Section 52

EurekaMag Full Text Articles Chapter 51,806


Khoo, H.H.; Koh, C.Y.; Shaik, M.S.; Sharratt, P.N. 2013: Bioenergy co-products derived from microalgae biomass via thermochemical conversion--life cycle energy balances and CO2 emissions. Bioresource Technology 143: 298-307
Nabity, P.D.; Zangerl, A.R.; Berenbaum, M.R.; DeLucia, E.H. 2011: Bioenergy crops Miscanthus x giganteus and Panicum virgatum reduce growth and survivorship of Spodoptera frugiperda (Lepidoptera: Noctuidae). Journal of Economic Entomology 104(2): 459-464
Cherubini, F.; Guest, G.; Strømman, A.H. 2013: Bioenergy from forestry and changes in atmospheric CO2: reconciling single stand and landscape level approaches. Journal of Environmental Management 129: 292-301
Prochnow, A.; Heiermann, M.; Plöchl, M.; Linke, B.; Idler, C.; Amon, T.; Hobbs, P.J. 2009: Bioenergy from permanent grassland--a review: 1. Biogas. Bioresource Technology 100(21): 4931-4944
Prochnow, A.; Heiermann, M.; Plöchl, M.; Amon, T.; Hobbs, P.J. 2009: Bioenergy from permanent grassland--a review: 2. Combustion. Bioresource Technology 100(21): 4945-4954
Herr, J.R. 2011: Bioenergy from trees. New Phytologist 192(2): 313-315
Littlefield, C.E.; Keeton, W.S. 2012: Bioenergy harvesting impacts on ecologically important stand structure and habitat characteristics. Ecological Applications: a Publication of the Ecological Society of America 22(7): 1892-1909
Levin, J.; Mead, L. 2008: Bioenergy healing: a theoretical model and case series. Explore 4(3): 201-209
Stewart, C.N.; Liu, G.-S. 2011: Bioenergy plants in the United States and China. Plant Science: An International Journal of Experimental Plant Biology 181(6): 621-622
Parry, M.A.J.; Jing, H.-C. 2011: Bioenergy plants: Hopes, concerns and prospectives. Journal of Integrative Plant Biology 53(2): 94-95
Bruhn, A.; Dahl, J.; Nielsen, H.B.ø; Nikolaisen, L.; Rasmussen, M.B.; Markager, S.; Olesen, B.; Arias, C.; Jensen, P.D. 2011: Bioenergy potential of Ulva lactuca: biomass yield, methane production and combustion. Bioresource Technology 102(3): 2595-2604
Smith, W.K.; Cleveland, C.C.; Reed, S.C.; Miller, N.L.; Running, S.W. 2012: Bioenergy potential of the United States constrained by satellite observations of existing productivity. Environmental Science and Technology 46(6): 3536-3544
Jaxybayeva, A.; Yangin-Gomec, C.; Cetecioglu, Z.; Ozbayram, E.Gozde.; Yilmaz, F.; Ince, O. 2014: Bioenergy production from diluted poultry manure and microbial consortium inside Anaerobic Sludge Bed Reactor at sub-mesophilic conditions. Journal of Environmental Science and Health. Part. B Pesticides Food Contaminants and Agricultural Wastes 49(10): 775-785
Tonini, D.; Hamelin, L.; Wenzel, H.; Astrup, T. 2012: Bioenergy production from perennial energy crops: a consequential LCA of 12 bioenergy scenarios including land use changes. Environmental Science and Technology 46(24): 13521-13530
Aceves-Lara, C.és.A.; Trably, E.; Bastidas-Oyenadel, J.-R.; Ramirez, I.; Latrille, E.; Steyer, J.-P. 2008: Bioenergy production from waste: examples of biomethane and biohydrogen. Journal de la Societe de Biologie 202(3): 177-189
