in Life Sciences 2(3): 363-376
Febrianto, N.Ariefandie.; Wang, S.; Zhu, F. 2021: Chemical and biological properties of cocoa beans affected by processing: a review. Critical Reviews in Food Science and Nutrition 2021: 1-32
Velázquez-Carriles, C.Arnulfo.; Carbajal-Arizaga, G.Guadalupe.; Silva-Jara, J.Manuel.; Reyes-Becerril, M.Candelaria.; Aguilar-Uscanga, B.Rosa.; Macías-Rodríguez, Mía.Esther. 2020: Chemical and biological protection of food grade nisin through their partial intercalation in laminar hydroxide salts. Journal of Food Science and Technology 57(9): 3252-3258
Borgerding, M.F.; Bodnar, J.A.; Chung, H.L.; Mangan, P.P.; Morrison, C.C.; Risner, C.H.; Rogers, J.C.; Simmons, D.F.; Uhrig, M.S.; Wendelboe, F.N.; Wingate, D.E.; Winkler, L.S. 1998: Chemical and biological studies of a new cigarette that primarily heats tobacco. Part 1. Chemical composition of mainstream smoke. Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research Association 36(7): 169-182
Osada, H. 2016: Chemical and biological studies of reveromycin A. Journal of Antibiotics 69(10): 723-730
Rieben, W.K.; Hastings, A.B. 1946: Chemical and biological studies on tartronic acid. Helvetica Physiologica et Pharmacologica Acta 4(3): 52
Dailianis, S.; Charalampous, N.; Giokas, S.; Vlastos, D.; Efthimiou, I.; Dormousoglou, M.; Cocilovo, C.; Faggio, C.; Shehu, A.; Shehu, J.; Lyberatos, G.; Ntaikou, I. 2021: Chemical and biological tracking in decentralized sanitation systems: the case of artificial constructed wetlands. Journal of Environmental Management 300: 113799
Engstrom, D.R.; Fritz, S.C.; Almendinger, J.E.; Juggins, S. 2000: Chemical and biological trends during lake evolution in recently deglaciated terrain. Nature 408(6809): 161-166
Milot, L. 1953: Chemical and biological warfare. L'Union Medicale du Canada 82(2): 177-181
Meselson, M.S. 1970: Chemical and biological weapons. Scientific American 222(5): 15-25
Sompolinsky, D.; Seidman, J. 1970: Chemical and biological weapons. Harefuah 79(5): 231-232
Streger, M.R. 2002: Chemical and biological weapons. Emergency Medical Services 31(1): 34
Tuet, W.Y.; Chen, Y.; Fok, S.; Gao, D.; Weber, R.J.; Champion, J.A.; Ng, N.L. 2017: Chemical and cellular oxidant production induced by naphthalene secondary organic aerosol (SOA): effect of redox-active metals and photochemical aging. Scientific Reports 7(1): 15157
Siemens, H.W.; Schreiber, E. 1946: Chemical and clinical-experimental studies on the combination of mercury precipitate with salicylic acid in the treatment of skin diseases. Dermatologica 93(1): 1-15
Siemens, H.W.; Schreiber, E. 1946: Chemical and clinical-experimental studies on the combination of mercury precipitate with salicylic acid in the treatment of skin diseases. Dermatologica 93(2): 89-96
Kettyle, W.M.; Valtin, H. 1972: Chemical and dimensional chracterization of the renal countercurrent system in mice. Kidney International 1(3): 135-144
Roper, S.D. 2021: Chemical and electrical synaptic interactions among taste bud cells. Current Opinion in Physiology 20: 118-125
Nishina, Y.; Eigler, S. 2020: Chemical and electrochemical synthesis of graphene oxide - a generalized view. Nanoscale 12(24): 12731-12740
Osonkie, A.; Lee, V.; Oyelade, A.; Mrozek-McCourt, M.; Chukwunenye, P.; Golden, T.D.; Cundari, T.R.; Kelber, J.A. 2020: Chemical and electronic structures of cobalt oxynitride films deposited by NH3vs. N2 plasma: theory vs. experiment. Physical Chemistry Chemical Physics: Pccp 22(42): 24640-24648
Packwood, D.M.; Han, P.; Hitosugi, T. 2017: Chemical and entropic control on the molecular self-assembly process. Nature Communications 8: 14463
Fang, Y.; Li, R.; Chu, Z.; Zhu, K.; Gu, F.; Zhang, Y. 2020: Chemical and flavor profile changes of cocoa beans (Theobroma cacao L.) during primary fermentation. Food Science and Nutrition 8(8): 4121-4133
Oliveira, R.S.; Borges, B.T.; Leal, A.P.; de Brum Vieira, P.íc.; Silva, D.B.; Hyslop, S.; Vinadé, L.úc.; Dos Santos, T.G.; Carlini, C.R.; Orchard, I.; Lange, A.B.; Dal Belo, C.ár.A. 2021: Chemical and functional analyses of Rhinella icterica (Spix, 1824) toad secretion screened on contractions of the heart and oviduct in Locusta migratoria. Journal of Insect Physiology 129: 104192
Chan, X.Wah.Audrey.; Wrenger, C.; Stahl, K.; Bergmann, Bärbel.; Winterberg, M.; Müller, I.B.; Saliba, K.J. 2013: Chemical and genetic validation of thiamine utilization as an antimalarial drug target. Nature Communications 4: 2060
Lomashvili, K.; Garg, P.; O'Neill, W.C. 2006: Chemical and hormonal determinants of vascular calcification in vitro. Kidney International 69(8): 1464-1470
Gold, D.; Miller, F. 1975: Chemical and immunological differences between normal and tumoral colonic mucoprotein antigen. Nature 255(5503): 85-87
Keilin, J.; Orlans, E. 1969: Chemical and immunological properties of cytochrome h and helicorubin. Nature 223(5203): 304-306
Dotsika, E.; Dalampakis, P.; Spyridonos, E.; Diamantopoulos, G.; Karalis, P.; Tassi, M.; Raco, B.; Arvanitis, A.; Kolios, N.; Michelot, J.L. 2021: Chemical and isotopic characterization of the thermal fluids emerging along the North-Northeastern Greece. Scientific Reports 11(1): 16291
Gallet, J-J.; Silly, M.G.; Kazzi, M.El.; Bournel, F.; Sirotti, F.; Rochet, F. 2017: Chemical and kinetic insights into the Thermal Decomposition of an Oxide Layer on Si(111) from Millisecond Photoelectron Spectroscopy. Scientific Reports 7(1): 14257
Zerbinati, N.; Esposito, C.; Cipolla, G.; Calligaro, A.; Monticelli, D.; Martina, V.; Golubovic, M.; Binic, I.; Sigova, J.; Gallo, A.L.; D'Este, E.; Jafferany, M.; Pratosoni, M.; Tirant, M.; Van Thuong, N.; Sangalli, F.; Rauso, R.; Lotti, T. 2020: Chemical and mechanical characterization of hyaluronic acid hydrogel cross-linked with polyethylen glycol and its use in dermatology. Dermatologic Therapy 33(4): E13747
Maroudas, N.G. 1973: Chemical and mechanical requirements for fibroblast adhesion. Nature 244(5415): 353-354
Schjeide, O.A.; Ragan, N.; Simons, S. 1960: Chemical and metabolic changes in embryonic liver cells following treatment with estrogens. Annual Progress Report - University of California Laboratory of Nuclear Medicine and Radiation Biology 466: 1-16
Đurović, V.; Radovanović, M.; Mandić, L.; Knežević, D.; Zornić, V.; Đukić, D. 2021: Chemical and microbial evaluation of biscuits made from wheat flour substituted with wheat sprouts. Food Science and Technology International 27(2): 172-183
Eckford, R.E.; Fedorak, P.M. 2002: Chemical and microbiological changes in laboratory incubations of nitrate amendment "sour" produced waters from three western Canadian oil fields. Journal of Industrial Microbiology and Biotechnology 29(5): 243-254
Tastaldi, E. 1947: Chemical and microbiological dosage of some vitamins. Monitor de la Farmacia y de la Terapeutica 53(1427): 399-404
Çavuş, A.; Şen, F. 2021: Chemical and microbiological properties of Lake Aygır in Turkey and usage of drinking, fisheries, and irrigation. Brazilian Journal of Biology 83: E244494
Kamimura, M.; Sasaki, A.; Watanabe, S.; Tanaka, S.; Fukukawa, A.; Takeda, K.; Nakamura, Y.; Nakamura, T.; Kuramochi, K.; Otani, Y.; Hashimoto, F.; Ishimaru, K.; Matsuo, T.; Okamoto, S. 2020: Chemical and molecular bases of dome formation in human colorectal cancer cells mediated by sulphur compounds from Cucumis melo var. conomon. Febs Open Bio 10(12): 2640-2655
Soaud, S.A.; Abdel-Sayyed, S.M.; Mahgoub, E.M.I.; Korma, S.A.; Cacciotti, I.; Ali, A.H.; Siddeeg, A.; Wafa, H.A.M. 2021: Chemical and molecular examinations of some cowpea genotypes using simple sequence repeat and intersimple sequence repeat DNA markers in relation to their cooking quality. Food Science and Nutrition 9(8): 4298-4309
Zhang, S.; Zheng, T.; Lundholm, N.; Huang, X.; Jiang, X.; Li, A.; Li, Y. 2021: Chemical and morphological defenses of Pseudo-nitzschia multiseries in response to zooplankton grazing. Harmful Algae 104: 102033
Ruiz, G.C.M.; do Carmo Morato, L.F.; Pazin, W.M.; Milano, F.; Constantino, C.J.é L.; Valli, L.; Giotta, L. 2021: Chemical and morphological effects of the contraceptive hormone 17 α-ethynylestradiol on fluid lipid membranes. Colloids and Surfaces. B Biointerfaces 204: 111794
Gergs, Aé.; Zenker, A.; Grimm, V.; Preuss, T.G. 2013: Chemical and natural stressors combined: from cryptic effects to population extinction. Scientific Reports 3: 2036
Lichtveld, K.; Thomas, K.; Tulve, N.S. 2018: Chemical and non-chemical stressors affecting childhood obesity: a systematic scoping review. Journal of Exposure Science and Environmental Epidemiology 28(1): 1-12
James, S.; Nwabueze, T.U.; Onwuka, G.I.; Ndife, J.; Usman, M.A.'a. 2020: Chemical and nutritional composition of some selected lesser known legumes indigenous to Nigeria. Heliyon 6(11): E05497
Jiang, K.; Cheng, Z.; Lou, Z.; Wang, L.; Lu, H.; Xu, B.; Jin, N. 2021: Chemical and olfactive impacts of organic matters on odor emission patterns from the simulated construction and demolition waste landfills. Journal of Environmental Sciences 103: 196-206
Peter, A.; Mihaly Cozmuta, L.; Nicula, C.; Mihaly Cozmuta, A.; Talasman, C.M.; Drazic, G.; Peñas, A.; Calahorro, A.J.ús.; Sagratini, G.; Silvi, S. 2021: Chemical and organoleptic changes of curd cheese stored in new and reused active packaging systems made of Ag-graphene-TiO2-PLA. Food Chemistry 363: 130341
Tremolieres, J. 1945: Chemical and pathophysiological significance of the hypoproteinemia. Le Progres Medical 73(21): 355-357
Rapin, J.R.; Duterte, D.; Le Poncin-Lafitte, M.; Coornaert, S.; Desplanches, G.; Bardy, A.; Askienazy, S.; Moretti, J.L.; Raynaud, C. 1983: Chemical and pharmacological aspects of cerebral cellular tracers. Annales de Radiologie 26(1): 48-52
Leser, C.; Keller, M.; Gerndt, S.; Urban, N.; Chen, C.-C.; Schaefer, M.; Grimm, C.; Bracher, F. 2021: Chemical and pharmacological characterization of the TRPML calcium channel blockers ML-SI1 and ML-SI3. European Journal of Medicinal Chemistry 210: 112966
Covello, M. 1948: Chemical and pharmacological findings on Cannabis indica grown in Italy; degradation of the biological activity of the drug in relation to aging and chromatographic separation of the active fractions of the alcoholic and ethereal extracts. Il Farmaco Scienza e Tecnica 3(1): 7-12
Wang, J.-M.; Cao, J.-R.; Gao, X.-L.; Kang, L.-L.; Yang, Z.-Z.; Sha-Na, W.; Li, J.-J.; Tu, P.-F.; Chai, X.-Y. 2020: Chemical and pharmacological progress on a Tibetan folk medicine formula Bawei Chenxiang Powder. Zhongguo Zhong Yao Za Zhi 45(9): 2063-2072
Covello, M. 1947: Chemical and pharmacological research on Cannabis indica grown in Italy; relationships between chemical-analytical characteristics and pharmacological activity. Il Farmaco Scienza e Tecnica 2(6): 503-517
Erspamer, V.; Dordoni, F. 1947: Chemical and pharmacological research on the hypobranchial gland extracts of Murex trunculus, Murex brandaris and Tritonalia erinacea; Presence in the extracts of a new derivative of choline or of a homologous choline, murexin. Archives Internationales de Pharmacodynamie et de Therapie 74(3-4): 263-285
Erspamer, V. 1948: Chemical and pharmacological research on the hypobranchial gland extracts of Murex trunculus, Murex brandaris and Tritonalia erinacea; presence in enteramine extracts or an enteraminosimile substance. Archives Internationales de Pharmacodynamie et de Therapie 76(3): 308-326
Erspamer, V. 1947: Chemical and pharmacological research on the hypobranchial gland extracts of murex trunculus, murex brandaris and tritonalia erinacea; Colored chemical reactions of the extracts. Archives Internationales de Pharmacodynamie et de Therapie 74(2): 113-150
Ren, Z.; Gui, X.; Wei, Y.; Chen, X.; Xu, X.; Zhao, L.; Qiu, H.; Cao, X. 2021: Chemical and photo-initiated aging enhances transport risk of microplastics in saturated soils: Key factors, mechanisms, and modeling. Water Research 202: 117407
Tian, B.; Hua, S.; Tian, Y.; Liu, J. 2020: Chemical and physical chitosan hydrogels as prospective carriers for drug delivery: a review. Journal of Materials Chemistry. B 8(44): 10050-10064
João-Souza, S.Helena.; Lussi, A.; Baumann, T.; Scaramucci, Tís.; Aranha, A.Cecília.Corrêa.; Carvalho, T.Saads. 2017: Chemical and physical factors of desensitizing and/or anti-erosive toothpastes associated with lower erosive tooth wear. Scientific Reports 7(1): 17909
Ungerer, B.; Müller, U.; Potthast, A.; Herrero Acero, E.; Veigel, S. 2021: Chemical and physical interactions of regenerated cellulose yarns and isocyanate-based matrix systems. Scientific Reports 11(1): 11647
Perey, M. 1948: Chemical and physical methods of marking in biology. L' Annee Biologique 52(1): 1-14
Li, X.; Wang, Y.; Li, H.; Jiang, X.; Ji, L.; Liu, T.; Sun, Y. 2021: Chemical and quality evaluation of Pacific white shrimp Litopenaeus vannamei: Influence of strains on flesh nutrition. Food Science and Nutrition 9(10): 5352-5360
Pérez-Ramírez, I.F.; Cariño-Sarabia, A.; Castaño-Tostado, E.; Vázquez-Landaverde, P.A.; Ramos-Gómez, M.; Reynoso-Camacho, Ría.; Amaya-Llano, S.L. 2021: Chemical and sensorial characterization of Tejate, a Mexican traditional maize-cocoa beverage, and improvement of its nutritional value by protein addition. Journal of Food Science and Technology 58(9): 3548-3560
Paissoni, M.A.; Waffo-Teguo, P.; Ma, W.; Jourdes, M.; Rolle, L.; Teissedre, P.-L. 2018: Chemical and sensorial investigation of in-mouth sensory properties of grape anthocyanins. Scientific Reports 8(1): 17098
Bottiroli, R.; Dario Troise, A.; Aprea, E.; Fogliano, V.; Vitaglione, P.; Gasperi, F. 2020: Chemical and sensory changes during shelf-life of UHT hydrolyzed-lactose milk produced by "in batch" system employing different commercial lactase preparations. Food Research International 136: 109552
Drzewicz, Pław.; Naglik, B.; Natkaniec-Nowak, L.; Dumańska-Słowik, M.; Stach, Pł.; Kwaśny, Mław.; Matusik, J.; Milovský, R.; Skonieczny, J.; Kubica-Bąk, D. 2020: Chemical and spectroscopic signatures of resins from Sumatra (Sarolangun mine, Jambi Province) and Germany (Bitterfeld, Saxony-Anhalt). Scientific Reports 10(1): 18283
