Section 54

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Varbanets', L.D.; Matseliukh, O.V.; Avdiiuk, K.V.; Hudzenko, O.V.; Nidialkova, N.A.; Romanovs'ka, V.O.; Tashirev, O.B. 2014: Hydrolytic activity of microorganisms of the Dead Sea coastal ecosystems. Mikrobiolohichnyi Zhurnal 76(1): 16-20
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Pérez, C.D.; Fissore, E.N.; Gerschenson, L.N.; Cameron, R.G.; Rojas, A.M. 2012: Hydrolytic and oxidative stability of L-(+)-ascorbic acid supported in pectin films: influence of the macromolecular structure and calcium presence. Journal of Agricultural and Food Chemistry 60(21): 5414-5422
Zhang, H.; Moon, Y.H.; Watson, B.J.; Suvorov, M.; Santos, E.; Sinnott, C.A.; Hutcheson, S.W. 2011: Hydrolytic and phosphorolytic metabolism of cellobiose by the marine aerobic bacterium Saccharophagus degradans 2-40T. Journal of Industrial Microbiology and Biotechnology 38(8): 1117-1125
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Bíró, L.; Farkas, E.; Buglyó, P.ét. 2012: Hydrolytic behaviour and chloride ion binding capability of [Ru(η6-p-cym)(H2O)3]2+: a solution equilibrium study. Dalton Transactions 41(1): 285-291
Zhang, L.; Sinclair, A.; Cao, Z.; Ella-Menye, J-Rene.; Xu, X.; Carr, L.R.; Pun, S.H.; Jiang, S. 2013: Hydrolytic cationic ester microparticles for highly efficient DNA vaccine delivery. Small 9(20): 3439-3444
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Li, J.; Zhang, J.; Lu, Q.-S.; Yue, Y.; Huang, Y.; Zhang, D.-W.; Lin, H.-H.; Chen, S.-Y.; Yu, X.-Q. 2009: Hydrolytic cleavage of DNA by urea-bridged macrocyclic polyamines. European Journal of Medicinal Chemistry 44(12): 5090-5093
Steens, N.; Ramadan, A.M.; Absillis, G.; Parac-Vogt, T.N. 2010: Hydrolytic cleavage of DNA-model substrates promoted by polyoxovanadates. Dalton Transactions 2: 585-592
Absillis, G.; Cartuyvels, E.; Van Deun, R.; Parac-Vogt, T.N. 2008: Hydrolytic cleavage of an RNA-model phosphodiester catalyzed by a highly negatively charged polyoxomolybdate [Mo7O24]6- cluster. Journal of the American Chemical Society 130(51): 17400-17408
Qian, J.; Ma, X.; Tian, J.; Gu, W.; Shang, J.; Liu, X.; Yan, S. 2010: Hydrolytic cleavage of double-strand DNA by the water-soluble dicobalt(III) complexes of 1,4,7-triazacyclononane-N-acetate. Journal of Inorganic Biochemistry 104(9): 993-999
Bhattacharjee, A.; Hofer, T.S.; Pribil, A.B.; Randolf, B.R.; Rode, B.M. 2010: Hydrolytic conversion of AsO(-3)4 to HAsO(-2)4: a QMCF MD study. Physical Chemistry Chemical Physics: Pccp 12(23): 6244-6246
Mallick, A.; Garai, B.; Díaz, D.D.ía.; Banerjee, R. 2013: Hydrolytic conversion of a metal-organic polyhedron into a metal-organic framework. Angewandte Chemie 52(51): 13755-13759
Labet, V.; Morell, C.; Douki, T.; Cadet, J.; Eriksson, L.A.; Grand, A.é 2010: Hydrolytic deamination of 5,6-dihydrocytosine in a protic medium: a theoretical study. Journal of Physical Chemistry. a 114(4): 1826-1834
Labet, V.; Morell, C.; Cadet, J.; Eriksson, L.A.; Grand, A.é 2009: Hydrolytic deamination of 5-methylcytosine in protic medium--a theoretical study. Journal of Physical Chemistry. a 113(11): 2524-2533
Mundle, S.O.C.; Lacrampe-Couloume, G.; Lollar, B.S.; Kluger, R. 2010: Hydrolytic decarboxylation of carboxylic acids and the formation of protonated carbonic acid. Journal of the American Chemical Society 132(7): 2430-2436
Liang, B.; Li, R.; Jiang, D.; Sun, J.; Qiu, J.; Zhao, Y.; Li, S.; Jiang, J. 2010: Hydrolytic dechlorination of chlorothalonil by Ochrobactrum sp. CTN-11 isolated from a chlorothalonil-contaminated soil. Current Microbiology 61(3): 226-233
Chen, X.; Ooi, C.P. 2008: Hydrolytic degradation and drug release properties of ganciclovir-loaded biodegradable microspheres. Acta Biomaterialia 4(4): 1046-1056
Wischke, C.; Tripodo, G.; Choi, N.-Y.; Lendlein, A. 2011: Hydrolytic degradation behavior of poly(rac-lactide)-block-poly(propylene glycol)-block-poly(rac-lactide) dimethacrylate derived networks designed for biomedical applications. Macromolecular Bioscience 11(12): 1637-1646