Dirian, K.; Bauroth, S.; Roth, A.; Syrgiannis, Z.; Rigodanza, F.; Burian, M.; Amenitsch, H.; Sharapa, D.I.; Prato, M.; Clark, T.; Guldi, D.M. 2018: A water-soluble, bay-functionalized perylenediimide derivative - correlating aggregation and excited state dynamics. Nanoscale 10(5): 2317-2326
Kalluri, U.C.; Keller, M. 2010: Bioenergy research: a new paradigm in multidisciplinary research. Journal of the Royal Society Interface 7(51): 1391-1401
Amato, S.; Man, H.-Y. 2011: Bioenergy sensing in the brain: the role of AMP-activated protein kinase in neuronal metabolism, development and neurological diseases. Cell Cycle 10(20): 3452-3460
Zhuang, J.; Gentry, R.W.; Yu, G.-R.; Sayler, G.S.; Bickham, J.W. 2010: Bioenergy sustainability in China: potential and impacts. Environmental Management 46(4): 525-530
Schröder, P.; Herzig, R.; Bojinov, B.; Ruttens, A.; Nehnevajova, E.; Stamatiadis, S.; Memon, A.; Vassilev, A.; Caviezel, M.; Vangronsveld, J. 2008: Bioenergy to save the world. Producing novel energy plants for growth on abandoned land. Environmental Science and Pollution Research International 15(3): 196-204
Ren, H.; Li, Z.'a.; Guo, Q.; Wang, Q. 2008: Bioenergy: future direction of China's energy and environment integrated strategy?. Ambio 37(2): 136-138
Weichert, S.; Jennewein, S.; Hüfner, E.; Weiss, C.; Borkowski, J.; Putze, J.; Schroten, H. 2013: Bioengineered 2'-fucosyllactose and 3-fucosyllactose inhibit the adhesion of Pseudomonas aeruginosa and enteric pathogens to human intestinal and respiratory cell lines. Nutrition Research 33(10): 831-838
Wang, C.; Tong, X.; Yang, F. 2014: Bioengineered 3D brain tumor model to elucidate the effects of matrix stiffness on glioblastoma cell behavior using PEG-based hydrogels. Molecular Pharmaceutics 11(7): 2115-2125
DesRochers, T.M.; Suter, L.; Roth, A.; Kaplan, D.L. 2013: Bioengineered 3D human kidney tissue, a platform for the determination of nephrotoxicity. Plos one 8(3): E59219
Loessner, D.; Stok, K.S.; Lutolf, M.P.; Hutmacher, D.W.; Clements, J.A.; Rizzi, S.C. 2010: Bioengineered 3D platform to explore cell-ECM interactions and drug resistance of epithelial ovarian cancer cells. Biomaterials 31(32): 8494-8506
Datta, P.; Li, G.; Yang, B.; Zhao, X.; Baik, J.Y.; Gemmill, T.R.; Sharfstein, S.T.; Linhardt, R.J. 2013: Bioengineered Chinese hamster ovary cells with Golgi-targeted 3-O-sulfotransferase-1 biosynthesize heparan sulfate with an antithrombin-binding site. Journal of Biological Chemistry 288(52): 37308-37318
Mohsina, A.; Kumar, N.; Sharma, A.K.; Mishra, B.; Mathew, D.D.; Remya, V.; Shrivastava, S.; Negi, M.; Kritaniya, D.; Tamil Mahan, P.; Maiti, S.K.; Shrivastava, S.; Singh, K.P. 2015: Bioengineered acellular dermal matrices for the repair of abdominal wall defects in rats. Hernia: the Journal of Hernias and Abdominal Wall Surgery 19(2): 219-229
Cook, E.A.; Cook, J.J.; Badri, H.; Mostafa, J. 2014: Bioengineered alternative tissues. Clinics in Podiatric Medicine and Surgery 31(1): 89-101
Kim, P.J.; Heilala, M.; Steinberg, J.S.; Weinraub, G.M. 2007: Bioengineered alternative tissues and hyperbaric oxygen in lower extremity wound healing. Clinics in Podiatric Medicine and Surgery 24(3): 529