Jung, C.-C.; Su, H.-J. 2020: Chemical and stable isotopic characteristics of PM2.5 emitted from Chinese cooking. Environmental Pollution 267: 115577
Jackson, E.; Sun, M.; Kubota, T.; Takanashi, K.; Hirohata, A. 2018: Chemical and structural analysis on magnetic tunnel junctions using a decelerated scanning electron beam. Scientific Reports 8(1): 7585
Harcourt, E.M.; Kietrys, A.M.; Kool, E.T. 2017: Chemical and structural effects of base modifications in messenger RNA. Nature 541(7637): 339-346
Uluisik, S. 2021: Chemical and structural quality traits during postharvest ripening regulated by chromosome segments from a wild relative of tomato Solanum pennellii IL4-2 and IL5-1. Journal of Food Biochemistry 2021: E13858
Lin, F.; Markus, I.M.; Doeff, M.M.; Xin, H.L. 2014: Chemical and structural stability of lithium-ion battery electrode materials under electron beam. Scientific Reports 4: 5694
Calabrese, D.R.; Chen, X.; Leon, E.C.; Gaikwad, S.M.; Phyo, Z.; Hewitt, W.M.; Alden, S.; Hilimire, T.A.; He, F.; Michalowski, A.M.; Simmons, J.K.; Saunders, L.B.; Zhang, S.; Connors, D.; Walters, K.J.; Mock, B.A.; Schneekloth, J.S. 2018: Chemical and structural studies provide a mechanistic basis for recognition of the MYC G-quadruplex. Nature Communications 9(1): 4229
Bosi, F. 2019: Chemical and structural variability in cubic spinel oxides. Acta Crystallographica Section B Structural Science Crystal Engineering and Materials 75(Part 2): 279-285
Majella Bijos, G. 1945: Chemical and therapeutic aspects of penicillin. Revista de Medicina Militar 34: 121-127
Kuckelkorn, R.; Luft, I.; Kottek, A.A.; Schrage, N.F.; Makropoulos, W.; Reim, M. 1993: Chemical and thermal eye burns in the residential area of RWTH Aachen. Analysis of accidents in 1 year using a new automated documentation of findings. Klinische Monatsblatter für Augenheilkunde 203(1): 34-42
Lellouch, E.; Paubert, G.; Moreno, R.; Festou, M.C.; Bézard, B.; Bockelée-Morvan, D.; Colom, P.; Crovisier, J.; Encrenaz, T.; Gautier, D. 1995: Chemical and thermal response of Jupiter's atmosphere following the impact of comet Shoemaker-Levy 9. Nature 373(6515): 592-595
Pose-Boirazian, Tás.; Eibes, G.; Barreiro-Piñeiro, N.; Díaz-Jullien, C.; Lema, J.M.; Martínez-Costas, J. 2021: Chemical and thermal stabilization of CotA laccase via a novel one-step expression and immobilization in muNS-Mi nanospheres. Scientific Reports 11(1): 2802
Wang, B.; Lau, Y.-S.; Huang, Y.; Organ, B.; Chuang, H.-C.; Ho, S.S.H.; Qu, L.; Lee, S.-C.; Ho, K.-F. 2021: Chemical and toxicological characterization of particulate emissions from diesel vehicles. Journal of Hazardous Materials 405: 124613
Higginbotham, G.R.; Huang, A.; Firestone, D.; Verrett, J.; Ress, J.; Campbell, A.D. 1968: Chemical and toxicological evaluations of isolated and synthetic chloro derivatives of dibenzo-p-dioxin. Nature 220(5168): 702-703
Armand-Ugon, N.A.M. 1945: Chemical and vitamin study of breast milk supplied by the lactating hospital Pereyra Rossell. ANALES. Asociacion de Quimica y Farmacia del Uruguay 47(2): 109-123
Armand-Ugon Indart, N. 1946: Chemical and vitamin study of human milk supplied by the lactating hospital Pereira-Rossell. Archivos de Pediatria del Uruguay 17: 16-35
Lee, N.; Zhang, Y. 2008: Chemical answers to epigenetic crosstalk. Nature Chemical Biology 4(6): 335-337
Garst, E.H.; Das, T.; Hang, H.C. 2021: Chemical approaches for investigating site-specific protein S-fatty acylation. Current Opinion in Chemical Biology 65: 109-117
Zhou, Y.; Xie, Q.; Wang, H.; Sun, H. 2022: Chemical approaches for the preparation of ubiquitinated proteins via natural linkages. Journal of Peptide Science: An Official Publication of the European Peptide Society 28(3): E3367
Wang, D.; Farnum, B.H.; Dares, C.J.; Meyer, T.J. 2020: Chemical approaches to artificial photosynthesis: a molecular, dye-sensitized photoanode for O2 production prepared by layer-by-layer self-assembly. Journal of Chemical Physics 152(24): 244706
Li, W.; Jiang, K.; Wei, W.; Shi, Y.; Ding, S. 2013: Chemical approaches to studying stem cell biology. Cell Research 23(1): 81-91
Rexach, J.E.; Clark, P.M.; Hsieh-Wilson, L.C. 2008: Chemical approaches to understanding O-GlcNAc glycosylation in the brain. Nature Chemical Biology 4(2): 97-106
Kaneko, M.; Futamura, Y.; Tsukuda, S.; Kondoh, Y.; Sekine, T.; Hirano, H.; Fukano, K.; Ohashi, H.; Saso, W.; Morishita, R.; Matsunaga, S.; Kawai, F.; Ryo, A.; Park, S-Yong.; Suzuki, R.; Aizaki, H.; Ohtani, N.; Sureau, C.; Wakita, T.; Osada, H.; Watashi, K. 2018: Chemical array system, a platform to identify novel hepatitis B virus entry inhibitors targeting sodium taurocholate cotransporting polypeptide. Scientific Reports 8(1): 2769
Kehoe, R.A. 1961: Chemical aspects of environmental health. Industrial Medicine and Surgery 30: 380-389
Albert, A. 1958: Chemical aspects of selective toxicity. Nature 182(4633): 421-422
Solomides, J. 1945: Chemical aspects of the hemolysis caused by glycerin and pyridine. Comptes Rendus des Seances de la Societe de Biologie et de ses Filiales 139: 873
Bottin, J. 1948: Chemical assays in venous and arterial blood. Le Scalpel 101(42): 985-988
Aslam, S.N.; Venzi, M.S.; Venkatraman, V.; Mikkelsen, Øy. 2020: Chemical assessment of marine sediments in vicinity of Norwegian fish farms - a pilot study. Science of the Total Environment 732: 139130
Bezemer, K.; McLennan, L.; Hessels, R.; Schoorl, J.; van den Elshout, J.; van der Heijden, A.; Hulsbergen, A.; Koeberg, M.; Busby, T.; Yevdokimov, A.; de Rijke, E.; Schoenmakers, P.; Smith, J.; Oxley, J.; van Asten, A. 2020: Chemical attribution of the homemade explosive ETN - Part II: Isotope ratio mass spectrometry analysis of ETN and its precursors. Forensic Science International 313: 110344
Rowlands, D.J.; Clarke, B.E.; Carroll, A.R.; Brown, F.; Nicholson, B.H.; Bittle, J.L.; Houghten, R.A.; Lerner, R.A. 1983: Chemical basis of antigenic variation in foot-and-mouth disease virus. Nature 306(5944): 694-697
Sardaremelli, S.; Hasanzadeh, M.; Razmi, H. 2021: Chemical binding of horseradish peroxidase enzyme with poly beta-cyclodextrin and its application as molecularly imprinted polymer for the monitoring of H2 O2 in human plasma samples. Journal of Molecular Recognition: Jmr 34(5): E2884
Abdollahiyan, P.; Mohammadzadeh, A.; Hasanzadeh, M. 2021: Chemical binding of molecular-imprinted polymer to biotinilated antibody: Utilization of molecular imprinting polymer as intelligent synthetic biomaterials toward recognition of carcinoma embryonic antigen in human plasma sample. Journal of Molecular Recognition: Jmr 34(9): E2897
Fathi, N.; Saadati, A.; Hasanzadeh, M.; Samiei, M. 2021: Chemical binding of pyrrolidinyl peptide nucleic acid (acpcPNA-T9) probe with AuNPs toward label-free monitoring of miRNA-21: a novel biosensing platform for biomedical analysis and POC diagnostics. Journal of Molecular Recognition: Jmr 34(8): E2893
Köhn, M.; Schultz, C. 2009: Chemical biologists gather in Heidelberg. Nature Chemical Biology 5(2): 66-69
Miller, E.W. 2015: Chemical biologists rush to San Francisco for the ICBS. Nature Chemical Biology 11(2): 91-95
Peterson, R.T. 2008: Chemical biology and the limits of reductionism. Nature Chemical Biology 4(11): 635-638
Doudna, J.A. 2005: Chemical biology at the crossroads of molecular structure and mechanism. Nature Chemical Biology 1(6): 300-303
Jiang, H.; Wu, J.; Zhang, L.; Liang, W.; Gao, F.; Du, C.; Feng, X.; Chen, Y. 2008: Chemical biology in China takes on signal transduction. Nature Chemical Biology 4(9): 515-518
Kataoka, T. 2009: Chemical biology of inflammatory cytokine signaling. Journal of Antibiotics 62(12): 655-667
Shchepinova, M.M.; Hanyaloglu, A.C.; Frost, G.S.; Tate, E.W. 2020: Chemical biology of noncanonical G protein-coupled receptor signaling: Toward advanced therapeutics. Current Opinion in Chemical Biology 56: 98-110
Mondal, S.; Thompson, P.R. 2021: Chemical biology of protein citrullination by the protein a arginine deiminases. Current Opinion in Chemical Biology 63: 19-27
He, X.; Zhang, W.; Yan, C.; Nie, F.; Li, C.; Liu, X.; Fei, C.; Li, S.; Song, X.; Jia, Y.; Zeng, R.; Wu, D.; Pan, W.; Hao, X.; Li, L. 2017: Chemical biology reveals CARF as a positive regulator of canonical Wnt signaling by promoting TCF/β-catenin transcriptional activity. Cell Discovery 3: 17003
Broichhagen, J.; Kilian, N. 2021: Chemical Biology Tools to Investigate Malaria Parasites. Chembiochem: a European Journal of Chemical Biology 22(13): 2219-2236
Arora, P.S.; Ansari, A.Z. 2009: Chemical biology: A Notch above other inhibitors. Nature 462(7270): 171-173
Bornscheuer, U.T. 2016: Chemical biology: A radical change in enzyme catalysis. Nature 540(7633): 345-346
Raushel, F.M. 2011: Chemical biology: Catalytic detoxification. Nature 469(7330): 310-311
Liu, Y. 2009: Chemical biology: Caught in the activation. Nature 461(7263): 484-485
Fischle, W.; Schwarzer, D.; Mootz, H.D. 2015: Chemical biology: Chromatin chemistry goes cellular. Nature Chemistry 7(5): 371-373
Kwok, R. 2012: Chemical biology: DNA's new alphabet. Nature 491(7425): 516-518
Neklesa, T.K.; Crews, C.M. 2012: Chemical biology: Greasy tags for protein removal. Nature 487(7407): 308-309
Rader, C. 2015: Chemical biology: How to minimalize antibodies. Nature 518(7537): 38-39
Cooper, G.J.T.; Cronin, L. 2009: Chemical biology: How to sweet-talk bacteria. Nature Chemistry 1(5): 342-343
Krysiak, J.; Sieber, S.A. 2014: Chemical biology: Knockout for malaria. Nature Chemistry 6(2): 93-94
Darby, J.F.; Workman, P. 2011: Chemical biology: Many faces of a cancer-supporting protein. Nature 478(7369): 334-335
Vendruscolo, M.; Dobson, C.M. 2007: Chemical biology: More charges against aggregation. Nature 449(7162): 555
Schnermann, M.J. 2017: Chemical biology: Organic dyes for deep bioimaging. Nature 551(7679): 176-177
Maynard, H. 2015: Chemical biology: Protein modification in a trice. Nature 526(7575): 646-647
Mitchinson, A. 2009: Chemical biology: Protein picker. Nature 460(7257): 805
Noel, J.P. 2010: Chemical biology: Synthetic metabolism goes green. Nature 468(7322): 380-381
Leconte, A.M.; Romesberg, F.E. 2006: Chemical biology: a broader take on DNA. Nature 444(7119): 553-555
Harper, J.Wade. 2007: Chemical biology: a degrading solution to pollution. Nature 446(7135): 499-500
Finkelstein, J. 2006: Chemical biology: a pocketful of colour. Nature 440(7082): 285
Walsh, C.T. 2006: Chemical biology: a sweet exchange. Nature 443(7109): 285-286
Ozcelik, D. 2021: Chemical biology: a toolbox to unlock neurochemical epigenetics?. Neural Regeneration Research 16(2): 298-299
Famulok, M.; Mayer, Günter. 2006: Chemical biology: aptamers in nanoland. Nature 439(7077): 666-669
Pryk, N.; Schulz, F. 2015: Chemical biology: biosynthetic interceptors. Nature Chemistry 7(2): 102-104
Yarus, M. 2005: Chemical biology: bring them back alive. Nature 438(7064): 40
Muir, T.W. 2006: Chemical biology: cutting out the middle man. Nature 442(7102): 517-518
Grotenbreg, G.; Ploegh, H. 2007: Chemical biology: dressed-up proteins. Nature 446(7139): 993-995
Marx, V. 2018: Chemical biology: fats as research subjects. Nature Methods 15(1): 35-38
Famulok, M. 2004: Chemical biology: green fluorescent RNA. Nature 430(7003): 976-977
Tirrell, D.A. 2004: Chemical biology: hitting the sweet spot. Nature 430(7002): 837
Schmitz, A.; Famulok, M. 2007: Chemical biology: ignore the nonsense. Nature 447(7140): 42-43
Chang, C.J. 2007: Chemical biology: ions illuminated. Nature 448(7154): 654-655
Letso, R.R.; Stockwell, B.R. 2006: Chemical biology: renewing embryonic stem cells. Nature 444(7120): 692-693
Caterina, M.J. 2007: Chemical biology: sticky spices. Nature 445(7127): 491-492
Bibikov, A.V.; Nikolaev, A.V.; Tkalya, E.V. 2020: Chemical bonding between thorium atoms and a carbon hexagon in carbon nanomaterials. Physical Chemistry Chemical Physics: Pccp 22(39): 22501-22507
Lalithambika, S.Sreekantan.Nair.; Atak, K.; Seidel, R.; Neubauer, A.; Brandenburg, T.; Xiao, J.; Winter, B.; Aziz, E.F. 2017: Chemical bonding in aqueous hexacyano cobaltate from photon- and electron-detection perspectives. Scientific Reports 7: 40811
Potenti, S.; Paoloni, L.; Nandi, S.; Fusè, M.; Barone, V.; Rampino, S. 2020: Chemical bonding in cuprous complexes with simple nitriles: octet rule and resonance concepts versus quantitative charge-redistribution analysis. Physical Chemistry Chemical Physics: Pccp 22(36): 20238-20247
Zhang, J.; Song, L.; Sist, M.; Tolborg, K.; Iversen, B.Brummerstedt. 2018: Chemical bonding origin of the unexpected isotropic physical properties in thermoelectric Mg 3 Sb 2 and related materials. Nature Communications 9(1): 4716
Dyker, C.Adam.; Bertrand, G. 2009: Chemical bonding: Rethinking carbon. Nature Chemistry 1(4): 265-266
Allsopp, C.B.; Catcheside, D.G. 1948: Chemical breakage of chromosomes. Nature 161(4104): 1011
Watel, M. 1948: Chemical build-up of cockerels by stilboestrol. Recueil de Medecine Veterinaire 124(9): 412-415
Küchle, H.J. 1979: Chemical burns of the eye. Deutsche Medizinische Wochenschrift 104(10): 344
Cendelín, J.; Filipec, M. 1992: Chemical burns of the eye. Ceskoslovenska Oftalmologie 48(3): 220-223
Pereleux, A. 1986: Chemical burns of the eye. Bulletin de la Societe Belge d'Ophtalmologie 217: 35-43
Whitehead, K.P. 1971: Chemical burns of the eye. Nursing Times 67(25): 759-762
Whitehead, K.P. 1965: Chemical burns of the eye. Transactions of the Ophthalmological Societies of the United Kingdom 85: 617-629
Tarkkanen, A. 1966: Chemical burns of the eye. Suomen Laakarilehti. Finlands Lakartidning 21(20): 1689-1690
Dziwisz, M.; Sondej, J. 1972: Chemical burns of the stomach. Wiadomosci Lekarskie 25(24): 2247-2250
Kal'chenko, I.I.; Khokholia, V.P. 1968: Chemical burns of the stomach. Klinicheskaia Khirurgiia 9: 35-42
Komarov, A.S.; Kotomina, S.I. 1962: Chemical burns of the stomach and their treatment. Sovetskaia Meditsina 26: 13-16
Gavrilina, K.P. 1957: Chemical burns of the stomach in children. Vestnik Khirurgii Imeni I. I. Grekova 78(4): 93-94
Wang, B.; Lu, M.; Cook, J.M.; Yang, D-Rong.; Dunn, D.W.; Wang, R-Wu. 2018: Chemical camouflage: a key process in shaping an ant-treehopper and fig-fig wasp mutualistic network. Scientific Reports 8(1): 1833