Joachim Loo, S.C.; Jason Tan, W.L.; Khoa, S.M.; Chia, N.K.; Venkatraman, S.; Boey, F. 2008: Hydrolytic degradation characteristics of irradiated multi-layered PLGA films. International Journal of Pharmaceutics 360(1-2): 228-230
Yuan, Z.; Cheng, S.; Leitch, M.; Xu, C.C. 2010: Hydrolytic degradation of alkaline lignin in hot-compressed water and ethanol. Bioresource Technology 101(23): 9308-9313
Ahola, N.; Veiranto, M.; Rich, J.; Efimov, A.; Hannula, M.; Seppälä, J.; Kellomäki, M. 2013: Hydrolytic degradation of composites of poly(L-lactide-co-epsilon-caprolactone) 70/30 and β-tricalcium phosphate. Journal of Biomaterials Applications 28(4): 529-543
Santos, P.J.D.; Silva, M.íl.S.; Alonso, R.C.B.; D'Alpino, P.H.P. 2013: Hydrolytic degradation of silorane- and methacrylate-based composite restorations: Evaluation of push-out strength and marginal adaptation. Acta Odontologica Scandinavica 71(5): 1273-1279
Feitosa, V.P.; Leme, A.A.; Sauro, S.; Correr-Sobrinho, Lço.; Watson, T.F.; Sinhoreti, Mário.A.; Correr, Aérico.B. 2012: Hydrolytic degradation of the resin-dentine interface induced by the simulated pulpal pressure, direct and indirect water ageing. Journal of Dentistry 40(12): 1134-1143
Yamamoto, E.; Gokuden, D.; Nagai, A.; Kamachi, T.; Yoshizawa, K.; Hamasaki, A.; Ishida, T.; Tokunaga, M. 2012: Hydrolytic enantioselective protonation of cyclic dienyl esters and a β-diketone with chiral phase-transfer catalysts. Organic Letters 14(24): 6178-6181
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Nabarlatz, D.; Vondrysova, J.; Jenicek, P.; Stüber, F.; Font, J.; Fortuny, A.í; Fabregat, A.; Bengoa, C. 2010: Hydrolytic enzymes in activated sludge: extraction of protease and lipase by stirring and ultrasonication. Ultrasonics Sonochemistry 17(5): 923-931
Berthiller, F.; Krska, R.; Domig, K.J.; Kneifel, W.; Juge, N.; Schuhmacher, R.; Adam, G. 2011: Hydrolytic fate of deoxynivalenol-3-glucoside during digestion. Toxicology Letters 206(3): 264-267
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Uccello-Barretta, G.; Balzano, F.; Aiello, F.; Vanni, L.; Mori, M.; Menta, S.; Calcaterra, A.; Botta, B. 2015: Hydrolytic inhibition of α-chymotrypsin by 2,8,14,20-tetrakis(D-leucyl-D-valinamido)resorc[4]arenecarboxylic acid: a spectroscopic NMR and computational combined approach. Organic and Biomolecular Chemistry 13(3): 916-924
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Verma, V.; Testero, S.A.; Amini, K.; Wei, W.; Liu, J.; Balachandran, N.; Monoharan, T.; Stynes, S.; Kotra, L.P.; Golemi-Kotra, D. 2011: Hydrolytic mechanism of OXA-58 enzyme, a carbapenem-hydrolyzing class D β-lactamase from Acinetobacter baumannii. Journal of Biological Chemistry 286(43): 37292-37303
Tinoco, A.D.; Eames, E.V.; Incarvito, C.D.; Valentine, A.M. 2008: Hydrolytic metal with a hydrophobic periphery: titanium(IV) complexes of naphthalene-2,3-diolate and interactions with serum albumin. Inorganic Chemistry 47(18): 8380-8390
Legay, R.ém.; Massou, S.ép.; Azéma, J.ël.; Martino, R.; Malet-Martino, M. 2014: Hydrolytic pathway of 5-fluorouracil in aqueous solutions for clinical use. Journal of Pharmaceutical and Biomedical Analysis 98: 446-462
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Xu, Y.; Xie, W.; Miller-Stein, C.M.; Woolf, E.J. 2009: Hydrophilic interaction chromatography/tandem mass spectrometry for the simultaneous determination of three polar non-structurally related compounds, imipenem, cilastatin and an investigational beta-lactamase inhibitor, MK-4698, in biological matrices. Rapid Communications in Mass Spectrometry: Rcm 23(14): 2195-2205
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Hernández-Hernández, O.; Calvillo, I.; Lebrón-Aguilar, R.; Moreno, F.J.; Sanz, M.L. 2012: Hydrophilic interaction liquid chromatography coupled to mass spectrometry for the characterization of prebiotic galactooligosaccharides. Journal of Chromatography. a 1220: 57-67