Glazer, E.S.; Kaluarachchi, W.D.; Massey, K.L.; Zhu, C.; Curley, S.A. 2010: Bioengineered arginase i increases caspase-3 expression of hepatocellular and pancreatic carcinoma cells despite induction of argininosuccinate synthetase-1. Surgery 148(2): 310-318
Gujrati, V.; Kim, S.; Kim, S.-H.; Min, J.J.; Choy, H.E.; Kim, S.C.; Jon, S. 2014: Bioengineered bacterial outer membrane vesicles as cell-specific drug-delivery vehicles for cancer therapy. Acs Nano 8(2): 1525-1537
Gujrati, V.B.; Jon, S. 2014: Bioengineered bacterial outer membrane vesicles: what is their potential in cancer therapy?. Nanomedicine 9(7): 933-935
Paul, A.; Hasan, A.; Rodes, L.; Sangaralingam, M.; Prakash, S. 2014: Bioengineered baculoviruses as new class of therapeutics using micro and nanotechnologies: principles, prospects and challenges. Advanced Drug Delivery Reviews 71: 115-130
Roda, A.; Cevenini, L.; Borg, S.; Michelini, E.; Calabretta, M.M.; Schüler, D. 2013: Bioengineered bioluminescent magnetotactic bacteria as a powerful tool for chip-based whole-cell biosensors. Lab on a Chip 13(24): 4881-4889
Niu, G.; Sapoznik, E.; Soker, S. 2014: Bioengineered blood vessels. Expert Opinion on Biological Therapy 14(4): 403-410
Sharp, L.A. 2009: Bioengineered bodies and the moral imagination. Lancet 374(9694): 970-971
Anonymous 1993: Bioengineered bubbly. Science 260(5104): 27
Paton, A.W.; Morona, R.; Paton, J.C. 2010: Bioengineered bugs expressing oligosaccharide receptor mimics: toxin-binding probiotics for treatment and prevention of enteric infections. Bioengineered Bugs 1(3): 172-177
Chakrabarty, A.M. 2010: Bioengineered bugs, drugs and contentious issues in patenting. Bioengineered Bugs 1(1): 2-8
Wei, H.-J.; Chen, C.-H.; Lee, W.-Y.; Chiu, I.; Hwang, S.-M.; Lin, W.-W.; Huang, C.-C.; Yeh, Y.-C.; Chang, Y.; Sung, H.-W. 2008: Bioengineered cardiac patch constructed from multilayered mesenchymal stem cells for myocardial repair. Biomaterials 29(26): 3547-3556
Ramshaw, J.A.M.; Werkmeister, J.A.; Dumsday, G.J. 2014: Bioengineered collagens: emerging directions for biomedical materials. Bioengineered 5(4): 227-233
McLaughlin, C.R.; Tsai, R.J.-F.; Latorre, M.A.; Griffith, M. 2009: Bioengineered corneas for transplantation and in vitro toxicology. Frontiers in Bioscience 14(9): 3326-3337
Chen, K.-L.; Eberli, D.; Yoo, J.J.; Atala, A. 2010: Bioengineered corporal tissue for structural and functional restoration of the penis. Proceedings of the National Academy of Sciences of the United States of America 107(8): 3346-3350
Brunetti-Pierri, N.; Grove, N.C.; Zuo, Y.; Edwards, R.; Palmer, D.; Cerullo, V.; Teruya, J.; Ng, P. 2009: Bioengineered factor IX molecules with increased catalytic activity improve the therapeutic index of gene therapy vectors for hemophilia B. Human gene therapy 20(5): 479-485
Camire, R.M. 2012: Bioengineered factor Xa as a potential new strategy for hemophilia therapy. Expert Review of Hematology 5(2): 121-123
Tang-Schomer, M.D.; White, J.D.; Tien, L.W.; Schmitt, L.I.; Valentin, T.M.; Graziano, D.J.; Hopkins, A.M.; Omenetto, F.G.; Haydon, P.G.; Kaplan, D.L. 2014: Bioengineered functional brain-like cortical tissue. Proceedings of the National Academy of Sciences of the United States of America 111(38): 13811-13816