Alfred, L.J. 1967: Chemical carcinogen-induced alterations in the potentials of cultured animal cells. Nature 214(5089): 732-734
Salerno, R.A.; Whitmire, C.E.; Garcia, I.M.; Huebner, R.J. 1972: Chemical carcinogenesis in mice inhibited by interferon. Nature: new Biology 239(88): 31-32
Levine, L. 1977: Chemical carcinogens stimulate canine kidney (MDCK) cells to produce prostaglandins. Nature 268(5619): 447-448
Ki, B.; Kim, K.; Choi, K.; Oh, J. 2020: Chemical carving lithography with scanning catalytic probes. Scientific Reports 10(1): 13411
Davies, R.R. 2001: Chemical castration of cockerels. Veterinary Record 148(18): 580
Kim, S.; La, J.; Seo, H.; Lee, Y.; Yang, S.-O.; Lee, J. 2021: Chemical changes and antioxidant activities of heated whole barley extracts. Food Science and Biotechnology 30(9): 1269-1276
Chayen, J.; Cunningham, G.J.; Winstanley, D.P. 1959: Chemical changes in human bronchial epithelium and their relation to bronchial cancer. Nature 183(4677): 1743
Tang, X.; González, N.R.ír.; Russell, M.L.; Maddalena, R.L.; Gundel, L.A.; Destaillats, H. 2021: Chemical changes in thirdhand smoke associated with remediation using an ozone generator. Environmental Research 198: 110462
Carvalho, G.A.; Pilling, S.ér. 2022: Chemical changes induced during heating of acetonitrile-rich ice pre-irradiated by X-rays and its implication in astrochemistry. Spectrochimica Acta. Part a Molecular and Biomolecular Spectroscopy 267(Part 1): 120495
Saremnezhad, S.; Soltani, M.; Faraji, A.; Hayaloglu, A.A. 2021: Chemical changes of food constituents during cold plasma processing: a review. Food Research International 147: 110552
Uppala, J.Kumar.; Gani, A.R.; Ramaiah, K.V.A. 2017: Chemical chaperone, TUDCA unlike PBA, mitigates protein aggregation efficiently and resists ER and non-ER stress induced HepG2 cell death. Scientific Reports 7(1): 3831
Bandyopadhyay, A.; Saxena, K.; Kasturia, N.; Dalal, V.; Bhatt, N.; Rajkumar, A.; Maity, S.; Sengupta, S.; Chakraborty, K. 2012: Chemical chaperones assist intracellular folding to buffer mutational variations. Nature Chemical Biology 8(3): 238-245
Chamcheu, J.Christopher.; Navsaria, H.; Pihl-Lundin, I.; Liovic, M.; Vahlquist, A.; Törmä, H. 2011: Chemical chaperones protect epidermolysis bullosa simplex keratinocytes from heat stress-induced keratin aggregation: involvement of heat shock proteins and MAP kinases. Journal of Investigative Dermatology 131(8): 1684-1691
Chen, Y.; Wu, Z.; Zhao, S.; Xiang, R. 2016: Chemical chaperones reduce ER stress and adipose tissue inflammation in high fat diet-induced mouse model of obesity. Scientific Reports 6: 27486
Saleem, A.; Akhtar, M.Furqan.; Latif, A.; Abdel-Daim, M.M.; Baig, M.Muhammad.Faran.Ashraf.; Saleem, M.; Mehmood, M.Hassan. 2021: Chemical characterisation and appraisal of antidiabetic potential of Terminalia citrina extract in streptozotocin induced hyperglycaemia in Wistar rats. Archives of Physiology and Biochemistry 2021: 1-14
Kammoun, M.; Ayeb, H.; Bettaieb, T.; Richel, A. 2020: Chemical characterisation and technical assessment of agri-food residues, marine matrices, and wild grasses in the South Mediterranean area: a considerable inflow for biorefineries. Waste Management 118: 247-257
Martins, V.ân.; Correia, C.; Cunha-Lopes, I.ês.; Faria, T.; Diapouli, E.; Manousakas, M.I.; Eleftheriadis, K.; Almeida, S.M. 2021: Chemical characterisation of particulate matter in urban transport modes. Journal of Environmental Sciences 100: 51-61
Parkhouse, R.M.; Lifter, J.; Choi, Y.S. 1980: Chemical characterisation of the Fab and Fc fragments from surface immunoglobulin. Nature 284(5753): 280-281
Barclay, A.N.; Letarte-Muirhead, M.; Williams, A.F.; Faulkes, R.A. 1976: Chemical characterisation of the Thy-1 glycoproteins from the membranes of rat thymocytes and brain. Nature 263(5578): 563-567
Saleem, A.; Saleem, M.; Akhtar, M.Furqan.; Rasul, A.; Baig, M.Muhammad.Faran.Ashraf. 2020: Chemical characterisation, in vitro antioxidant, cytotoxicity and safety evaluation of Polystichum braunii (Spenn.) fee roots. Natural Product Research 2020: 1-6
Zhao, K.; Li, B.; He, D.; Zhao, C.; Shi, Z.; Dong, B.; Pan, D.; Patil, R.R.; Yan, Z.; Guo, Z. 2020: Chemical characteristic and bioactivity of hemicellulose-based polysaccharides isolated from Salvia miltiorrhiza. International Journal of Biological Macromolecules 165(Part B): 2475-2483
Alarcón, A.L.; Palacios, L.M.; Osorio, C.; César Narváez, P.; Heredia, F.J.; Orjuela, A.; Hernanz, D. 2021: Chemical characteristics and colorimetric properties of non-centrifugal cane sugar ("panela") obtained via different processing technologies. Food Chemistry 340: 128183
Šutovská, M.; Kocmálová, M.; Mažerik, J.; Pawlaczyk-Graja, I.; Gancarz, R.; Capek, P. 2022: Chemical characteristics and significant antitussive effect of the Erigeron canadensis polyphenolic polysaccharide-protein complex. Journal of Ethnopharmacology 284:: 114754
Yan, G.; Zhang, P.; Yang, J.; Zhang, J.; Zhu, G.; Cao, Z.; Fan, J.; Liu, Z.; Wang, Y. 2021: Chemical characteristics and source apportionment of PM2.5 in a petrochemical city: Implications for primary and secondary carbonaceous component. Journal of Environmental Sciences 103: 322-335
Liu, B.; Wu, J.; Wang, J.; Shi, L.; Meng, H.; Dai, Q.; Wang, J.; Song, C.; Zhang, Y.; Feng, Y.; Hopke, P.K. 2021: Chemical characteristics and sources of ambient PM2.5 in a harbor area: Quantification of health risks to workers from source-specific selected toxic elements. Environmental Pollution 268(Part B): 115926
Hu, R.; Xu, Q.; Wang, S.; Hua, Y.; Bhattarai, N.; Jiang, J.; Song, Y.; Daellenbach, K.R.; Qi, L.; Prevot, A.S.H.; Hao, J. 2020: Chemical characteristics and sources of water-soluble organic aerosol in southwest suburb of Beijing. Journal of Environmental Sciences 95: 99-110
Gustafson, R.L.; Kroeger, A.V.; Vaichulis, E.M. 1966: Chemical characteristics of Leptotrichia buccalis endotoxin. Nature 212(5059): 301-302
Miao, Q.; Li, X.; Xu, Y.; Liu, C.; Xie, R.; Lv, Z. 2021: Chemical characteristics of groundwater and source identification in a coastal city. Plos one 16(8): E0256360
Valappil, N.K.M.; Viswanathan, P.M.; Hamza, V. 2020: Chemical characteristics of rainwater in the tropical rainforest region in northwestern Borneo. Environmental Science and Pollution Research International 27(29): 36994-37010
Liyandeniya, A.B.; Deeyamulla, M.P.; Abeysundara, S.P.; Priyantha, N. 2020: Chemical characteristics of wet precipitation at Peradeniya in Sri Lanka. Environmental Monitoring and Assessment 193(1): 14
Ahmad, M.; Yu, Q.; Chen, J.; Cheng, S.; Qin, W.; Zhang, Y. 2021: Chemical characteristics, oxidative potential, and sources of PM2.5 in wintertime in Lahore and Peshawar, Pakistan. Journal of Environmental Sciences 102: 148-158
Flores-Mejía, R.; Fragoso-Vázquez, M.J.; Pérez-Blas, L.G.; Parra-Barrera, A.; Hernández-Castro, S.S.; Estrada-Pérez, A.R.; Rodrígues, J.; Lara-Padilla, E.; Ortiz-Morales, A.; Correa-Basurto, J. 2021: Chemical characterization (LC-MS-ESI), cytotoxic activity and intracellular localization of PAMAM G4 in leukemia cells. Scientific Reports 11(1): 8210
Liu, W.; Xia, M.; Bai, J.; Yang, L.; Wang, Z.; Wang, R.; Shi, Y. 2021: Chemical characterization and 5α-reductase inhibitory activity of phenolic compounds in goji berries. Journal of Pharmaceutical and Biomedical Analysis 201: 114119
Rocha, M.Inês.; Gonçalves, M.José.; Cavaleiro, C.; Cruz, M.Teresa.; Pereira, Cáudia.; Moreira, Pícia.; Salgueiro, Lígia.; Figueirinha, A. 2021: Chemical characterization and bioactive potential of Artemisia campestris L. subsp. maritima (DC) Arcang. essential oil and hydrodistillation residual water. Journal of Ethnopharmacology 276:: 114146
Alves-Silva, J.Miguel.; Piras, A.; Porcedda, S.; Falconieri, D.; Maxia, A.; Gonçalves, M.José.; Cruz, M.Teresa.; Salgueiro, Lígia. 2020: Chemical characterization and bioactivity of the essential oil from Santolina insularis , a Sardinian endemism. Natural Product Research 2020: 1-5
Sajjad Haider, M.; Ashraf, W.; Javaid, S.; Fawad Rasool, M.; Muhammad Abdur Rahman, H.; Saleem, H.; Muhammad Muneeb Anjum, S.; Siddique, F.; Morales-Bayuelo, A.; Kaya, S.; Alqahtani, F.; Alasmari, F.; Imran, I. 2021: Chemical characterization and evaluation of the neuroprotective potential of Indigofera sessiliflora through in-silico studies and behavioral tests in scopolamine-induced memory compromised rats. Saudi Journal of Biological Sciences 28(8): 4384-4398
Garbin, V.P.; Munguía, B.; Saldaña, J.C.; Deschamps, C.íc.; Cipriano, R.R.; Molento, M.B.ão. 2021: Chemical characterization and in vitro anthelmintic activity of Citrus bergamia Risso and Citrus X paradisii Macfad essential oil against Haemonchus contortus Kirby isolate. Acta Tropica 217: 105869
Mandić, M.R.; Oalđe, M.M.; Lunić, T.M.; Sabovljević, A.D.; Sabovljević, M.S.; Gašić, U.š M.; Duletić-Laušević, S.N.; Božić, B.D.; Božić Nedeljković, B.D. 2021: Chemical characterization and in vitro immunomodulatory effects of different extracts of moss Hedwigia ciliata (Hedw.) P. Beauv. from the Vršačke Planine Mts., Serbia. Plos one 16(2): E0246810
Mara de Menezes Epifanio, N.; Rykiel Iglesias Cavalcanti, L.; Falcão Dos Santos, K.; Soares Coutinho Duarte, P.; Kachlicki, P.; Ożarowski, M.; Jorge Riger, C.; Siqueira de Almeida Chaves, D. 2020: Chemical characterization and in vivo antioxidant activity of parsley (Petroselinum crispum) aqueous extract. Food and Function 11(6): 5346-5356
Tang, J.-J.; Guo, C.; Peng, X.-N.; Guo, X.-C.; Zhang, Q.; Tian, J.-M.; Gao, J.-M. 2021: Chemical characterization and multifunctional neuroprotective effects of sesquiterpenoid-enriched Inula britannica flowers extract. Bioorganic Chemistry 116: 105389
Khan, J.Z.; Sun, L.; Tian, Y.; Shi, G.; Feng, Y. 2021: Chemical characterization and source apportionment of PM1 and PM2.5 in Tianjin, China: Impacts of biomass burning and primary biogenic sources. Journal of Environmental Sciences 99: 196-209
Singh, G.K.; Rajeev, P.; Paul, D.; Gupta, T. 2021: Chemical characterization and stable nitrogen isotope composition of nitrogenous component of ambient aerosols from Kanpur in the Indo-Gangetic Plains. Science of the Total Environment 763: 143032
De Araújo, F.áb.F.; de Paulo Farias, D.; Neri-Numa, I.A.él.; Dias-Audibert, F.áv.L.ís.; Delafiori, J.; de Souza, F.G.; Catharino, R.R.; do Sacramento, C.K.; Pastore, G.M. 2021: Chemical characterization of Eugenia stipitata: a native fruit from the Amazon rich in nutrients and source of bioactive compounds. Food Research International 139: 109904
Shakri, N.M.; Salleh, W.M.N.H.W.; Khamis, S.; Mohamad Ali, N.A. 2020: Chemical characterization of Goniothalamus macrophyllus and Goniothalamus malayanus leaves' essential oils. Zeitschrift für Naturforschung. C Journal of Biosciences 75(11-12): 485-488
Tobler, A.; Bhattu, D.; Canonaco, F.; Lalchandani, V.; Shukla, A.; Thamban, N.M.; Mishra, S.; Srivastava, A.K.; Bisht, D.S.; Tiwari, S.; Singh, S.; Močnik, G.ša.; Baltensperger, U.; Tripathi, S.N.; Slowik, J.G.; Prévôt, A.é S.H. 2020: Chemical characterization of PM2.5 and source apportionment of organic aerosol in new Delhi, India. Science of the Total Environment 745: 140924
Lin, Y.-C.; Li, Y.-C.; Amesho, K.T.T.; Shangdiar, S.; Chou, F.-C.; Cheng, P.-C. 2020: Chemical characterization of PM2.5 emissions and atmospheric metallic element concentrations in PM2.5 emitted from mobile source gasoline-fueled vehicles. Science of the Total Environment 739: 139942
Hao, Y.; Deng, S.; Qiu, Z.; Lu, Z.; Song, H.; Yang, N. 2021: Chemical characterization of PM2.5 emitted from China IV and China V light-duty vehicles in China. Science of the Total Environment 783: 147101
Alanazi, S.; Alenzi, N.; Alenazi, F.; Tabassum, H.; Watson, D. 2021: Chemical characterization of Saudi propolis and its antiparasitic and anticancer properties. Scientific Reports 11(1): 5390
Lin, P-Cheng.; Wang, X.; Zhong, X-Jian.; Zhou, N.; Wu, L.; Li, J-Jie.; Hu, Y-Tao.; Shang, X-Ya. 2020: Chemical characterization of a PD-1/PD-L1 inhibitory activity fraction of the ethanol extract from Gymnadenia conopsea. Journal of Asian Natural Products Research 2020: 1-15
Asai, T.; Takeshita, J.-I.; Shimizu, Y.; Tochikubo, Y.; Shizu, R.; Hosaka, T.; Kanno, Y.; Yoshinari, K. 2021: Chemical characterization of anemia-inducing aniline-related substances and their application to the construction of a decision tree-based anemia prediction model. Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research Association 157: 112548
Eichler; Bruchle; Dressler; Dullmann; Eichler; Gaggeler; Gregorich; Hoffman; Hubener; Jost; Kirbach; Laue; Lavanchy; Nitsche; Patin; Piguet; Schadel; Shaughnessy; Strellis; Taut; Tobler; Tsyganov; Turler; Vahle; Wilk; Yakushev 2000: Chemical characterization of bohrium (element 107). Nature 407(6800): 63-65
Ben Ayache, S.; Reis, F.S.; Inês Dias, M.; Pereira, C.; Glamočlija, J.; Soković, M.; Behija Saafi, E.; C F R Ferreira, I.; Barros, L.; Achour, L. 2021: Chemical characterization of carob seeds (Ceratonia siliqua L.) and use of different extraction techniques to promote its bioactivity. Food Chemistry 351: 129263
Montero, L.; Schmitz, O.J.; Meckelmann, S.W. 2020: Chemical characterization of eight herbal liqueurs by means of liquid chromatography coupled with ion mobility quadrupole time-of-flight mass spectrometry. Journal of Chromatography. a 1631: 461560
Eichler, R.; Aksenov, N.V.; Belozerov, A.V.; Bozhikov, G.A.; Chepigin, V.I.; Dmitriev, S.N.; Dressler, R.; Gäggeler, H.W.; Gorshkov, V.A.; Haenssler, F.; Itkis, M.G.; Laube, A.; Lebedev, V.Ya.; Malyshev, O.N.; Oganessian, Y.Ts.; Petrushkin, O.V.; Piguet, D.; Rasmussen, P.; Shishkin, S.V.; Shutov, A.V.; Svirikhin, A.I.; Tereshatov, E.E.; Vostokin, G.K.; Wegrzecki, M.; Yeremin, A.V. 2007: Chemical characterization of element 112. Nature 447(7140): 72-75
Klupinski, T.P.; Strozier, E.D.; Makselan, S.D.; Buehler, S.S.; Peters, E.N.; Lucas, E.A.; Casbohm, J.S.; Friedenberg, D.A.; Landgraf, A.J.; Frank, A.J.; Mikheev, V.B.; Ivanov, A. 2020: Chemical characterization of marijuana blunt smoke by non-targeted chemical analysis. Inhalation Toxicology 32(4): 177-187