Nguyen, H.P.; Chandel, N.S.; DeBerardinis, R.J.; Schug, K.A. 2013: Hydrophilic interaction liquid chromatography coupled with MS/MS to detect and quantify dicarboxyethyl glutathione, a metabolic biomarker of the fumarate hydratase deficient cancer cell. Journal of Separation Science 36(20): 3303-3309
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Qin, F.; Zhao, Y.-Y.; Sawyer, M.B.; Li, X.-F. 2008: Hydrophilic interaction liquid chromatography-tandem mass spectrometry determination of estrogen conjugates in human urine. Analytical Chemistry 80(9): 3404-3411
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Kalogria, E.; Pistos, C.; Panderi, I. 2013: Hydrophilic interaction liquid chromatography/positive ion electrospray ionization mass spectrometry method for the quantification of alprazolam and α-hydroxy-alprazolam in human plasma. Journal of Chromatography. B Analytical Technologies in the Biomedical and Life Sciences 942-943: 158-164
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Song, J.Eun.; Phenrat, T.; Marinakos, S.; Xiao, Y.; Liu, J.; Wiesner, M.R.; Tilton, R.D.; Lowry, G.V. 2011: Hydrophobic interactions increase attachment of gum Arabic- and PVP-coated Ag nanoparticles to hydrophobic surfaces. Environmental Science and Technology 45(14): 5988-5995
Lorena Cortez, M.; De Matteis, N.ás.; Ceolín, M.; Knoll, W.; Battaglini, F.; Azzaroni, O. 2014: Hydrophobic interactions leading to a complex interplay between bioelectrocatalytic properties and multilayer meso-organization in layer-by-layer assemblies. Physical Chemistry Chemical Physics: Pccp 16(38): 20844-20855
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Teng, X.; Pu, H.; Möhwald, H.; Sui, J. 2010: Hydrophobic iron oxide and CdSe/ZnS nanocrystal loaded polyglutamate/polyelectrolyte micro- and nanocapsules. Nanoscale 2(10): 2150-2159
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Muhle-Goll, C.; Hoffmann, S.; Afonin, S.; Grage, S.L.; Polyansky, A.A.; Windisch, D.; Zeitler, M.; Bürck, J.; Ulrich, A.S. 2012: Hydrophobic matching controls the tilt and stability of the dimeric platelet-derived growth factor receptor (PDGFR) β transmembrane segment. Journal of Biological Chemistry 287(31): 26178-26186
Deng, D.; Prendergast, D.P.; MacFarlane, J.; Bagatin, R.; Stellacci, F.; Gschwend, P.M. 2013: Hydrophobic meshes for oil spill recovery devices. Acs Applied Materials and Interfaces 5(3): 774-781
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Nakatsuka, K.; Mori, K.; Okada, S.; Ikurumi, S.; Kamegawa, T.; Yamashita, H. 2014: Hydrophobic modification of Pd/SiO2 @single-site mesoporous silicas by triethoxyfluorosilane: enhanced catalytic activity and selectivity for one-pot oxidation. Chemistry 20(27): 8348-8354
Teo, P.Y.; Yang, C.; Hedrick, J.L.; Engler, A.C.; Coady, D.J.; Ghaem-Maghami, S.; George, A.J.T.; Yang, Y.Y. 2013: Hydrophobic modification of low molecular weight polyethylenimine for improved gene transfection. Biomaterials 34(32): 7971-7979
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Yao, B.; Ni, C.; Xiong, C.; Zhu, C.; Huang, B. 2010: Hydrophobic modification of sodium alginate and its application in drug controlled release. Bioprocess and Biosystems Engineering 33(4): 457-463
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Zheng, B.; Wang, K.; Lu, L.; Yu, F.; Cheng, M.; Jiang, S.; Liu, K.; Cai, L. 2014: Hydrophobic mutations in buried polar residues enhance HIV-1 gp41 N-terminal heptad repeat-C-terminal heptad repeat interactions and C-peptides' anti-HIV activity. Aids 28(9): 1251-1260
Korhonen, J.T.; Kettunen, M.; Ras, R.H.A.; Ikkala, O. 2011: Hydrophobic nanocellulose aerogels as floating, sustainable, reusable, and recyclable oil absorbents. Acs Applied Materials and Interfaces 3(6): 1813-1816
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Cai, D.; Gao, W.; He, B.; Dai, W.; Zhang, H.; Wang, X.; Wang, J.; Zhang, X.; Zhang, Q. 2014: Hydrophobic penetrating peptide PFVYLI-modified stealth liposomes for doxorubicin delivery in breast cancer therapy. Biomaterials 35(7): 2283-2294
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