Nichterwitz, S.; Hoffmann, N.; Hajosch, R.; Oberhoffner, S.; Schlosshauer, B. 2010: Bioengineered glial strands for nerve regeneration. Neuroscience Letters 484(2): 118-122
Lord, M.S.; Whitelock, J.M. 2014: Bioengineered heparin: is there a future for this form of the successful therapeutic?. Bioengineered 5(4): 222-226
Glazer, E.S.; Stone, E.M.; Zhu, C.; Massey, K.L.; Hamir, A.N.; Curley, S.A. 2011: Bioengineered human arginase i with enhanced activity and stability controls hepatocellular and pancreatic carcinoma xenografts. Translational Oncology 4(3): 138-146
Schlüter, H.; Kaur, P. 2009: Bioengineered human skin from embryonic stem cells. Lancet 374(9703): 1725-1726
Villasante, A.; Marturano-Kruik, A.; Vunjak-Novakovic, G. 2014: Bioengineered human tumor within a bone niche. Biomaterials 35(22): 5785-5794
Kang, K.-T.; Allen, P.; Bischoff, J. 2011: Bioengineered human vascular networks transplanted into secondary mice reconnect with the host vasculature and re-establish perfusion. Blood 118(25): 6718-6721
Alijotas-Reig, J.; Hindié, M.; Kandhaya-Pillai, R.; Miro-Mur, F. 2010: Bioengineered hyaluronic acid elicited a nonantigenic T cell activation: implications from cosmetic medicine and surgery to nanomedicine. Journal of Biomedical Materials Research. Part a 95(1): 180-190
Bersani, F.; Lee, J.; Yu, M.; Morris, R.; Desai, R.; Ramaswamy, S.; Toner, M.; Haber, D.A.; Parekkadan, B. 2014: Bioengineered implantable scaffolds as a tool to study stromal-derived factors in metastatic cancer models. Cancer Research 74(24): 7229-7238
Somara, S.; Gilmont, R.R.; Dennis, R.G.; Bitar, K.N. 2009: Bioengineered internal anal sphincter derived from isolated human internal anal sphincter smooth muscle cells. Gastroenterology 137(1): 53-61
Kuppe, C.; Berger, K.; Smeets, B. 2014: Bioengineered kidneys: new sights on a distant horizon. International Urology and Nephrology 46(2): 477-480
Griswold, K.E.; Bement, J.L.; Teneback, C.C.; Scanlon, T.C.; Wargo, M.J.; Leclair, L.W. 2014: Bioengineered lysozyme in combination therapies for Pseudomonas aeruginosa lung infections. Bioengineered 5(2): 143-147
Teneback, C.C.; Scanlon, T.C.; Wargo, M.J.; Bement, J.L.; Griswold, K.E.; Leclair, L.W. 2013: Bioengineered lysozyme reduces bacterial burden and inflammation in a murine model of mucoid Pseudomonas aeruginosa lung infection. Antimicrobial Agents and ChemoTherapy 57(11): 5559-5564
Widgerow, A.D. 2012: Bioengineered matrices--part 1: attaining structural success in biologic skin substitutes. Annals of Plastic Surgery 68(6): 568-573
Widgerow, A.D. 2012: Bioengineered matrices--part 2: focal adhesion, integrins, and the fibroblast effect. Annals of Plastic Surgery 68(6): 574-578
Miki, K.; Uenaka, H.; Saito, A.; Miyagawa, S.; Sakaguchi, T.; Higuchi, T.; Shimizu, T.; Okano, T.; Yamanaka, S.; Sawa, Y. 2012: Bioengineered myocardium derived from induced pluripotent stem cells improves cardiac function and attenuates cardiac remodeling following chronic myocardial infarction in rats. Stem Cells Translational Medicine 1(5): 430-437
Kozielski, K.L.; Tzeng, S.Y.; Green, J.J. 2013: Bioengineered nanoparticles for siRNA delivery. Wiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology 5(5): 449-468