Zhang, Y.; Yang, K.; Dong, Y.; Nie, Z.; Li, W. 2021: Chemical characterization of non-volatile dissolved organic matter from oilfield-produced brines in the Nanyishan area of the western Qaidam Basin, China. Chemosphere 268: 128804
Li, Y.; Wu, Y.; Xu, J.; Wu, A.; Zhao, Z.; Tong, M.; Luan, S. 2021: Chemical characterization of particulate organic matter from commercial restaurants: Alkyl PAHs as new tracers for cooking. Science of the Total Environment 770: 145308
Csáki, Ág.; Puskár, Z.; Tóth, Z.E.; Vereczki, V.ór.; Köves, K. 2021: Chemical characterization of pineal neurons in perinatal rats. Neuroscience Letters 765: 136274
Chaves, P.F.P.; Adami, E.R.; Acco, A.; Iacomini, M.; Cordeiro, L.M.C.ôr. 2020: Chemical characterization of polysaccharides from Baccharis trimera (Less.) DC. infusion and its hepatoprotective effects. Food Research International 136: 109510
Pinheiro, F.L.; Prado, G.; Ito, S.; Simon, J.D.; Wakamatsu, K.; Anelli, L.E.; Andrade, Jé.A.F.; Glass, K. 2019: Chemical characterization of pterosaur melanin challenges color inferences in extinct animals. Scientific Reports 9(1): 15947
von Byern, J.; Grunwald, I.; Kosok, M.; Saporito, R.A.; Dicke, U.; Wetjen, O.; Thiel, K.; Borcherding, K.; Kowalik, T.; Marchetti-Deschmann, M. 2017: Chemical characterization of the adhesive secretions of the salamander Plethodon shermani (Caudata, Plethodontidae). Scientific Reports 7(1): 6647
Ramiro, C.N.; Martín, J.é; da Silva Junior, P.I.; Pinto, H.B.A.; Magalhães Júnior, A.J.é C.; Abrahão, C.; Rodrigues, M.T. 2020: Chemical characterization of the lipids in femoral gland secretions of wild male tegu lizards, Salvator merianae (Squamata, Teiidae) in comparison with captive-bred males. Zeitschrift für Naturforschung. C Journal of Biosciences 75(11-12): 443-449
Azzopardi, D.; Liu, C.; Murphy, J. 2021: Chemical characterization of tobacco-free "modern" oral nicotine pouches and their position on the toxicant and risk continuums. Drug and Chemical Toxicology 2021: 1-9
Ali, A.; Ali, A.; Husain Warsi, M.; Ahmad, W.; Tahir, A. 2021: Chemical characterization, antidiabetic and anticancer activities of Santolina chamaecyparissus. Saudi Journal of Biological Sciences 28(8): 4575-4580
Zengin, G.; Mahomoodally, M.F.; Sinan, K.I.; Picot-Allain, M.C.N.; Yildiztugay, E.; Cziáky, Z.án.; Jekő, J.óz.; Saleem, H.; Ahemad, N. 2020: Chemical characterization, antioxidant, enzyme inhibitory and cytotoxic properties of two geophytes: Crocus pallasii and Cyclamen cilicium. Food Research International 133: 109129
Xu, W.; Li, J.; Li, D.; Tan, J.; Ma, H.; Mu, Y.; Wen, Y.; Gan, L.; Huang, X.; Li, L. 2021: Chemical characterization, antiproliferative and antifungal activities of Clinacanthus nutans. Fitoterapia 155: 105061
Can, T.H.; Tufekci, E.F.; Altunoglu, Y.C.; Baloglu, M.C.; Llorent-Martínez, E.J.; Stefanucci, A.; Mollica, A.; Cichelli, A.; Zengin, G. 2020: Chemical characterization, computational analysis and biological views on Daphne gnidioides Jaub. and Spach extracts: can a new raw material be provided for biopharmaceutical applications?. Computational Biology and Chemistry 87: 107273
Ngo, V.N.; Müschen, M. 2019: Chemical choreography of germinal center B-cell migration. Cell Research 29(7): 514-515
Santos, Jão.O.S.; Hartmann, Léo.A. 2021: Chemical classification of common volcanic rocks based on degree of silica saturation and CaO/K2O ratio. Anais da Academia Brasileira de Ciencias 93(3): E20201202
Zafar, F.; Romano, F.; Citterio, F.; Ferrarotti, F.; Dellavia, C.; Chang, M.; Aimetti, M. 2021: Chemical cleansing as an adjunct to subgingival instrumentation with ultrasonic and hand devices in deep periodontal pockets: a randomized controlled study. Journal of Periodontal and Implant Science 51(4): 276-284
Tabone, T.; Sallmann, G.; Chiotis, M.; Law, M.; Cotton, R. 2006: Chemical cleavage of mismatch (CCM) to locate base mismatches in heteroduplex DNA. Nature Protocols 1(5): 2297-2304
Bicker, G.; Menzel, R. 1989: Chemical codes for the control of behaviour in arthropods. Nature 337(6202): 33-39
Lehár, J.; Zimmermann, G.R.; Krueger, A.S.; Molnar, R.A.; Ledell, J.T.; Heilbut, A.M.; Short, G.F.; Giusti, L.C.; Nolan, G.P.; Magid, O.A.; Lee, M.S.; Borisy, A.A.; Stockwell, B.R.; Keith, C.T. 2007: Chemical combination effects predict connectivity in biological systems. Molecular Systems Biology 3: 80
Owens, C.M.; Mawhinney, C.; Grenier, J.M.; Altmeyer, R.; Lee, M.S.; Borisy, A.A.; Lehár, J.; Johansen, L.M. 2010: Chemical combinations elucidate pathway interactions and regulation relevant to Hepatitis C replication. Molecular Systems Biology 6: 375
Liu, H.; Li, R.; Liao, H-Kai.; Min, Z.; Wang, C.; Yu, Y.; Shi, L.; Dan, J.; Hayek, A.; Martinez Martinez, L.; Nuñez Delicado, E.; Izpisua Belmonte, J.Carlos. 2021: Chemical combinations potentiate human pluripotent stem cell-derived 3D pancreatic progenitor clusters toward functional β cells. Nature Communications 12(1): 3330
Cao, J.; Lu, Z.; Qin, X.; Li, Z. 2021: Chemical comparison of the raw and processed Farfarae Flos by liquid chromatography-mass spectrometry based metabolomic approach. Journal of Mass Spectrometry: Jms 56(2): E4697
Kerpal, C.; Richert, S.; Storey, J.G.; Pillai, S.; Liddell, P.A.; Gust, D.; Mackenzie, S.R.; Hore, P.J.; Timmel, C.R. 2019: Chemical compass behaviour at microtesla magnetic fields strengthens the radical pair hypothesis of avian magnetoreception. Nature Communications 10(1): 3707
Maeda, K.; Henbest, K.B.; Cintolesi, F.; Kuprov, I.; Rodgers, C.T.; Liddell, P.A.; Gust, D.; Timmel, C.R.; Hore, P.J. 2008: Chemical compass model of avian magnetoreception. Nature 453(7193): 387-390
Ziurys, L.M.; Milam, S.N.; Apponi, A.J.; Woolf, N.J. 2007: Chemical complexity in the winds of the oxygen-rich supergiant star VY Canis Majoris. Nature 447(7148): 1094-1097
Oleszkiewicz, A.; Pellegrino, R.; Pusch, K.; Margot, C.; Hummel, T. 2017: Chemical complexity of odors increases reliability of olfactory threshold testing. Scientific Reports 7: 39977
Dicke, M.; van Loon, J.J.A.; Soler, R. 2009: Chemical complexity of volatiles from plants induced by multiple attack. Nature Chemical Biology 5(5): 317-324
Ma, Z.; Guan, X.; Gong, B.; Li, C. 2021: Chemical components and chain-length distributions affecting quinoa starch digestibility and gel viscoelasticity after germination treatment. Food and Function 12(9): 4060-4071
Nakano, M.; Saito, K. 1969: Chemical components in the cell wall of Salmonella typhimurium affecting its virulence and immunogenicity in mice. Nature 222(5198): 1085-1086
Li, A.-X.; Hou, X.-C.; Zeng, J.-J.; Wei, Y. 2020: Chemical composition analysis of Eucalyptus essential oil and allelopathic effects of α-terpineol. Ying Yong Sheng Tai Xue Bao 31(7): 2195-2201
Liu, X.; Guo, Y.; Cai, G.; Gong, J.; Wang, Y.; Liu, S. 2020: Chemical composition analysis of Schisandra chinensis fructus and its three processed products using UHPLC-Q-Orbitrap/MS-based metabolomics approach. Natural Product Research 2020: 1-4
Fernández Severini, M.D.; Buzzi, N.S.; Forero López, A.D.; Colombo, C.V.; Chatelain Sartor, G.L.; Rimondino, G.N.; Truchet, D.M. 2020: Chemical composition and abundance of microplastics in the muscle of commercial shrimp Pleoticus muelleri at an impacted coastal environment (Southwestern Atlantic). Marine Pollution Bulletin 161(Part A): 111700
Zhao, Y.; Yang, Y.-H.; Wang, K.-B.; Fan, L.-M.; Su, F.-W.; Ye, M. 2020: Chemical composition and allelopathic potential of essential oil isolated from Origanum vulgare. Ying Yong Sheng Tai Xue Bao 31(7): 2257-2263
Chen, Y-Yun.; Li, F-Qiang.; Zhu, X-Li.; Chen, J-Wei.; Li, X. 2020: Chemical composition and anti-hepatoma effect of Annona squamosa L. pericarp oil. Natural Product Research 2020: 1-4
He, T.; Li, X.; Wang, X.; Xu, X.; Yan, X.; Li, X.; Sun, S.; Dong, Y.; Ren, X.; Liu, X.; Wang, Y.; Sui, H.; Xia, Q.; She, G. 2020: Chemical composition and anti-oxidant potential on essential oils of Thymus quinquecostatus Celak. from Loess Plateau in China, regulating Nrf2/Keap1 signaling pathway in zebrafish. Scientific Reports 10(1): 11280
Van, H.Thien.; Le, N.Tam.; Huynh, N.Tuong.An.; Vo, H.Sang.; Le, T.Tho.; Van Chu, H.; Truong, H.Anh.Vu.; Nguyen, Q.Hung. 2021: Chemical composition and antibacterial activities of essential oils from rhizomes and aerial parts of Homalomena cochinchinensis (Araceae). Natural Product Research 2021: 1-4
Nabila, B.; Piras, A.; Fouzia, B.; Falconieri, D.; Kheira, G.; Fedoul, F-Faiza.; Majda, S-Rahal. 2020: Chemical composition and antibacterial activity of the essential oil of Laurus nobilis leaves. Natural Product Research 2020: 1-5
Lara, L.L.S.; Nascimento, Vícius.A.; Fernandes, Cássia.C.; Forim, M.R.; Cazal, C.M. 2021: Chemical composition and antifungal activity of Zanthoxylum riedelianum stem bark essential oil. Natural Product Research 2021: 1-6
Zhao, Y.; Yang, Y.-H.; Ye, M.; Wang, K.-B.; Fan, L.-M.; Su, F.-W. 2021: Chemical composition and antifungal activity of essential oil from Origanum vulgare against Botrytis cinerea. Food Chemistry 365: 130506
Filip, S.ža.; Đurović, S.ša.; Blagojević, S.; Tomić, A.; Ranitović, A.; Gašić, U.š; Tešić, Ži.; Zeković, Z. 2021: Chemical composition and antimicrobial activity of Osage orange (Maclura pomifera) leaf extracts. Archiv der Pharmazie 354(2): E2000195
Batalha, M.d.M.C.; Goulart, H.F.; Santana, A.ôn.E.G.; Barbosa, L.A.O.; Nascimento, T.G.; da Silva, M.K.H.; Dornelas, C.B.; Grillo, L.A.M. 2020: Chemical composition and antimicrobial activity of cuticular and internal lipids of the insect Rhynchophorus palmarum. Archives of Insect Biochemistry and Physiology 105(1): E21723
Ghavam, M.; Manca, M.Letizia.; Manconi, M.; Bacchetta, G. 2020: Chemical composition and antimicrobial activity of essential oils obtained from leaves and flowers of Salvia hydrangea DC. ex Benth. Scientific Reports 10(1): 15647
Singh, S.; Kurmi, A.; Singh, M.Kumar.; Kashyap, P.Kumar.; Tandon, S.; Chauhan, A.; Padalia, R.Chandra.; Saikia, D.; Verma, R.Swaroop. 2021: Chemical composition and antimicrobial activity of the leaf essential oil of Ravenia spectabilis Engl. (Rutaceae). Natural Product Research 2021: 1-4
do Nascimento Araújo, C.; Mayworm, M.Aurelio.Sivero.; Yatsuda, R.; Negri, G.; Salatino, M.Luiza.Faria.; Salatino, A.; Timenetsky, J.; Campos, G.Barreto. 2020: Chemical composition and antimycoplasma activity of a brown propolis from southern Brazil. Journal of Food Science and Technology 57(11): 4228-4235
Cuong, N.Tien.; Ban, P.Hong.; Chung, M.Van. 2020: Chemical composition and antioxidant activity of the essential oil of Alseodaphne velutina Chev. from Viet Nam. Natural Product Research 2020: 1-4
Sen-Utsukarci, B.; Taskin, T.; Goger, F.; Tabanca, N.; Estep, A.S.; Kessler, S.M.; Akbal-Dagistan, O.; Bardakci, H.; Kurkcuoglu, M.; Becnel, J.; Kiemer, A.; Mat, A. 2019: Chemical composition and antioxidant, cytotoxic, and insecticidal potential of Valeriana alliariifolia in Turkey. Arhiv Za Higijenu Rada i Toksikologiju 70(3): 207-218
Dastan, D.; Hamah-Ameen, B.Ahmed.; Salehi, P.; Ghaderi, H.; Miran, M. 2021: Chemical composition and bioactivities of essential oils from different plant parts of Ferula pseudalliacea Rech.f. as an endemic plant from Iran. Natural Product Research 2021: 1-6
Rodríguez-Lozano, F.J.; López-García, S.; García-Bernal, D.; Tomás-Catalá, C.J.; Santos, J.M.; Llena, C.; Lozano, A.; Murcia, L.; Forner, L. 2020: Chemical composition and bioactivity potential of the new Endosequence BC Sealer formulation HiFlow. International Endodontic Journal 53(9): 1216-1228
Khruengsai, S.; Sripahco, T.; Rujanapun, N.; Charoensup, R.; Pripdeevech, P. 2021: Chemical composition and biological activity of Peucedanum dhana A. Ham essential oil. Scientific Reports 11(1): 19079
Mandim, F.; Petropoulos, S.A.; Pinela, J.é; Dias, M.I.ês.; Giannoulis, K.D.; Kostić, M.; Soković, M.; Queijo, B.; Santos-Buelga, C.; Ferreira, I.C.F.R.; Barros, L. 2022: Chemical composition and biological activity of cardoon (Cynara cardunculus L. var. altilis) seeds harvested at different maturity stages. Food Chemistry 369: 130875
Todd, D.A.; Kellogg, J.J.; Wallace, E.D.; Khin, M.; Flores-Bocanegra, L.; Tanna, R.S.; McIntosh, S.; Raja, H.A.; Graf, T.N.; Hemby, S.E.; Paine, M.F.; Oberlies, N.H.; Cech, N.B. 2020: Chemical composition and biological effects of kratom (Mitragyna speciosa): In vitro studies with implications for efficacy and drug interactions. Scientific Reports 10(1): 19158
Lalthanpuii, P.Bawitlung.; Lalchhandama, K. 2020: Chemical composition and broad-spectrum anthelmintic activity of a cultivar of toothache plant, Acmella oleracea , from Mizoram, India. Pharmaceutical Biology 58(1): 393-399
Oliveira-Neto, Jônimo.Raimundo.; Oliveira, N.Raica.Lopes.de.; Cruz, A.de.Carvalho.; Ferri, P.Henrique.; Azevedo, Nírio.Ricardo.de. 2020: Chemical composition and chemotaxonomy of Nasutitermes spp. defensive secretion from Brazilian Cerrado for the differentiation of species. Natural Product Research 2020: 1-5
Darshani, P.; V, S.; V S, P. 2021: Chemical composition and chiral analysis of β-myrcene rich essential oil from Glossocardia bosvallia (L.f.) DC. Natural Product Research 2021: 1-4
Yousof, S.S.M.; El Zubeir, I.E.M. 2020: Chemical composition and detection of Aflatoxin M1 in camels and cows milk in Sudan. Food Additives and Contaminants. Part B Surveillance 13(4): 298-304
Ignacchiti, M.D.Costa.; de Queiroz, V.Tebaldi.; Martins, I.Vilhena.Freire.; Crico, K.B.; Gonçalves, L.Vezula.; Fazolo, M.Busato.; Frank, H.Oliveira.; Costa, A.Vidal. 2021: Chemical composition and effect of Dysphania ambrosioides (L.) mosyakin & clemants essential oil on Biomphalaria tenagophila (D'Orbigny, 1835). Natural Product Research 2021: 1-4
Tejedor-Calvo, E.; Amara, K.; Reis, F.S.; Barros, L.; Martins, A.; Calhelha, R.C.; Venturini, M.E.; Blanco, D.; Redondo, D.; Marco, P.; Ferreira, I.C.F.R. 2021: Chemical composition and evaluation of antioxidant, antimicrobial and antiproliferative activities of Tuber and Terfezia truffles. Food Research International 140: 110071