Field, D.; Begley, M.; O'Connor, P.M.; Daly, K.M.; Hugenholtz, F.; Cotter, P.D.; Hill, C.; Ross, R.P. 2012: Bioengineered nisin a derivatives with enhanced activity against both Gram positive and Gram negative pathogens. Plos one 7(10): E46884
Du, L.; Wu, C.; Peng, H.; Zhao, L.; Huang, L.; Wang, P. 2013: Bioengineered olfactory sensory neuron-based biosensor for specific odorant detection. Biosensors and Bioelectronics 40(1): 401-406
Lin, Y.; Gallucci, G.O.; Buser, D.; Bosshardt, D.; Belser, U.C.; Yelick, P.C. 2011: Bioengineered periodontal tissue formed on titanium dental implants. Journal of Dental Research 90(2): 251-256
Chang, C.-H.; Chen, C.-H.; Liu, H.-W.; Whu, S.-W.; Chen, S.-H.; Tsai, C.-L.; Hsiue, G.-H. 2012: Bioengineered periosteal progenitor cell sheets to enhance tendon-bone healing in a bone tunnel. Biomedical Journal 35(6): 473-480
Zhang, W.; Vázquez, B.; Yelick, P.C. 2017: Bioengineered post-natal recombinant tooth bud models. Journal of Tissue Engineering and Regenerative Medicine 11(3): 658-668
Hsieh, V.; Jasanoff, A. 2012: Bioengineered probes for molecular magnetic resonance imaging in the nervous system. Acs Chemical Neuroscience 3(8): 593-602
Amalaradjou, M.A.R.; Bhunia, A.K. 2013: Bioengineered probiotics, a strategic approach to control enteric infections. Bioengineered 4(6): 379-387
Nomoto, Y.; Okano, W.; Imaizumi, M.; Tani, A.; Nomoto, M.; Omori, K. 2012: Bioengineered prosthesis with allogenic heterotopic fibroblasts for cricoid regeneration. Laryngoscope 122(4): 805-809
Rubiolo, J.A.; López-Alonso, H.; Alfonso, A.; Vega, Félix.V.; Vieytes, M.Rodríguez.; Botana, L.M. 2013: Bioengineered protein phosphatase 2A: update on need. Bioengineered 4(2): 72-77
Wang, M.; Zhai, P.; Chen, X.; Schreyer, D.J.; Sun, X.; Cui, F. 2011: Bioengineered scaffolds for spinal cord repair. Tissue Engineering. Part B Reviews 17(3): 177-194
Wang, Y.; Cooke, M.J.; Sachewsky, N.; Morshead, C.M.; Shoichet, M.S. 2013: Bioengineered sequential growth factor delivery stimulates brain tissue regeneration after stroke. Journal of Controlled Release: Official Journal of the Controlled Release Society 172(1): 1-11
Yigit, S.; Tokareva, O.; Varone, A.; Georgakoudi, I.; Kaplan, D.L. 2014: Bioengineered silk gene delivery system for nuclear targeting. Macromolecular Bioscience 14(9): 1291-1298
Numata, K.; Subramanian, B.; Currie, H.A.; Kaplan, D.L. 2009: Bioengineered silk protein-based gene delivery systems. Biomaterials 30(29): 5775-5784
Preda, R.C.; Leisk, G.; Omenetto, F.; Kaplan, D.L. 2013: Bioengineered silk proteins to control cell and tissue functions. Methods in Molecular Biology 996: 19-41
Vériter, S.; Gianello, P.; Dufrane, D. 2013: Bioengineered sites for islet cell transplantation. Current Diabetes Reports 13(5): 745-755
Brasile, L.; Glowacki, P.; Stubenitsky, B.M. 2011: Bioengineered skin allografts: a new method to prevent humoral response. Asaio Journal 57(3): 239-243
Anonymous 2009: Bioengineered skin and stem cells show promise in treatment of non-healing wounds. Dermatology nursing 21(5): 304-305
Lazic, T.; Falanga, V. 2011: Bioengineered skin constructs and their use in wound healing. Plastic and Reconstructive Surgery 127(Suppl 1): 75s-90s