Sultana, R.; Alashi, A.M.; Islam, K.; Saifullah, M.; Haque, C.E.; Aluko, R.E. 2021: Chemical composition and in vitro antioxidant properties of water-soluble extracts obtained from Bangladesh vegetables. Journal of Food Biochemistry 45(3): E13357
Ayres, V.F.S.; Oliveira, Mã.R.; Baldin, E.L.L.; Corrêa, G.M.; Guimarães, A.C.; Takeara, R. 2021: Chemical composition and insecticidal activity of the essential oils of Piper marginatum , Piper callosum and Vitex agnus-castus. Anais da Academia Brasileira de Ciencias 93(3): E20200616
Yang, S.; Bai, M.; Yang, J.; Yuan, Y.; Zhang, Y.; Qin, J.; Kuang, Y.; Sampietro, D.A. 2020: Chemical composition and larvicidal activity of essential oils from Peganum harmala, Nepeta cataria and Phellodendron amurense against Aedes aegypti (Diptera: Culicidae). Saudi Pharmaceutical Journal: Spj: the Official Publication of the Saudi Pharmaceutical Society 28(5): 560-564
Reis Ribeiro, S.; Klein, B.; Machado Ribeiro, Q.; Duarte Dos Santos, I.; Gomes Genro, A.L.ís.; de Freitas Ferreira, D.; Janner Hamann, J.; Smanioto Barin, J.; Cichoski, A.J.é; Fronza, D.; Both, V.; Wagner, R. 2020: Chemical composition and oxidative stability of eleven pecan cultivars produced in southern Brazil. Food Research International 136: 109596
Ali, S.; Khan, M.R.; Iqbal, J.; Batool, R.; Naz, I.; Yaseen, T.; Abbasi, B.A.; Nasir, J.A.; El-Serehy, H.A. 2021: Chemical composition and pharmacological bio-efficacy of Parrotiopsis jacquemontiana (Decne) Rehder for anticancer activity. Saudi Journal of Biological Sciences 28(9): 4969-4986
Jiang, C-Yu.; Zhou, S-Xing.; Toshmatov, Z.; Mei, Y.; Jin, G-Zhao.; Han, C-Xia.; Zhang, C.; Shao, H. 2020: Chemical composition and phytotoxic activity of the essential oil of Artemisia sieversiana growing in Xinjiang, China. Natural Product Research 2020: 1-6
Cândido, A.C.S.; Scalon, S.P.Q.; Silva, C.B.; Simionatto, E.; Morel, A.F.; Stüker, C.Z.; Matos, M.F.C.; Peres, M.T.L.P. 2021: Chemical composition and phytotoxicity of essential oils of Croton doctoris S. Moore (Euphorbiaceae). Brazilian Journal of Biology 82: E231957
Huang, Q.; Qi, J.; Gao, Z.; Li, L.; Wang, N.; Seto, S.; Yao, M.; Zhang, Q.; Wang, L.; Tong, R.; Chen, Y.; Chen, X.; Hou, J. 2022: Chemical composition and protective effect of cerebrospinal fluid of Dan-Deng-Tong-Nao capsules on brain microvascular endothelial cells injured by OGD/R. Journal of Ethnopharmacology 283:: 114705
Zhang, Y.; Xu, L.; Zhuang, M.; Zhao, G.; Chen, Y.; Tong, L.; Yang, C.; Xiao, H.; Chen, J.; Wu, X.; Hong, Y.; Li, M.; Bian, Y.; Chen, Y. 2020: Chemical composition and sources of submicron aerosol in a coastal city of China: Results from the 2017 BRICS summit study. Science of the Total Environment 741: 140470
Seiji, M.; Fitzpatrick, T.B.; Simpson, R.T.; Birbeck, M.S. 1963: Chemical composition and terminology of specialized organelles (melanosomes and melanin granules) in mammalian melanocytes. Nature 197: 1082-1084
Bohounton, R.éo.B.é; Djogbénou, L.S.; Djihinto, O.Y.éd.ên.; Dedome, O.S.-L.; Sovegnon, P.M.; Barea, B.; Adomou, A.; Villeneuve, P.; Tchobo, F.èl.P. 2021: Chemical composition and the insecticidal activity of Aeollanthus pubescens leaf essential oil against Anopheles gambiae sensu stricto. Parasites and Vectors 14(1): 518
Xiao, Y.; Qi, P.X.; Wickham, E.D. 2020: Chemical composition as an indicator for evaluating heated whey protein isolate (WPI) and sugar beet pectin (SBP) systems to stabilize O/W emulsions. Food Chemistry 330: 127280
Xiong, C.; Zhang, Y.; Yan, J.; Yang, X.; Wang, Q.; Tu, R.; He, Y. 2021: Chemical composition characteristics and source analysis of PM 2.5 in Jiaxing, China: Insights into the effect of COVID-19 outbreak. Environmental Technology 2021: 1-29
Vasconcelos, A.Azevedo.; Veras, I.Nara.de.Sousa.; Vasconcelos, M.Alves.de.; Andrade, A.Lopes.; Dos Santos, Hélcio.Silva.; Bandeira, P.Nogueira.; Souza, E.Bezerra.de.; Albuquerque, M.Rose.Jane.Ribeiro.; Teixeira, E.Holanda. 2021: Chemical composition determination and evaluation of the antibacterial activity of essential oils from Ruellia asperula (Mart. Ex Ness) Lindau and Ruellia paniculata L. against oral streptococci. Natural Product Research 2021: 1-5
Gogoi, R.; Begum, T.; Sarma, N.; Kumar Pandey, S.; Lal, M. 2021: Chemical composition of Callistemon citrinus (Curtis) Skeels aerial part essential oil and its pharmacological applications, neurodegenerative inhibitory, and genotoxic efficiencies. Journal of Food Biochemistry 45(7): E13767
Moskwa, J.; Naliwajko, S.K.; Markiewicz-Żukowska, R.; Gromkowska-Kępka, K.J.; Nowakowski, P.; Strawa, J.W.; Borawska, M.H.; Tomczyk, Mł.; Socha, K. 2020: Chemical composition of Polish propolis and its antiproliferative effect in combination with Bacopa monnieri on glioblastoma cell lines. Scientific Reports 10(1): 21127
Menegazzo, R.Fernando.; Bortolucci, W.de.Campos.; de Oliveira, H.Line.Marko.; Menegazzo, Aé.Werlang.; Gonçalves, Jé.Eduardo.; Fernandez, C.Maria.Mariano.; Gazim, Z.Cristiani.; Lopes, A.Daniela. 2020: Chemical composition of Tradescantia pallida (Rose) D.R. Hunt var. purpurea Boom (Commelinaceae) essential oil. Natural Product Research 2020: 1-5
Gera, N.Babu.; P P, T.; V S, P. 2020: Chemical composition of a volatile fraction from the leaves of Clerodendrum infortunatum L. Natural Product Research 2020: 1-4
Afanas'ev, B.G.; Zhestovskiĭ, V.A. 1970: Chemical composition of beverages quenching thirst during overheating. Voenno-Meditsinskii Zhurnal 7: 43-48
De Melo Silva, A.F.áv.; Lana, L.ís.G.; Kuster, V.íc.C.; de Oliveira, D.C. 2021: Chemical composition of cell wall changes during developmental stages of galls on Matayba guianensis (Sapindaceae): perspectives obtained by immunocytochemistry analysis. Die Naturwissenschaften 108(3): 16
Zhu, S.M. 1984: Chemical composition of deposits on IUD removed from uterus. Sheng Zhi Yu Bi Yun 4(1): 45
Dehghani Bidgoli, R. 2021: Chemical composition of essential oil and antifungal activity of Artemisia persica Boiss. from Iran. Journal of Food Science and Technology 58(4): 1313-1318
Qiao, Y.; Yu, Z.; Bai, L.; Li, H.; Zhang, S.; Liu, J.; Gao, Z.; Yang, X. 2021: Chemical composition of essential oils from Thymus mongolicus, Cinnamomum verum, and Origanum vulgare and their acaricidal effects on Haemaphysalis longicornis (Acari: Ixodidae). Ecotoxicology and Environmental Safety 224: 112672
Araujo, C.Alves.; da Camara, C.A.G.; de Moraes, M.Martins.; de Vasconcelos, G.J.N.; Pereira, M.R.; Zartman, C.E. 2020: Chemical composition of essential oils from four Piper species, differentiation using multivariate analysis and antioxidant activity. Natural Product Research 2020: 1-4
Ameur, E.; Sarra, M.; Yosra, D.; Mariem, K.; Nabil, A.; Lynen, F.; Larbi, K.M. 2021: Chemical composition of essential oils of eight Tunisian Eucalyptus species and their antibacterial activity against strains responsible for otitis. Bmc Complementary Medicine and Therapies 21(1): 209
Dallam, R.D.; Thomas, L.E. 1952: Chemical composition of mammalian sperm. Nature 170(4322): 377
Zhao, D.; Cardona, C.; Gottel, N.; Winton, V.J.; Thomas, P.M.; Raba, D.A.; Kelley, S.T.; Henry, C.; Gilbert, J.A.; Stephens, B. 2020: Chemical composition of material extractives influences microbial growth and dynamics on wetted wood materials. Scientific Reports 10(1): 14500
Renzi, M.; Blašković, A.; Broccoli, A.; Bernardi, G.; Grazioli, E.; Russo, G. 2020: Chemical composition of microplastic in sediments and protected detritivores from different marine habitats (Salina Island). Marine Pollution Bulletin 152: 110918
Widdowson, E.M. 1950: Chemical composition of newly born mammals. Nature 166(4224): 626-628
Kambiré, D.Albert.; Boti, J.Brice.; Ouattara, Z.Adama.; Thierry, A.Yapi.; Barat, N.; Bighelli, A.; Tomi, Félix. 2021: Chemical composition of root and stem bark essential oils from Ivorian Isolona dewevrei : structural elucidation of a new natural germacrone. Natural Product Research 2021: 1-7
Liu, Y.; Zhao, M.; Shao, Y.; Yan, L.; Zhu, X. 2021: Chemical composition of surgical smoke produced during the loop electrosurgical excision procedure when treating cervical intraepithelial neoplasia. World Journal of Surgical Oncology 19(1): 103
Lacy, D. 1954: Chemical composition of the Golgi apparatus in the exocrine and endocrine cells in the pancreas of the mouse. Nature 173(4417): 1235-1236
Morilhat, J.P.; Leleu, J.B.; Bonaly, R. 1977: Chemical composition of the cell wall of Candida after growth on paraffin. Mycopathologia 61(1): 49-54
Becker, B.; Wortzel, E.M.; Nelson, J.H. 1967: Chemical composition of the cell wall of Caryophanon latum. Nature 213(5073): 300
Blank, F.; Burke, R.C. 1954: Chemical composition of the cell wall of Coccidioides immitis. Nature 173(4409): 829
González-Barrio, R.; Periago, Mía.Jesús.; Luna-Recio, C.; Garcia-Alonso, F.Javier.; Navarro-González, I. 2018: Chemical composition of the edible flowers, pansy (Viola wittrockiana) and snapdragon (Antirrhinum majus) as new sources of bioactive compounds. Food Chemistry 252: 373-380
Goris, A.; Canal, H. 1945: Chemical composition of the essence of Primula farinosa L. Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences 220(23): 925
Goris, A.; Canal, H. 1945: Chemical composition of the essence of Primula viscosa Vill roots. Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences 220(19): 790-792
Demiray, H.; Tabanca, N.; Estep, A.S.; Becnel, J.J.; Demirci, Bül. 2019: Chemical composition of the essential oil and n -hexane extract of Stachys tmolea subsp. Tmolea Boiss., an endemic species of Turkey, and their mosquitocidal activity against dengue vector Aesdes aegypti. Saudi Pharmaceutical Journal: Spj: the Official Publication of the Saudi Pharmaceutical Society 27(6): 877-881
Ilardi, V.; Badalamenti, N.; Bruno, M. 2021: Chemical composition of the essential oil from different vegetative parts of Foeniculum vulgare subsp . piperitum (Ucria) Coutinho (Umbelliferae) growing wild in Sicily. Natural Product Research 2021: 1-11
Tittel, G.; Wagner, H.; Bos, R. 1982: Chemical composition of the essential oil from melissa. Planta Medica 46(2): 91-98
Montes, M.; Valenzuela, L.; Wilkomirsky, T.; Sanguinetti, A.; Von Baer, D. 1988: Chemical composition of the essential oil of Cryptocarya alba (Mol.) Looser (Lauraceae) in Chile. Annales Pharmaceutiques Francaises 46(1): 41-47
Badalamenti, N.; Bruno, M.; Gagliano Candela, R.; Maggi, F. 2020: Chemical composition of the essential oil of Elaeoselinum asclepium (L.) Bertol subsp. meoides (Desf.) Fiori (Umbelliferae) collected wild in Central Sicily and its antimicrobial activity. Natural Product Research 2020: 1-9
Loziene, K.; Vaiciūniene, J.; Venskutonis, P.R. 1998: Chemical composition of the essential oil of creeping thyme (Thymus serpyllum s.l.) growing wild in Lithuania. Planta Medica 64(8): 772-773
Stamenković, J.G.; Petrović, G.M.; Jovanović, O.P.; Ickovski, J.D.; Palić, I.R.; Stojanović, G.S. 2020: Chemical composition of the essential oils and headspace volatiles of Ferulago sylvatica (Besser) Reichenb. from Serbia. Natural Product Research 34(13): 1947-1950
Bruno, M.; Modica, A.; Catinella, G.; Canlı, C.; Arasoglu, Tülin.; Çelik, S. 2019: Chemical composition of the essential oils of Centaurea tomentella Hand.-Mazz. and C. haussknechtii Boiss. (Asteraceae) collected wild in Turkey and their activity on microorganisms affecting historical art craft. Natural Product Research 33(8): 1092-1100
Shakri, N.Mohd.; Salleh, W.Mohd.Nuzul.Hakimi.Wan.; Khamis, S.; Mohamad Ali, N.Azah.; Shaharudin, S.Milleana. 2020: Chemical composition of the essential oils of four Polyalthia species from Malaysia. Zeitschrift für Naturforschung. C Journal of Biosciences 75(11-12): 473-478
Rocha, C.H.; Soldi, C.; Boff, P.; Boff, M.I.C. 2020: Chemical composition of the leaf oils from two morphotypes of Psidium cattleyanum at four phenological stages. Natural Product Research 2020: 1-4
Stein, W.D. 1955: Chemical composition of the melanin granule and its relation to the mitochondrion. Nature 175(4449): 256-257
de Pascual Teresa, J.; Ovejero, J.; Anaya, J.; Caballero, E.; Hernández, J.M.; Caballero, M.C. 1989: Chemical composition of the spanish spike oil. Planta Medica 55(4): 398
Chackett, K.F.; Paneth, F.A.; Wilson, E.J. 1949: Chemical composition of the stratosphere at 70 km. height. Nature 164(4160): 128
de Oliveira, Lícia.Freire.; Damasceno, C.Sette.; Campos, R.; de Souza, Ângela.Maria.; de Almeida Ferreira Mendes, G.Joslin.; de Fátima Gaspari Dias, J.; Miguel, O.Gomes.; Miguel, M.Dallarmi. 2020: Chemical composition of the volatile oil of Croton glandulosus Linnaeus and its allelopathic activity. Natural Product Research 2020: 1-4
Cunha, A.G.; Alves Filho, E.G.; Silva, L.Mara.A.; Ribeiro, P.Riceli.V.; Rodrigues, T.Helena.S.; Brito, E.S.de.; Miranda, M.Raquel.A.de. 2020: Chemical composition of thermally processed coconut water evaluated by GC-MS, UPLC-HRMS, and NMR. Food Chemistry 324: 126874
Salleh, W.Mohd.Nuzul.Hakimi.Wan.; Shakri, N.Mohd.; Khamis, S.; Setzer, W.N.; Nadri, M.Helmi. 2020: Chemical composition of three Malaysian Horsfieldia essential oils. Natural Product Research 2020: 1-5
Galzerano, G.; Sorrentini, R. 1957: Chemical composition of tuberculin. Archivio di Tisiologia e Delle Malattie Dell'apparato Respiratorio 12(10): 921-936
Parikh, H.S.; Shah, R.C. 1960: Chemical composition of urinary calculi. Indian Journal of Medical Sciences 14: 401-405
Nadia, B.; Mesli, F.; Zahra, B.Fatima.; Merad-Boussalah, N.; Radja, A.; Muselli, A.; Djabou, N.; Dib, M.El.Amine. 2020: Chemical composition variability and vascular endothelial growth factor receptors inhibitory activity of Inulaviscosa essential oils from Algeria. Journal of Biomolecular Structure and Dynamics 2020: 1-19
Zaïri, A.; Nouir, S.; Zarrouk, A.; Haddad, H.; Khélifa, A.; Achour, L.; Tangy, Fédéric.; Chaouachi, M.; Trabelsi, M. 2019: Chemical composition, Fatty acids profile and Biological properties of Thymus capitatus (L.) Hoffmanns, essential Oil. Scientific Reports 9(1): 20134
Getahun, T.; Sharma, V.; Kumar, D.; Gupta, N. 2020: Chemical composition, and antibacterial and antioxidant activities of essential oils from Laggera tomentosa Sch. Bip. ex Oliv. et Hiern (Asteraceae). Turkish Journal of Chemistry 44(6): 1539-1548
Silva, N.Lucca.; Saldanha, A.Aparecida.; Vieira, Lícia.; da Silva, D.Brentan.; Carollo, C.Alexandre.; Sartori, Ângela.Lucia.Bagnatori.; de Azambuja Ribeiro, R.Iara.Maciel.; Thomé, R.Gruppi.; Dos Santos, Hélio.Batista.; Soares, A.Cristina.; de Siqueira, Jão.Máximo. 2020: Chemical composition, anti-inflammatory and antinociceptive effects of the butanolic fraction of Annona nutans (Annonaceae) leaves. Natural Product Research 2020: 1-6
Zhang, L-Liang.; Zhang, L-Fang.; Xu, J-Guo. 2020: Chemical composition, antibacterial activity and action mechanism of different extracts from hawthorn (Crataegus pinnatifida Bge.). Scientific Reports 10(1): 8876
Erdogan Eliuz, E.Ayşe.; Yabalak, E.; Gökşen, Gülden.; Ayas, D. 2021: Chemical composition, antifungal activity, antifungal mechanism and interaction manner of the fatty acid of Prunus mahaleb L. with fluconazole. International Journal of Environmental Health Research 2021: 1-13
Luchesi, L.A.; Paulus, D.; Busso, C.; Frata, M.T.; Oliveira, J.B. 2020: Chemical composition, antifungal and antioxidant activity of essential oils from Baccharis dracunculifolia and Pogostemon cablin against Fusarium graminearum. Natural Product Research 2020: 1-4
Elaissi, A.; Elsharkawy, E.; El Mokni, R.; Debbabi, Hïfa.; Brighenti, V.; Nardoni, S.; Pellati, F.; Hammami, S. 2020: Chemical composition, antifungal and antiproliferative activities of essential oils from Thymus numidicus L. Natural Product Research 2020: 1-6
Youcef-Ettoumi, K.; Zouambia, Y.; Moulai-Mostefa, N. 2021: Chemical composition, antimicrobial and antioxidant activities of Algerian Citrus sinensis essential oil extracted by hydrodistillation assisted by electromagnetic induction heating. Journal of Food Science and Technology 58(8): 3049-3055
El-Nashar, H.A.S.; Mostafa, N.M.; El-Badry, M.A.; Eldahshan, O.A.; Singab, A.Nasser.B. 2020: Chemical composition, antimicrobial and cytotoxic activities of essential oils from Schinus polygamus (Cav.) cabrera leaf and bark grown in Egypt. Natural Product Research 2020: 1-4
Erİk, İs.; KiliÇ, G.öz.; ÖztÜrk, E.; KaraoĞlu, Şe.ül.A.; Yayli, N. 2020: Chemical composition, antimicrobial, and lipase enzyme activity of essential oil and solvent extracts from Serapias orientalis subsp. orientalis. Turkish Journal of Chemistry 44(6): 1655-1662
Wintola, O.A.; Olajuyigbe, A.A.; Afolayan, A.J.; Coopoosamy, R.M.; Olajuyigbe, O.O. 2021: Chemical composition, antioxidant activities and antibacterial activities of essential oil from Erythrina caffra Thunb. growing in South Africa. Heliyon 7(6): E07244
Belabdelli, F.; Bekhti, N.; Piras, A.; Benhafsa, F.Mekhalef.; Ilham, M.; Adil, S.; Anes, L. 2021: Chemical composition, antioxidant and antibacterial activity of Crataegus monogyna leaves' extracts. Natural Product Research 2021: 1-6
Tahar, S.; Hamdi, B.; Flamini, G.; Mehmet, Öztürk.; Duru, M.Emin.; Bruno, M.; Maggi, F. 2021: Chemical composition, antioxidant and anticholinesterase activity of the essential oil of algerian cachrys sicula L. Natural Product Research 2021: 1-9
Denkova-Kostova, R.; Teneva, D.; Tomova, T.; Goranov, B.; Denkova, Z.; Shopska, V.; Slavchev, A.; Hristova-Ivanova, Y. 2021: Chemical composition, antioxidant and antimicrobial activity of essential oils from tangerine (Citrus reticulata L.), grapefruit (Citrus paradisi L.), lemon (Citrus lemon L.) and cinnamon (Cinnamomum zeylanicum Blume). Zeitschrift für Naturforschung. C Journal of Biosciences 76(5-6): 175-185
Chambre, D.Rodica.; Moisa, C.; Lupitu, A.; Copolovici, L.; Pop, G.; Copolovici, D-Maria. 2020: Chemical composition, antioxidant capacity, and thermal behavior of Satureja hortensis essential oil. Scientific Reports 10(1): 21322
Saravanakumar, K.; Park, S.; Mariadoss, A.V.A.; Sathiyaseelan, A.; Veeraraghavan, V.P.; Kim, S.; Wang, M.-H. 2021: Chemical composition, antioxidant, and anti-diabetic activities of ethyl acetate fraction of Stachys riederi var. japonica (Miq.) in streptozotocin-induced type 2 diabetic mice. Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research Association 155: 112374
Bayala, B.; Coulibaly, A.Y.; Djigma, F.W.; Nagalo, B.M.; Baron, S.èr.; Figueredo, G.; Lobaccaro, J.-M.A.; Simpore, J. 2020: Chemical composition, antioxidant, anti-inflammatory and antiproliferative activities of the essential oil of Cymbopogon nardus, a plant used in traditional medicine. Biomolecular Concepts 11(1): 86-96
Bobinaitė, R.ė; Grootaert, C.; Van Camp, J.; Šarkinas, A.; Liaudanskas, M.; Žvikas, V.; Viškelis, P.; Rimantas Venskutonis, P. 2020: Chemical composition, antioxidant, antimicrobial and antiproliferative activities of the extracts isolated from the pomace of rowanberry (Sorbus aucuparia L.). Food Research International 136: 109310
Zengin, G.; Mahomoodally, M.F.; Picot-Allain, M.C.N.; Sinan, K.I.; Ak, G.; Etienne, O.K.; Sieniawska, E.; Maciejewska-Turska, M.; Świątek, Łu.; Rajtar, B.; Polz-Dacewicz, M.łg. 2021: Chemical composition, biological properties and bioinformatics analysis of two Caesalpina species: a new light in the road from nature to pharmacy shelf. Journal of Pharmaceutical and Biomedical Analysis 198: 114018
Séré, A.; Bougma, A.; Bazié, B.S.R.; Traoré, E.; Parkouda, C.; Gnankiné, O.; Bassolé, I.H.N. 2021: Chemical composition, energy and nutritional values, digestibility and functional properties of defatted flour, protein concentrates and isolates from Carbula marginella (Hemiptera: Pentatomidae) and Cirina butyrospermi (Lepidoptera: Saturniidae). Bmc Chemistry 15(1): 46
Da Silva, B.D.; Bernardes, P.íc.C.; Pinheiro, P.íc.F.; Fantuzzi, E.; Roberto, C.D. 2021: Chemical composition, extraction sources and action mechanisms of essential oils: Natural preservative and limitations of use in meat products. Meat Science 176: 108463
Nazir, N.; Zahoor, M.; Uddin, F.; Nisar, M. 2021: Chemical composition, in vitro antioxidant, anticholinesterase, and antidiabetic potential of essential oil of Elaeagnus umbellata Thunb. Bmc Complementary Medicine and Therapies 21(1): 73
Oliveira, A.C.S.D.; Fernandes, C.C.; Santos, L.S.; Candido, A.C.B.B.; Magalhães, L.G.; Miranda, M.L.D. 2021: Chemical composition, in vitro larvicidal and antileishmanial activities of the essential oil from Citrus reticulata Blanco fruit peel. Brazilian Journal of Biology 83: E247539
Almadiy, A.A. 2020: Chemical composition, insecticidal and biochemical effects of two plant oils and their major fractions against Aedes aegypti, the common vector of dengue fever. Heliyon 6(9): E04915
Valentini, J.; Da Silva, A.S.; Fortuoso, B.F.; Reis, J.H.; Gebert, R.R.; Griss, L.G.; Boiago, M.M.; Lopes, L.Q.S.; Santos, R.C.V.; Wagner, R.; Tavernari, F.C. 2020: Chemical composition, lipid peroxidation, and fatty acid profile in meat of broilers fed with glycerol monolaurate additive. Food Chemistry 330: 127187
Stilinović, N.ša.; Čapo, I.; Vukmirović, S.ša.; Rašković, A.; Tomas, A.; Popović, M.; Sabo, A. 2020: Chemical composition, nutritional profile and in vivo antioxidant properties of the cultivated mushroom Coprinus comatus. Royal Society Open Science 7(9): 200900
Wahidullah, S.; Devi, P.; D'Souza, L. 2021: Chemical composition, nutritive value and health benefits of edible clam Meretrix casta (Chemnitz) from West Coast of India. Journal of Food Science and Technology 58(3): 1165-1176
Zeng, X.; Zheng, Y.; Liu, Y.; Su, W. 2021: Chemical composition, quality control, pharmacokinetics, pharmacological properties and clinical applications of Fufang Danshen Tablet: A systematic review. Journal of Ethnopharmacology 278:: 114310
Dong, W.; Wang, D.; Hu, R.; Long, Y.; Lv, L. 2020: Chemical composition, structural and functional properties of soluble dietary fiber obtained from coffee peel using different extraction methods. Food Research International 136: 109497
Liu, Y.; Zhang, H.; Yi, C.; Quan, K.; Lin, B. 2021: Chemical composition, structure, physicochemical and functional properties of rice bran dietary fiber modified by cellulase treatment. Food Chemistry 342: 128352
Xie, M.; Zhao, Z.; Holder, A.L.; Hays, M.D.; Chen, X.; Shen, G.; Jetter, J.J.; Champion, W.M.; Wang, Q.'g. 2020: Chemical composition, structures, and light absorption of N-containing aromatic compounds emitted from burning wood and charcoal in household cookstoves. Atmospheric Chemistry and Physics 20(22): 14077-14090
Keshavarz, M.; Shamsizadeh, F.; Tavakoli, A.; Baghban, N.; Khoradmehr, A.; Kameli, A.; Rasekh, P.; Daneshi, A.; Nabipour, I.; Vahdat, K.; Farrokhnia, M.; Tamadon, A. 2021: Chemical compositions and experimental and computational modeling activity of sea cucumber Holothuria parva ethanolic extract against herpes simplex virus type 1. Biomedicine and PharmacoTherapy 141: 111936
Lu, X.-X.; Hu, N.-N.; Du, Y.-S.; Almaz, B.; Zhang, X.; Du, S.-S. 2021: Chemical compositions and repellent activity of Clerodendrum bungei Steud. essential oil against three stored product insects. Daru: Journal of Faculty of Pharmacy Tehran University of Medical Sciences 29(2): 469-475
Li, S.-W.; Chang, M.; Li, H.; Cui, X.-Y.; Ma, L.Q. 2020: Chemical compositions and source apportionment of PM2.5 during clear and hazy days: Seasonal changes and impacts of Youth Olympic Games. Chemosphere 256: 127163
Wang, H.; Yang, Q.; Ma, H.; Liang, J. 2021: Chemical compositions evolution of groundwater and its pollution characterization due to agricultural activities in Yinchuan Plain, northwest China. Environmental Research 200: 111449
Kazemeini, F.; Asri, Y.; Mostafavi, G.; Kalvandi, R.; Mehregan, I. 2021: Chemical compositions of the essential oils from Iranian populations of Rhabdosciadium aucheri Boiss. (Apiaceae). Natural Product Research 2021: 1-6
Heshmati Afshar, F.; Zadehkamand, M.; Rezaei, Z.; Delazar, A.; Tarhriz, V.; Asgharian, P. 2021: Chemical compositions, antimicrobial effects, and cytotoxicity of Asia minor wormwood (Artemisia splendens Willd.) growing in Iran. Bmc Chemistry 15(1): 33
Li, Y.; Liu, X.; Lin, X.; Zhao, M.; Xiao, Y.; Liu, C.; Liang, Z.; Lin, Z.; Yi, R.; Tang, Z.; Liu, J.; Li, X.; Jiang, Q.; Li, L.; Xie, Y.; Liu, Z.; Fang, W. 2019: Chemical compound cinobufotalin potently induces FOXO1-stimulated cisplatin sensitivity by antagonizing its binding partner MYH9. Signal Transduction and Targeted Therapy 4: 48
Li, Y.; Liu, X.; Lin, X.; Zhao, M.; Xiao, Y.; Liu, C.; Liang, Z.; Lin, Z.; Yi, R.; Tang, Z.; Liu, J.; Li, X.; Jiang, Q.; Li, L.; Xie, Y.; Liu, Z.; Fang, W. 2019: Chemical compound cinobufotalin potently induces FOXO1-stimulated cisplatin sensitivity by antagonizing its binding partner MYH9. Signal Transduction and Targeted Therapy 4(1): 48
Krawiec, P.; Warguła, Łukasz.; Czarnecka-Komorowska, D.; Janik, Pł.; Dziechciarz, A.; Kaczmarzyk, P. 2021: Chemical compounds released by combustion of polymer composites flat belts. Scientific Reports 11(1): 8269
Kisitu, J.; Hollert, H.; Fisher, C.án.; Leist, M. 2020: Chemical concentrations in cell culture compartments (C5) - free concentrations. Altex 37(4): 693-708
Lei, X.; Li, N.; Bai, Z.; Di, J.; Zhang, H.; Dong, P.; Zhang, P. 2020: Chemical constituent from the peel of Trichosanthes kirilowii Maxim and their NF-κB inhibitory activity. Natural Product Research 2020: 1-6
Liu, Y.; Yin, X.; Sun, Y-Ping.; Liu, Y.; Zhou, Y-Yuan.; Pan, J.; Guan, W.; Yang, B-You.; Kuang, H-Xue. 2020: Chemical constituent from the roots of Solanum melongena L. and their potential anti-inflammatory activity. Natural Product Research 2020: 1-8
Rabbi, F.; Zada, A.; Adhikari, A.; Nisar, A.; Khalil, S.Khan. 2020: Chemical constituent with cytotoxicity from Sterculia diversifolia. Journal of Asian Natural Products Research 2020: 1-7
Janani, K.; Ajitha, P.; Sandhya, R.; Teja, K.V. 2019: Chemical constituent, minimal inhibitory concentration, and antimicrobial efficiency of essential oil from oreganum vulgare against Enterococcus faecalis: An in vitro study. Journal of Conservative Dentistry: Jcd 22(6): 538-543
Doan, D.Xuan.; Sun, S.; Omar, A.M.; Nguyen, D.Thuong.; Hoang, A.Le.Tuan.; Fujiwara, H.; Matsumoto, K.; Pham, H.Thi.Nguyet.; Awale, S. 2020: Chemical constituents and absolute configuration of megastigmanes' isolated from Sedum sarmentosum Bunge. Natural Product Research 2020: 1-8
Iguchi, T.; Kuroda, M.; Akiyama, N.; Hashimoto, M.; Mimaki, Y. 2020: Chemical constituents and aldose reductase inhibitory activities of Betula alba bark and leaves. Natural Product Research 2020: 1-5
Yang, M.; Wang, Y.; Fan, Z.; Xue, Q.; Njateng, G.S.S.; Liu, Y.; Cao, J.; Khan, A.; Cheng, G. 2021: Chemical constituents and anti-inflammatory activity of the total alkaloid extract from Melodinus cochinchinensis (Lour.) Merr. and its inhibition of the NF-κB and MAPK signaling pathways. Phytomedicine: International Journal of PhytoTherapy and Phytopharmacology 91: 153684
Nongmai, C.; Kanokmedhakul, K.; Promgool, T.; Paluka, J.; Suwanphakdee, C.; Kanokmedhakul, S. 2021: Chemical constituents and antibacterial activity from the stems and leaves of Piper wallichii. Journal of Asian Natural Products Research 2021: 1-8
Smaili, T.; Bendif, H.; Öztürk, M.; Emin Duru, M.; Flamini, G.; Maggi, F. 2021: Chemical constituents and anticholinesterase activity of the essential oil of Algerian Elaeoselinum thapsioides (desf.) maire. Natural Product Research 2021: 1-6
Arêas, D.Rhiane.P.Colhado.; Cabral, Márcia.R.P.; Ramos, A.V.G.; Peixoto, J.L.B.; do Carmo, M.R.Barrotto.; Baldoqui, D.C.; Porto, C.; Sarragiotto, M.Helena. 2020: Chemical constituents and dereplication study of Lessingianthus brevifolius (Less.) H.Rob. (Asteraceae) by UHPLC-HRMS and molecular networking. Natural Product Research 2020: 1-4
Bujang, J.S.; Zakaria, M.H.; Ramaiya, S.D. 2021: Chemical constituents and phytochemical properties of floral maize pollen. Plos one 16(2): E0247327
Wang, J.; Shao, S.; Huang, R.; Wu, S. 2020: Chemical constituents and their antioxidant activities from the leaves of Synsepalum dulcificum. Natural Product Research 2020: 1-6
Aminah, N.S.; Tun, K.N.W.; Kristanti, A.N.; Aung, H.T.; Takaya, Y.; Choudhary, M.I. 2021: Chemical constituents and their biological activities from Taunggyi (Shan state) medicinal plants. Heliyon 7(2): E06173