Nicoletti, G.; Scevola, S.; Faga, A. 2008: Bioengineered skin for aesthetic reconstruction of the tip of the nose: a case report. Dermatologic Surgery: Official Publication for American Society for Dermatologic Surgery 34(9): 1283-1287
Carretero, M.; Guerrero-Aspizua, S.; Del Río, M. 2013: Bioengineered skin humanized model of psoriasis. Methods in Molecular Biology 961: 305-323
Teng, Y.J.; Li, Y.P.; Wang, J.W.; Yang, K.H.; Zhang, Y.C.; Wang, Y.J.; Tian, J.H.; Ma, B.; Wang, J.M.; Yan, X. 2010: Bioengineered skin in diabetic foot ulcers. Diabetes Obesity and Metabolism 12(4): 307-315
Widgerow, A.D. 2014: Bioengineered skin substitute considerations in the diabetic foot ulcer. Annals of Plastic Surgery 73(2): 239-244
Lei, P.; You, H.; Andreadis, S.T. 2013: Bioengineered skin substitutes. Methods in Molecular Biology 1001: 267-278
Pham, C.; Greenwood, J.; Cleland, H.; Woodruff, P.; Maddern, G. 2007: Bioengineered skin substitutes for the management of burns: a systematic review. Burns: Journal of the International Society for Burn Injuries 33(8): 946-957
Lu, G.; Huang, S. 2013: Bioengineered skin substitutes: key elements and novel design for biomedical applications. International Wound Journal 10(4): 365-371
Trubelja, A.; MacArthur, J.W.; Sarver, J.J.; Cohen, J.E.; Hung, G.; Shudo, Y.; Fairman, A.S.; Patel, J.; Edwards, B.B.; Damrauer, S.M.; Hiesinger, W.; Atluri, P.; Woo, Y.J. 2014: Bioengineered stromal cell-derived factor-1α analogue delivered as an angiogenic therapy significantly restores viscoelastic material properties of infarcted cardiac muscle. Journal of Biomechanical Engineering 136(8)
Parreira, P.; Magalhães, A.; Reis, C.A.; Borén, T.; Leckband, D.; Martins, M.C.L. 2013: Bioengineered surfaces promote specific protein-glycan mediated binding of the gastric pathogen Helicobacter pylori. Acta Biomaterialia 9(11): 8885-8893
Freitas, S.C.; Cereija, T.B.; Figueiredo, A.C.; Osório, H.; Pereira, P.J.B.; Barbosa, M.A.; Martins, M.C.L. 2012: Bioengineered surfaces to improve the blood compatibility of biomaterials through direct thrombin inactivation. Acta Biomaterialia 8(11): 4101-4110
Raghavan, S.; Lam, M.T.; Foster, L.L.; Gilmont, R.R.; Somara, S.; Takayama, S.; Bitar, K.N. 2010: Bioengineered three-dimensional physiological model of colonic longitudinal smooth muscle in vitro. Tissue Engineering. Part C Methods 16(5): 999-1009
Iwasaki, K.; Kojima, K.; Kodama, S.; Paz, A.C.; Chambers, M.; Umezu, M.; Vacanti, C.A. 2008: Bioengineered three-layered robust and elastic artery using hemodynamically-equivalent pulsatile bioreactor. Circulation 118(14): S52-S57
Murphy, K.D.; McGoldrick, C.; Khan, K. 2009: Bioengineered tissue substitutes in implant extrusion. Journal of Plastic Reconstructive and Aesthetic Surgery: Jpras 62(12): E658-E660
Isaac, J.; Galtayries, A.; Kizuki, T.; Kokubo, T.; Berda, A.; Sautier, J.-M. 2010: Bioengineered titanium surfaces affect the gene-expression and phenotypic response of osteoprogenitor cells derived from mouse calvarial bones. European Cells and Materials 20: 178-196
Nomoto, M.; Nomoto, Y.; Tada, Y.; Tani, A.; Otsuki, K.; Suzuki, R.; Nakamura, T.; Omori, K. 2013: Bioengineered trachea using autologous chondrocytes for regeneration of tracheal cartilage in a rabbit model. Laryngoscope 123(9): 2195-2201