Zhang, F.-L.; Shi, C.; Sun, L.-T.; Yang, H.-X.; He, J.; Li, Z.-H.; Feng, T.; Liu, J.-K. 2021: Chemical constituents and their biological activities from the mushroom Pyropolyporus fomentarius. Phytochemistry 183: 112625
Yun-Ting, Z.; Xiao, H.; Yun-Zhong, C.; Jun-de, L.I.; Kun, Y.U. 2020: Chemical constituents and their biosynthesis mechanisms of Polygonum cuspidatum. Zhongguo Zhong Yao Za Zhi 45(18): 4364-4372
Guo, J.-M.; Yu, X.-M.; Jiang, B.; Su, Q.-T.; Cao, W.-Q.; Liu, Y.-P.; Fu, Y.-H. 2021: Chemical constituents from Clausena excavata and their inhibitory activities against proliferation of synoviocytes. Zhongguo Zhong Yao Za Zhi 46(17): 4438-4445
Huang, W.; Li, Y.; Jiang, J. 2009: Chemical constituents from Hedyotis diffusa. Zhongguo Zhong Yao Za Zhi 34(6): 712-714
Sun, M.-X.; Wang, X.; Li, X.-X.; Ji, T.-F.; Liu, B. 2021: Chemical constituents from Hypericum curvisepalum. Zhongguo Zhong Yao Za Zhi 46(15): 3859-3864
Giang, V.Huong.; Thuy, L.Thi.; Cham, P.Thi.; Vinh, L.Ba.; Ban, N.Khac.; Linh, T.My.; Mai, N.Chi.; Hoe, P.Thi.; Huong, T.Thu.; Dang, N.Hai.; Oh, H.; Quang, T.Hong. 2021: Chemical constituents from Lycopodiella cernua and their anti-inflammatory and cytotoxic activities. Natural Product Research 2021: 1-7
Chen, X-Hua.; Yang, C.; Mo, Y-Sheng.; Wang, Q. 2021: Chemical constituents from Maackia amurensis and their anti-inflammatory and antioxidant activities. Journal of Asian Natural Products Research 2021: 1-7
Nguyen, D.T.; Iqbal, J.; Han, J.; Pierens, G.K.; Wood, S.A.; Mellick, G.D.; Feng, Y. 2020: Chemical constituents from Macleaya cordata (Willd) R. Br. and their phenotypic functions against a Parkinson's disease patient-derived cell line. Bioorganic and Medicinal Chemistry 28(21): 115732
Zhao, Y.-Y.; Yu, Q.-M.; Qiao, Z.-H.; Li, J.; Tang, H.-X.; Chen, G.-Y.; Fu, Y.-H. 2021: Chemical constituents from Morinda citrifolia and their inhibitory activities on proliferation of synoviocytes in vitro. Zhongguo Zhong Yao Za Zhi 46(10): 2519-2526
Wang, C.; Han, S.-W.; Cui, B.-S.; Wang, X.-J.; Li, S. 2014: Chemical constituents from Pleione bulbocodioides. Zhongguo Zhong Yao Za Zhi 39(3): 442-447
Bai, M.; Zhang, Q.; Hou, Z-Lin.; Li, C.; Zhou, W-Yu.; Yao, G-Dong.; Huang, X-Xiao.; Song, S-Jiang. 2021: Chemical constituents from Solanum nigrum and their neuroprotective activities. Journal of Asian Natural Products Research 2021: 1-10
Xu, D.-F.; Miao, L.; Wang, Y.-Y.; Zhang, J.-S.; Zhang, H. 2021: Chemical constituents from Tinospora sagittata and their biological activities. Fitoterapia 153: 104963
Xia, Z.; Zhang, H.-X.; Xu, T.-Q.; Chen, Y.-M.; Zhou, G.-X. 2020: Chemical constituents from Xanthii Fructus. Zhongguo Zhong Yao Za Zhi 45(12): 2907-2915
Ryu, S.M.; Nguyen, Q.N.; Lee, S.; Kwon, H.; Kwon, J.; Lee, H.; Kwon, S.L.; Lee, J.; Hwang, B.Y.; Yim, J.-H.; Guo, Y.; Kim, J.-J.; Kang, K.S.; Lee, D. 2021: Chemical constituents from basidiomycete Basidioradulum radula culture medium and their cytotoxic effect on human prostate cancer DU-145 cells. Bioorganic Chemistry 114: 105064
Elsbaey, M.; Ibrahim, M.A.A.; Bar, F.A.; Elgazar, A.A. 2021: Chemical constituents from coconut waste and their in silico evaluation as potential antiviral agents against SARS-CoV-2. South African Journal of Botany: Official Journal of the South African Association of Botanists 141: 278-289
Xia, H.; Wang, L.-Y.; Xia, G.-Y.; Wei, X.-H.; Wang, Y.-N.; Lin, S. 2020: Chemical constituents from ethyl acetate soluble extraction of Litsea cubeba. Zhongguo Zhong Yao Za Zhi 45(24): 5877-5883
Pham, T.Viet.; Bach, H.Kim.Thi.; Ho, D.Viet.; Nguyen, B.Chi. 2020: Chemical constituents from the Knema globularia fruits and their in vitro cytotoxicity. Natural Product Research 2020: 1-7
Li, J.; Huan, X-Juan.; Wu, M-Jun.; Chen, Z-Hui.; Chen, B.; Miao, Z-Hong.; Guo, Y-Wei.; Li, X-Wen. 2020: Chemical constituents from the South China sea soft coral Sinularia humilis. Natural Product Research 2020: 1-7
Wu, G-Yun.; Zhu, Z-Yan.; Zhang, X.; Wang, M-Miao.; Li, J-Xiong.; Hu, Y-Jie.; Tan, H-Bo. 2021: Chemical constituents from the Streptomyces morookaensis strain Sm4-1986. Natural Product Research 2021: 1-8
Liu, M.; Yang, J-Song.; Qin, D. 2021: Chemical constituents from the aerial parts of Saussurea involucrata with their inhibitory activities on α-glucosidase. Journal of Asian Natural Products Research 2021: 1-6
Xu, D-Shuai.; Zhao, Q.; Wang, B.; Wu, M.; Xu, J. 2020: Chemical constituents from the bioactive fraction of the seeds of Psoralea corylifolia and proliferation activities on osteoblastic-like UMR106 cells. Journal of Asian Natural Products Research 2020: 1-7
Phan, N.Huu.Toan.; Thuan, N.Thi.Dieu.; Hien, N.Thi.Thu.; Huyen, P.Van.; Hanh, T.Thi.Hong.; Quang, T.Hong.; Cuong, N.Xuan.; Nam, N.Hoai. 2020: Chemical constituents from the branches and leaves of Alchornea annamica. Natural Product Research 2020: 1-7
Li, B.; Lu, Y-Ying.; Lo, J-Yu.; Qiao, X.; Ye, M. 2020: Chemical constituents from the dish-cultured Antrodia camphorata and their cytotoxic activities. Journal of Asian Natural Products Research 2020: 1-9
Li, Y.-N.; Zeng, Y.-R.; Yang, J.; He, W.; Chen, J.; Deng, L.; Yi, P.; Huang, L.-J.; Gu, W.; Hu, Z.-X.; Yuan, C.-M.; Hao, X.-J. 2022: Chemical constituents from the flowers of Hypericum monogynum L. with COX-2 inhibitory activity. Phytochemistry 193: 112970
Li, D.; Wang, R.; Cheng, X.; Yang, J.; Yang, Y.; Qu, H.; Li, S.; Lin, S.; Wei, D.; Bai, Y.; Zheng, X. 2020: Chemical constituents from the fruits of Piper longum L. and their vascular relaxation effect on rat mesenteric arteries. Natural Product Research 2020: 1-6
Wu, M.-T.; Liu, S.-Y.; Huang, D.-L.; He, L.-N.; Guo, M.; Ni, L.; Zou, S.-Q. 2021: Chemical constituents from the leaves of Cinnamomum camphora var. linaloolifera and their anti-inflammatory activities. Zhongguo Zhong Yao Za Zhi 46(14): 3592-3598
Zhou, G.; Zhao, J.; Gong, C.; Xu, J.; Song, C.; Meng, D. 2021: Chemical constituents from the leaves of psidium guajava linn. and their chemotaxonomic significance. Natural Product Research 2021: 1-6
Chen, X-Hua.; Zhao, Y-Ying.; Wang, Q.; Li, Z-Ling.; Li, F-Xia.; Tan, H-Yu.; Huang, Y-Yue. 2021: Chemical constituents from the stems of Acanthopanax senticosus with their cytotoxic activities. Journal of Asian Natural Products Research 2021: 1-6
Chen, H-Jun.; Zhang, X-Song.; Zhang, J-Wen.; Gu, H-Xuan.; Huang, J-Xun. 2020: Chemical constituents from the stems of Acanthopanax senticosus with their inhibitory activity on α-glucosidase. Journal of Asian Natural Products Research 2020: 1-6
Zhang, J.; Yang, T.-T.; Li, G.-Q.; Wang, W.-J.; Zhang, X.-Q.; Ye, W.-C. 2013: Chemical constituents from twigs and leaves of Melodinus hemsleyanus. Zhongguo Zhong Yao Za Zhi 38(10): 1548-1551
Ngo, N.T.N.; Lai, N.T.D.D.T.; Le, H.C.; Nguyen, L-Thu.T.; Trinh, B.T.D.; Nguyen, H.D.; Pham, P.D.; Dang, S.V.; Nguyen, L-Hoa.D. 2021: Chemical constituents of Aglaia elaeagnoidea and Aglaia odorata and their cytotoxicity. Natural Product Research 2021: 1-9
Zhang, Z.; Ni, S.-W.; Xu, X.; Huang, W.-Z.; Wang, S.-S.; Zhu, H.; Gao, X.-M. 2021: Chemical constituents of Cassia occidentalis. Zhongguo Zhong Yao Za Zhi 46(15): 3873-3876
Cha, J.M.; Kim, D.H.; Subedi, L.; Khan, Z.; Choi, S.U.; Kim, S.Y.; Kim, C.S. 2020: Chemical constituents of Chaenomeles sinensis twigs and their biological activity. Beilstein Journal of Organic Chemistry 16: 3078-3085
Xu, L.; Liu, J.; Min, D.; Wang, S.; Zhang, Z.; Guo, D.; Zheng, K. 1998: Chemical constituents of Conyza blinii Lévl. Zhongguo Zhong Yao Za Zhi 23(5): 293-295; 320
Wang, Q.; Liu, E.-W.; Han, L.-F.; Zhang, Y. 2013: Chemical constituents of Dipsacus asper. Yao Xue Xue Bao 48(7): 1124-1127
Shomirzoeva, O.; Xu, M.-Y.; Sun, Z.-J.; Li, C.; Nasriddinov, A.; Muhidinov, Z.; Zhang, K.; Gu, Q.; Xu, J. 2021: Chemical constituents of Ferula seravschanica. Fitoterapia 149: 104829
Linh, N.Thi.Thuy.; Thuy, T.Thi.; Tam, N.Thanh.; Cham, B.Thi.; Tam, K.Thi.; Sa, N.Hoang.; Thao, D.Thi.; Chinh, V.Tien.; Anh, N.Thi.Hoang. 2021: Chemical constituents of Impatiens chapaensis Tard. and their α -glucosidase inhibition activities. Natural Product Research 2021: 1-5
Yuan, X.; Han, B.; Feng, Z.-M.; Jiang, J.-S.; Yang, Y.-N.; Zhang, P.-C. 2020: Chemical constituents of Ligusticum chuanxiong and their anti-inflammation and hepatoprotective activities. Bioorganic Chemistry 101: 104016
Sun, Y.F.; Xiao, Y.Q.; Liu, X.H. 1994: Chemical constituents of Notopterygium incisum Ting. Zhongguo Zhong Yao Za Zhi 19(6): 357-358; 383-384
Liu, H.; Lu, X.; Hu, Y.; Fan, X. 2020: Chemical constituents of Panax ginseng and Panax notoginseng explain why they differ in therapeutic efficacy. Pharmacological Research 161: 105263
Kang, J.; Jia, Z. 1997: Chemical constituents of Pedicularis muscicola Maxim. Zhongguo Zhong Yao Za Zhi 22(3): 167-168; 191-192
Li, Y.; Liu, Y.-B.; Yu, S.-S. 2013: Chemical constituents of Periploca forrestii. Zhongguo Zhong Yao Za Zhi 38(10): 1536-1538
Chai, L.-S.; Liu, G.-S.; Zhu, Y.-X.; Wang, S.-Y.; Yang, C.-S.; Li, Y. 2021: Chemical constituents of Physalis minima. Zhongguo Zhong Yao Za Zhi 46(15): 3865-3872
Liu, X.-C.; Lin, D.-M.; Liu, M.; Zhang, M.; Li, Q.; Wang, J.; Xu, L.-L.; Gao, Y.; Yang, J. 2021: Chemical constituents of Psidium guajava and their antitumor and antifungal activities. Zhongguo Zhong Yao Za Zhi 46(15): 3877-3885
Huang, J.; Li, C.; Ma, J.; Xu, K.; Chen, X.; Jiang, J.; Zhang, D. 2021: Chemical constituents of Psidium guajava leaves and their antibacterial activity. Phytochemistry 186: 112746
Chen, Y.; Cai, X.; Li, G.; He, X.; Yu, X.; Yu, X.; Xiao, Q.; Xiang, Z.; Wang, C. 2021: Chemical constituents of radix Actinidia chinensis planch by UPLC-QTOF-MS. Biomedical Chromatography: Bmc 35(7): E5103
Long, G-Qing.; Wang, D-Dong.; Wang, J.; Jia, J-Ming.; Wang, A-Hua. 2020: Chemical constituents of Sophora flavescens Ait. and cytotoxic activities of two new compounds. Natural Product Research 2020: 1-6
Sun, S.; Omar, A.M.; Kim, M.J.; Phan, N.D.; Chulikhit, Y.; Awale, S. 2021: Chemical constituents of Thai Piper ribesoides and their antiausterity activities against the PANC-1 human pancreatic cancer cell line. Fitoterapia 151: 104901
Chen, Y-Ying.; Hou, J-Ping.; Huang, L.; Khan, A.; Xing, F-Fei.; Zhang, X-Han.; Han, D-Feng.; Yan, S-Li.; Cao, G-Dong.; Jiao, Q-Yang.; Liu, D.; Zhu, X.; Hu, Q.; Lou, H-Xiang. 2020: Chemical constituents of Viscum coloratum (Kom.) Nakai and their cytotoxic activities. Natural Product Research 2020: 1-7
Meng, Q.; Yang, C.; Wang, M.; Yuan, J.; Shi, Z.; Zhang, Y.; Fu, S. 2020: Chemical constituents of fungus F03 belonging to Basidiomycota. Pakistan Journal of Pharmaceutical Sciences 33(4): 1543-1546
Huang, W.-M.; Chen, F.-Y.; Bian, Y.-T.; Zhang, Y.; Chen, Z.-C.; Shuang, P.-C.; Luo, Y.-M. 2021: Chemical constituents of sesquiterpenes from Chloranthus multistachys. Zhongguo Zhong Yao Za Zhi 46(16): 4145-4149
Fu, Y.; Sun, X.; Chen, S.; Duan, Y.; Han, Y. 2021: Chemical constituents of the antiulcer purified fractions of Lindera reflexa Hemsl. and its quantitative analysis. Fitoterapia 148: 104795
Shi, H.; Li, F.; Mi, C.; Qiao, B.; Wang, C. 1998: Chemical constituents of the root of Pimpinella thellungiana Wolff. Zhongguo Zhong Yao Za Zhi 23(7): 421
Li, Y.-J.; Ji, T.-F.; Zhao, J.; Gu, Z.-Y. 2021: Chemical constituents of triterpenoids from Euphorbia resinifera. Zhongguo Zhong Yao Za Zhi 46(17): 4433-4437
Kamdoum, B.Cedric.; Simo, I.; Wouamba, S.Collins.Njonte.; Tchatat Tali, B.Mariscal.; Ngameni, B.; Fotso, G.Wabo.; Ambassa, Péon.; Fabrice, F.Boyom.; Lenta, B.Ndjakou.; Sewald, N.; Ngadjui, B.Tchaleu. 2021: Chemical constituents of two Cameroonian medicinal plants: Sida rhombifolia L. and Sida acuta Burm. f. (Malvaceae) and their antiplasmodial activity. Natural Product Research 2021: 1-8
Chen, Q.; Di, L.; Zhang, Y.; Li, N. 2020: Chemical constituents with cytotoxic and anti-inflammatory activity in Hypericum sampsonii and the antitumor potential under the view of cancer-related inflammation. Journal of Ethnopharmacology 259:: 112948
Jiang, Q.-C.; Wang, Q.-Q.; Xiao, C.-X.; Tan, Z.-J.; Liu, P.-P.; Sun, H.-M.; Liao, H.-B.; Xu, W.; Jiang, R.-W. 2021: Chemical constituents with inhibition against TNF-α from Merrillanthus hainanensis. Fitoterapia 152: 104938
Hanfer, M.; Benramdane, Z.; Cheriet, T.; Sarri, D.; Menad, A.; Mancini, I.; Seghiri, R.; Ameddah, S. 2021: Chemical constituents, in vitro anti-inflammatory, antioxidant and hemostatic activities of the n -butanol extract of Hyacinthoides lingulata (Poir.) Rothm. Natural Product Research 2021: 1-5
Fatmawati, S.; Yuliana; Purnomo, A.S.; Abu Bakar, M.F. 2020: Chemical constituents, usage and pharmacological activity of Cassia alata. Heliyon 6(7): E04396
Redel, J.; Salesse, J.; Martinaud, J.P. 1955: Chemical constitution and choleretic activity of aliphatic phenylsubstituted acids. Bulletin de la Societe de Chimie Biologique 37(11): 1189-1194
Ainley, A.D.; Sexton, W.A. 1948: Chemical constitution and insecticidal action; substituted alpha-aminonitriles. Biochemical Journal 43(3): 468-474
Giudicelli, R.; Chabrier, P.; Najer, H. 1955: Chemical constitution and local anesthetic activity. Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences 241(24): 1884-1886
Levy, J. 1946: Chemical constitution and pharmacodynamic action of medicinal substances. Le Medecin Generaliste de France 6: 163-166
D'Amico, F.; Musso, M.E.; Berger, R.J.F.; Cefarin, N.; Birarda, G.; Tondi, G.; Bertoldo Menezes, D.; Reyer, A.; Scarabattoli, L.; Sepperer, T.; Schnabel, T.; Vaccari, L. 2021: Chemical constitution of polyfurfuryl alcohol investigated by FTIR and Resonant Raman spectroscopy. Spectrochimica Acta. Part a Molecular and Biomolecular Spectroscopy 262: 120090
Boquet, P. 1948: Chemical constitution of snake venoms. L' Annee Biologique 52(7-8): 275-285
Ciuca, M.; Mesrobeanu, L.; Barber, C. 1948: Chemical constitution of the oily variants obtained by the action of bacteriophage AE on certain strains of typhi murium (Aertrycke). Archives Roumaines de Pathologie Experimentales et de Microbiologie 14(1-4): 24-28
Wautier, J. 1945: Chemical constitution of the organomineral deposit of submerged sand filters. Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences 220(14): 571