Okano, W.; Nomoto, Y.; Wada, I.; Kobayashi, K.; Miyake, M.; Nakamura, T.; Omori, K. 2009: Bioengineered trachea with fibroblasts in a rabbit model. Annals of Otology Rhinology and Laryngology 118(11): 796-804
Meng, F.; Sana, B.; Li, Y.; Liu, Y.; Lim, S.; Chen, X. 2014: Bioengineered tunable memristor based on protein nanocage. Small 10(2): 277-283
Tillman, B.W.; Yazdani, S.K.; Neff, L.P.; Corriere, M.A.; Christ, G.J.; Soker, S.; Atala, A.; Geary, R.L.; Yoo, J.J. 2012: Bioengineered vascular access maintains structural integrity in response to arteriovenous flow and repeated needle puncture. Journal of Vascular Surgery 56(3): 783-793
Song, L.; Wang, L.; Shah, P.K.; Chaux, A.; Sharifi, B.G. 2010: Bioengineered vascular graft grown in the mouse peritoneal cavity. Journal of Vascular Surgery 52(4): 994
Dahl, S.L.M.; Blum, J.L.; Niklason, L.E. 2011: Bioengineered vascular grafts: can we make them off-the-shelf?. Trends in Cardiovascular Medicine 21(3): 83-89
Palumbo, V.D.; Bruno, A.; Tomasello, G.; Damiano, G.; Lo Monte, A.I. 2014: Bioengineered vascular scaffolds: the state of the art. International Journal of Artificial Organs 37(7): 503-512
Buehler, D.C.; Marsden, M.D.; Shen, S.; Toso, D.B.; Wu, X.; Loo, J.A.; Zhou, Z.Hong.; Kickhoefer, V.A.; Wender, P.A.; Zack, J.A.; Rome, L.H. 2014: Bioengineered vaults: self-assembling protein shell-lipophilic core nanoparticles for drug delivery. Acs Nano 8(8): 7723-7732
Zhang, K.-x.; Jia, W.; Rennie, P.S. 2010: Bioengineered viral vectors for targeting and killing prostate cancer cells. Bioengineered Bugs 1(2): 92-96
Alemany-Ribes, M.; Semino, C.E. 2014: Bioengineering 3D environments for cancer models. Advanced Drug Delivery Reviews 79-80: 40-49
Kumaresan, P.R.; Manuri, P.R.; Albert, N.D.; Maiti, S.; Singh, H.; Mi, T.; Roszik, J.; Rabinovich, B.; Olivares, S.; Krishnamurthy, J.; Zhang, L.; Najjar, A.M.; Huls, M.H.; Lee, D.A.; Champlin, R.E.; Kontoyiannis, D.P.; Cooper, L.J.N. 2014: Bioengineering T cells to target carbohydrate to treat opportunistic fungal infection. Proceedings of the National Academy of Sciences of the United States of America 111(29): 10660-10665
Ellis, C.E.; Vulesevic, B.; Suuronen, E.; Yeung, T.; Seeberger, K.; Korbutt, G.S. 2013: Bioengineering a highly vascularized matrix for the ectopic transplantation of islets. Islets 5(5): 216-225
Chik, T.K.; Chooi, W.H.; Li, Y.Y.; Ho, F.C.; Cheng, H.W.; Choy, T.H.; Sze, K.Y.; Luk, K.K.D.; Cheung, K.M.C.; Chan, B.P. 2015: Bioengineering a multicomponent spinal motion segment construct--a 3D model for complex tissue engineering. Advanced Healthcare Materials 4(1): 99-112
Vallera, D.A.; Oh, S.; Chen, H.; Shu, Y.; Frankel, A.E. 2010: Bioengineering a unique deimmunized bispecific targeted toxin that simultaneously recognizes human CD22 and CD19 receptors in a mouse model of B-cell metastases. Molecular Cancer Therapeutics 9(6): 1872-1883
Kaufmann, M.; Prosser, D.E.; Jones, G. 2011: Bioengineering anabolic vitamin D-25-hydroxylase activity into the human vitamin D catabolic enzyme, cytochrome P450 CYP24A1, by a V391L mutation. Journal of Biological Chemistry 286(33): 28729-28737