Feher, T.; Matkovics, B. 1960: Chemical constitution of the red blood cell membrane. Nature 187: 701-702
Zini, L.B.; Gutterres, M. 2021: Chemical contaminants in Brazilian drinking water: a systematic review. Journal of Water and Health 19(3): 351-369
Zheng, J.; Tian, L.; Bayen, Séphane. 2021: Chemical contaminants in canned food and can-packaged food: a review. Critical Reviews in Food Science and Nutrition 2021: 1-32
Pringault, O.; Bouvy, M.; Carre, C.; Mejri, K.; Bancon-Montigny, C.; Gonzalez, C.; Leboulanger, C.; Hlaili, A.S.; Goni-Urriza, M. 2021: Chemical contamination alters the interactions between bacteria and phytoplankton. Chemosphere 278: 130457
Tangherlini, M.; Corinaldesi, C.; Rastelli, E.; Musco, L.; Armiento, G.; Danovaro, R.; Dell'Anno, A. 2020: Chemical contamination can promote turnover diversity of benthic prokaryotic assemblages: the case study of the Bagnoli-Coroglio bay (southern Tyrrhenian Sea). Marine Environmental Research 160: 105040
Pezacki, J.Paul.; Blake, J.A.; Danielson, D.C.; Kennedy, D.C.; Lyn, R.K.; Singaravelu, R. 2011: Chemical contrast for imaging living systems: molecular vibrations drive CARS microscopy. Nature Chemical Biology 7(3): 137-145
Balaska, S.; Fotakis, E.A.; Chaskopoulou, A.; Vontas, J. 2021: Chemical control and insecticide resistance status of sand fly vectors worldwide. Plos Neglected Tropical Diseases 15(8): E0009586
Kunnus, K.; Li, L.; Titus, C.J.; Lee, S.J.; Reinhard, M.E.; Koroidov, S.; Kjær, K.S.; Hong, K.; Ledbetter, K.; Doriese, W.B.; O'Neil, G.C.; Swetz, D.S.; Ullom, J.N.; Li, D.; Irwin, K.; Nordlund, D.; Cordones, A.A.; Gaffney, K.J. 2020: Chemical control of competing electron transfer pathways in iron tetracyano-polypyridyl photosensitizers. Chemical Science 11(17): 4360-4373
Gjermo, P.; Johansen, J.R. 1971: Chemical control of dental plaque. Den Norske Tannlaegeforenings Tidende 81(9): 705-710
Frederiksen, T.; Foti, G.; Scheurer, F.; Speisser, V.; Schull, G. 2014: Chemical control of electrical contact to sp² carbon atoms. Nature Communications 5: 3659
Rodriguez Quesada, R. 1947: Chemical control of insects. Control de Plagas 9(5): 74
Rodriguez Quesada, R. 1947: Chemical control of insects. Control de Plagas 9(6): 90-93
Krishnakumaran, A.; Schneiderman, H.A. 1968: Chemical control of moulting in arthropods. Nature 220(5167): 601-603
Lieberman, W.K.; Jing, Y.; Meier, J.L. 2021: Chemical control of multidomain acetyltransferase activity. Cell Chemical Biology 28(4): 433-435
Gong, N.; Shao, K.; Shen, K.; Gu, Y.; Liu, Y.'a.; Ye, J.; Hu, C.; Shen, L.; Chen, Y.; Li, D.; Fan, J. 2021: Chemical control of overwintering green algae to mitigate green tide in the Yellow Sea. Marine Pollution Bulletin 168: 112424
Tan, J.; Zhang, L.; Hsieh, M.-C.; Goodwin, J.T.; Grover, M.A.; Lynn, D.G. 2021: Chemical control of peptide material phase transitions. Chemical Science 12(8): 3025-3031
Zhou, P.; Aschauer, U.; Decurtins, S.; Feurer, T.; Häner, R.; Liu, S.-X. 2020: Chemical control of photoinduced charge-transfer direction in a tetrathiafulvalene-fused dipyrrolylquinoxaline difluoroborate dyad. Chemical Communications 56(87): 13421-13424
Banaszynski, L.A.; Sellmyer, M.A.; Contag, C.H.; Wandless, T.J.; Thorne, S.H. 2008: Chemical control of protein stability and function in living mice. Nature Medicine 14(10): 1123-1127
Kinoshita, T.; Toh, S.; Torii, K.U. 2021: Chemical control of stomatal function and development. Current Opinion in Plant Biology 60: 102010
Katsoulidis, A.P.; Antypov, D.; Whitehead, G.F.S.; Carrington, E.J.; Adams, D.J.; Berry, N.G.; Darling, G.R.; Dyer, M.S.; Rosseinsky, M.J. 2019: Chemical control of structure and guest uptake by a conformationally mobile porous material. Nature 565(7738): 213-217
Denissen, W.; Droesbeke, M.; Nicolaÿ, R.; Leibler, L.; Winne, J.M.; Du Prez, F.E. 2017: Chemical control of the viscoelastic properties of vinylogous urethane vitrimers. Nature Communications 8: 14857
Yoshimoto, K.; Takamura, H.; Kadota, I.; Motose, H.; Takahashi, T. 2016: Chemical control of xylem differentiation by thermospermine, xylemin, and auxin. Scientific Reports 6: 21487
Yuan, L.; Franco, C.; Crivillers, Núria.; Mas-Torrent, M.; Cao, L.; Sangeeth, C.S.Suchand.; Rovira, Có.; Veciana, J.; Nijhuis, C.A. 2016: Chemical control over the energy-level alignment in a two-terminal junction. Nature Communications 7: 12066
Ilgen, A.G.; Mook, W.M.; Tigges, A.B.; Choens, R.C.; Artyushkova, K.; Jungjohann, K.L. 2018: Chemical controls on the propagation rate of fracture in calcite. Scientific Reports 8(1): 16465
Huang, Y.; Miyamoto, D.; Li, P.-L.; Sakai, Y.; Hara, T.; Adachi, T.; Soyama, A.; Hidaka, M.; Kanetaka, K.; Gu, W.-L.; Eguchi, S. 2021: Chemical conversion of aged hepatocytes into bipotent liver progenitor cells. Hepatology Research: the Official Journal of the Japan Society of Hepatology 51(3): 323-335
Yokoi, N.; Fukata, Y.; Kase, D.; Miyazaki, T.; Jaegle, M.; Ohkawa, T.; Takahashi, N.; Iwanari, H.; Mochizuki, Y.; Hamakubo, T.; Imoto, K.; Meijer, D.; Watanabe, M.; Fukata, M. 2015: Chemical corrector treatment ameliorates increased seizure susceptibility in a mouse model of familial epilepsy. Nature Medicine 21(1): 19-26
Axén, R.; Porath, J. 1966: Chemical coupling of enzymes to cross-linked dextran ('Sephadex'). Nature 210(5034): 367-369
Axén, R.; Porath, J.; Ernback, S. 1967: Chemical coupling of peptides and proteins to polysaccharides by means of cyanogen halides. Nature 214(5095): 1302-1304
Porath, J.; Axen, R.; Ernback, S. 1967: Chemical coupling of proteins to agarose. Nature 215(5109): 1491-1492
Chang, K.-C.; Chen, W.-C.; Chen, C.-H.; Ko, C.-L.; Liu, S.-M.; Chen, J.-C. 2021: Chemical cross-linking on gelatin-hyaluronan loaded with hinokitiol for the preparation of guided tissue regeneration hydrogel membranes with antibacterial and biocompatible properties. Materials Science and Engineering. C Materials for Biological Applications 119: 111576
Ansari, A.Z. 2007: Chemical crosshairs on the central dogma. Nature Chemical Biology 3(1): 2-7
Patton, R.D.; Sanjeev, M.; Woodward, L.A.; Mabin, J.W.; Bundschuh, R.; Singh, G. 2020: Chemical crosslinking enhances RNA immunoprecipitation for efficient identification of binding sites of proteins that photo-crosslink poorly with RNA. Rna 26(9): 1216-1233
Dittman, A. 2005: Chemical cues for sea lamprey migration. Nature Chemical Biology 1(6): 316-317
Vodrážková, M.; Šetlíková, I.; Berec, M. 2020: Chemical cues of an invasive turtle reduce development time and size at metamorphosis in the common frog. Scientific Reports 10(1): 7978
Kücklich, M.; Weiß, B.M.; Birkemeyer, C.; Einspanier, A.; Widdig, A. 2019: Chemical cues of female fertility states in a non-human primate. Scientific Reports 9(1): 13716
Crossland, M.R.; Salim, A.A.; Capon, R.J.; Shine, R. 2021: Chemical cues that attract cannibalistic cane toad (Rhinella marina) larvae to vulnerable embryos. Scientific Reports 11(1): 12527
Zheng, X.; Ma, S.; Kang, A.; Wu, M.; Wang, L.; Wang, Q.; Wang, G.; Hao, H. 2016: Chemical dampening of Ly6C(hi) monocytes in the periphery produces anti-depressant effects in mice. Scientific Reports 6: 19406
Xiao, Y.; Jiang, J.; Huang, H. 2014: Chemical dechlorination of hexachlorobenzene with polyethylene glycol and hydroxide: dominant effect of temperature and ionic potential. Scientific Reports 4: 6305
Müller, C.; Zwaan, B.J.; de Vos, H.; Brakefield, P.M. 2003: Chemical defence in a sawfly: genetic components of variation in relevant life-history traits. Heredity 90(6): 468-475
Pereira, R.C.; Sudatti, D.B.; Moreira, T.S.G.; Ventura, C.R.R. 2021: Chemical defense in developmental stages and adult of the sea star Echinaster (Othilia) brasiliensis. Peerj 9: E11503
Bonmassar, E.; Francesconi, G.; Manzoni, S.C.; Perelli-Ercolini, M. 1966: Chemical deletion of histocompatibility antigens--homograft survival of rat skin treated with "Urethan" in vitro. Nature 209(5028): 1141-1142
Miers, D. 1993: Chemical dependency and the dental patient. Journal of the Kansas Dental Association 78(4): 28; 29-30
Gallacher, K.O. 1993: Chemical dependency in the dental profession. Pennsylvania Dental Journal 60(3): 33-37
Green, P. 1983: Chemical dependency in the nursing profession: a call for action. Oklahoma Nurse 28(2): 15; 19
Garcia, B.A.; Mollah, S.; Ueberheide, B.M.; Busby, S.A.; Muratore, T.L.; Shabanowitz, J.; Hunt, D.F. 2007: Chemical derivatization of histones for facilitated analysis by mass spectrometry. Nature Protocols 2(4): 933-938
Xia, F.; Wan, J.-B. 2023: Chemical derivatization strategy for mass spectrometry-based lipidomics. Mass Spectrometry Reviews 42(1): 432-452
Knottenbelt, D.C. 1999: Chemical destruction of horses. Veterinary Record 145(2): 54-55
Tolis, G. 1977: Chemical detection of pheochromocytoma. Canadian Medical Association Journal 116(10): 1114
Mayer, C. 1951: Chemical determination of folliculin in gynecology and obstetrics. Comptes Rendus de la Societe Francaise de Gynecologie 21(7): 259-264
Alstrom, I. 1948: Chemical determination of paraaminobenzoic acid in feed and investigations of the para-aminobenzoic acid elimination with the urine of different animals. Skandinavisk Veterinar-Tidsskrift for Bakteriologi Patologi Samt Kjottoch Mjolkhygienen 38(4): 213-238
Roth, H. 1947: Chemical determination of vitamin B1 in food and body fluids. Internationale Zeitschrift für Vitaminforschung. International Journal of Vitamin Research. Journal International de Vitaminologie 19(3-4): 309-330
Leplat, G. 1949: Chemical determinism of cellular reactions in foci of bacterial infection. Annales d'Oculistique 182(11): 864-868
Boivin, A.; Delaunay, A. 1948: Chemical determinism of cellular reactions in foci of bacterial infection. Exposes Annuels de Biochimie Medicale 2(8 Ser): 31-65
Wachowiak, R.; Tobolski, J.ła.; Klimaszyk, D. 2005: Chemical diagnosis of carbamazepine intoxication and its usefulness in toxicological jurisprudence. Archiwum Medycyny Sadowej i Kryminologii 55(1): 94-100
Roholt, O.; Shaw, A.; Pressman, D. 1962: Chemical differences between antibody fragments as shown by paired label studies. Nature 196: 773-774
De Myttenaere, F. 1949: Chemical differentiation test of rhubarb varieties. Bulletin de l'Academie Royale de Medecine de Belgique 14(1): 33-44
Jackson, M.D.; Blundy, J.; Sparks, R.S.J. 2018: Chemical differentiation, cold storage and remobilization of magma in the Earth's crust. Nature 564(7736): 405-409
Saraiva, Jão.L.; Keller-Costa, T.; Hubbard, P.C.; Rato, A.; Canário, A.V.M. 2017: Chemical diplomacy in male tilapia: urinary signal increases sex hormone and decreases aggression. Scientific Reports 7(1): 7636
Parikh, S.R.; Parikh, R.S. 2021: Chemical disinfectants in ophthalmic practice. Indian Journal of Ophthalmology 69(3): 510-516
Al-Sayah, M.H. 2020: Chemical disinfectants of COVID-19: an overview. Journal of Water and Health 18(5): 843-848
Exner, M.; Bhattacharya, S.; Gebel, J.ür.; Goroncy-Bermes, P.; Hartemann, P.; Heeg, P.; Ilschner, C.; Kramer, A.; Ling, M.L.; Merkens, W.; Oltmanns, P.; Pitten, F.; Rotter, M.; Schmithausen, R.M.; Sonntag, H.-G.ün.; Steinhauer, K.; Trautmann, M. 2020: Chemical disinfection in healthcare settings: critical aspects for the development of global strategies. Gms Hygiene and Infection Control 15: Doc36
Tremblay, J.; Yergeau, E.; Fortin, N.; Cobanli, S.; Elias, M.; King, T.L.; Lee, K.; Greer, C.W. 2017: Chemical dispersants enhance the activity of oil- and gas condensate-degrading marine bacteria. Isme Journal 11(12): 2793-2808
Saad, S.; Ouafi, S.; Meguellati, H.; Djemouai, N. 2021: Chemical diversity analysis and biological activities evaluation of different polyphenolic extracts of Marrubium deserti De Noé from Algeria. Journal of Ethnopharmacology 281:: 114494
Schrimpf, W.; Jiang, J.; Ji, Z.; Hirschle, P.; Lamb, D.C.; Yaghi, O.M.; Wuttke, S. 2018: Chemical diversity in a metal-organic framework revealed by fluorescence lifetime imaging. Nature Communications 9(1): 1647
Yamada, Y.; Komatsu, M.; Ikeda, H. 2016: Chemical diversity of labdane-type bicyclic diterpene biosynthesis in Actinomycetales microorganisms. Journal of Antibiotics 69(7): 515-523
Hauri, K.C.; Glassmire, A.E.; Wetzel, W.C. 2021: Chemical diversity rather than cultivar diversity predicts natural enemy control of herbivore pests. Ecological Applications: a Publication of the Ecological Society of America 31(3): E02289
Zhao, W.; Ding, J.; Zou, Y.; Di, C.-A.; Zhu, D. 2020: Chemical doping of organic semiconductors for thermoelectric applications. Chemical Society Reviews 49(20): 7210-7228
Goettl, S.J.; Doddipatla, S.; Yang, Z.; He, C.; Kaiser, R.I.; Silva, M.X.; Galvão, B.R.L.; Millar, T.J. 2021: Chemical dynamics study on the gas-phase reaction of the D1-silylidyne radical (SiD; X2Π) with deuterium sulfide (D2S) and hydrogen sulfide (H2S). Physical Chemistry Chemical Physics: Pccp 23(24): 13647-13661
Meiners, T. 2015: Chemical ecology and evolution of plant-insect interactions: a multitrophic perspective. Current Opinion in Insect Science 8: 22-28
Diamond, J.M. 1992: Chemical ecology. Rubbish birds are poisonous. Nature 360(6399): 19-20
Lincoln, T. 2006: Chemical ecology: in defence of maize. Nature 439(7074): 278
Early, C.M.; Morhardt, A.C.; Cleland, T.P.; Milensky, C.M.; Kavich, G.én.ël.M.; James, H.F. 2020: Chemical effects of diceCT staining protocols on fluid-preserved avian specimens. Plos one 15(9): E0238783
Hems, G. 1960: Chemical effects of ionizing radiation on deoxyribonucleic acid in dilute aqueous solution. Nature 186: 710-712
Emmerson, P.; Scholes, G.; Thomson, D.H.; Ward, J.F.; Weiss, J. 1960: Chemical effects of ionizing radiations on nucleic acids and nucleoproteins. Nature 187: 319-320
Fegley, B.; Prinn, R.G.; Hartman, H.; Watkins, G.H.; Hartman, H. 1986: Chemical effects of large impacts on the Earth's primitive atmosphere. Nature 319: 305-308
Semmens, E.S. 1947: Chemical effects of moon light. Nature 159(4044): 613
Allinson, R.; Coleby, B.; Weiss, J. 1955: Chemical effects of x-rays upon aqueous solutions of cortisone and deoxycorticosterone. Nature 175(4460): 720-721