Hendee, W.R.; Cleary, K.; Ehman, R.L.; Fullerton, G.D.; Grundfest, W.S.; Haller, J.; Kelley, C.A.; Meyer, A.E.; Murphy, R.F.; Phillips, W.; Torchilin, V.P. 2008: Bioengineering and Imaging Research Opportunities Workshop V: a summary on Imaging and Characterizing Structure and Function in Native and Engineered Tissues. Cytometry. Part A: the Journal of the International Society for Analytical Cytology 73(9): 779-784
Hendee, W.; Cleary, K.; Ehman, R.; Fullerton, G.; Grundfest, W.; Haller, J.; Kelley, C.; Meyer, A.; Murphy, R.F.; Phillips, W.; Torchilin, V. 2008: Bioengineering and Imaging Research Opportunities Workshop V: a white paper on imaging and characterizing structure and function in native and engineered tissues. Medical Physics 35(8): 3428-3435
Hendee, W.R.; Cleary, K.; Ehman, R.L.; Fullerton, G.D.; Grundfest, W.S.; Haller, J.; Kelley, C.; Meyer, A.E.; Murphy, R.F.; Phillips, W.; Torchilin, V.P. 2008: Bioengineering and imaging research opportunities workshop V: a summary. Annals of Biomedical Engineering 36(8): 1315-1321
Hendee, W.R.; Cleary, K.; Ehman, R.L.; Fullerton, G.D.; Grundfest, W.S.; Haller, J.; Kelley, C.A.; Meyer, A.E.; Murphy, R.F.; Phillips, W.; Torchilin, V.P. 2008: Bioengineering and imaging research opportunities workshop V: summary of findings on imaging and characterizing structure and function in native and engineered tissues. Radiology 248(2): 342-347
Tian, J.; Wang, X.; Tong, Y.; Chen, X.; Liao, H. 2012: Bioengineering and management for efficient phosphorus utilization in crops and pastures. Current Opinion in Biotechnology 23(6): 866-871
Byrne, A.J. 2010: Bioengineering and subjective approaches to the clinical evaluation of dry skin. International Journal of Cosmetic Science 32(6): 410-421
Nerem, R.M. 2013: Bioengineering and the cardiovascular system. Global Cardiology Science and Practice 1: 29-36
Xu, M.; Woodruff, T.K.; Shea, L.D. 2007: Bioengineering and the ovarian follicle. Cancer Treatment and Research 138: 75-82
Robins, J.C.; Morgan, J.R.; Krueger, P.; Carson, S.A. 2011: Bioengineering anembryonic human trophoblast vesicles. Reproductive Sciences 18(2): 128-135
Gjorevski, N.; Ranga, A.; Lutolf, M.P. 2014: Bioengineering approaches to guide stem cell-based organogenesis. Development 141(9): 1794-1804
Lavik, E. 2012: Bioengineering approaches to nervous system repair. Neuroscience Letters 519(2): 85-86
Fallica, B.; Makin, G.; Zaman, M.H. 2011: Bioengineering approaches to study multidrug resistance in tumor cells. Integrative Biology: Quantitative Biosciences from Nano to Macro 3(5): 529-539
Ferguson, V.L.; Dodson, R.B. 2009: Bioengineering aspects of the umbilical cord. European Journal of Obstetrics Gynecology and Reproductive Biology 144(Suppl 1): S108-S113
Litscher, G. 2007: Bioengineering assessment of acupuncture, Part 6: monitoring--neurophysiology. Critical Reviews in Biomedical Engineering 35(1-2): 1-36
Litscher, G. 2006: Bioengineering assessment of acupuncture, part 5: cerebral near-infrared spectroscopy. Critical Reviews in Biomedical Engineering 34(6): 439-457
Litscher, G. 2007: Bioengineering assessment of acupuncture, part 7: heart rate variability. Critical Reviews in Biomedical Engineering 35(3-4): 183-195
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