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Biomedical Chemistry: Current Trends and Developments
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Chung, M. C.; Gonçalves, M. F.; Colli, W.; Ferreira, E. I.; Miranda, M. T. M. (1997). Synthesis and in vitro evaluation of potential antichagasic dipeptide prodrugs of primaquine. Journal of Pharmaceutical Sciences, 86, 1127-1131. Collier, J. H.; Segura, T. (2011). Evolving the use of peptides as components of biomaterials. Biomaterials, 32, 4198-4204. Copolovici, D. M.; Langel, K.; Eriste, E.; Langel, Ü. (2014). Cell-penetrating peptides: design, synthesis and applications. ACS Nano, 8, 1972-1994. Cornford, E. M.; Young, D.; Paxton, J. W.; Finlay, G. J.; Wilson, W. R.; Pardridge, W. M. (1992). Melphalan penetration of the blood-brain barrier via the neutral amino acid transporter in tumor-bearing brain. Cancer Research, 52, 138-143. Cui, H.; Webber, M. J.; Stupp, S. I. (2010). Self‐assembly of peptide amphiphiles: From molecules to nanostructures to biomaterials. Peptide Science, 94, 1-18. Cundy, K. C.; Branch, R.; Chernov-Rogan, T.; Dias, T.; Estrada, T.; Hold, K.; Koller, K.; Liu, X.; Mann, A.; Panuwat, M.; Raillard, S. P.; Upadhyay, S.; Wu, Q. Q.; Xiang, J. N.; Yan, H.; Zerangue, N.; Zhou, C. X.; Barrett, R. W.; Gallop, M. A. (2004). XP13512 [(+/-)-1- ([(alphaisobutanoyloxyethox y) carbonyl] aminomethyl)-1-cyclohexane acetic acid], a novel gabapentin prodrug: I. Design, synthesis, enzymatic conversion to gabapentin, and transport by intestinal solute transporters. Journal of Pharmacology and Experimental Therapeutics, 311, 315-323. Cuthbertson, B. J.; Bullesbach E. E.; Fievet, J.; Bachere, E.; Gross, P. S. (2004). A new class (penaeidin class 4) of antimicrobial peptides from the Atlantic white shrimp (Litopenaeus setiferus) exhibits target specificity and an independent proline-richdomain function. Biochemical Journal, 381, 79-86. Curis, E.; Crenn, P.; Cynober, L. (2007). Citrulline and the gut. Current Opinion in Clinical Nutrition and Metabolic Care 10, 620-626. Crombez, L.; Aldrian-Herrada, G.; Konate, K.; Nguyen, Q. N.; McMaster, G. K.; Brasseur, R.; Heitz, F.; Divita, G. (2009). A new potent secondary amphipathic cell-penetrating peptide for siRNA delivery into mammalian cells. Molecular Therapy, 17, 95-103. Derossi, D.; Joliot, A. H.; Chassaing, G.; Prochiantz, A. (1994). The third helix of the Antennapedia homeodomain translocates through biological membranes. Journal of Biological Chemistry, 269, 10444-10450. Destoumieux, D.; Munoz, M.; Bulet, P.; Bachere, E. (2000). Penaeidins, a family of antimicrobial peptides from penaeid shrimp (Crunstacea, Decapoda). Cellular and Molecular Life Sciences, 57, 1260-1271. Duro-Castano, A.; Conejos-Sánchez, I.; Vicent, M. J. (2014). Peptide-Based Polymer Therapeutics. Polymers, 6, 515-551. Ekengren, S.; Hultmark, D. (1999). Drosophila cecropin as an antifungal agent. Insect Biochemistry and Molecular Biology, 29, 965-972. El-Andaloussi, S.; Johansson, H. J.; Holm, T.; Langel, U. (2007). A novel cell-penetrating peptide, M918, for efficient delivery of proteins and peptide nucleic acids. Molecular Therapy, 15, 1820-1826. Elliott, G.; O’Hare, P. (1997). Intercellular trafficking and protein delivery by a herpesvirus structural protein. Cell 88, 223-233. Ezzat, K.; Andaloussi, S. E. L.; Zaghloul, E. M.; Lehto, T.; Lindber, S.; Moreno, P. M. D.; Viola, J.
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Biomedical Chemistry: Current Trends and Developments
Titel
Biomedical Chemistry: Current Trends and Developments
Autor
Nuno Vale
Verlag
De Gruyter Open Ltd
Datum
2016
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-11-046887-8
Abmessungen
21.0 x 29.7 cm
Seiten
427
Schlagwörter
Physical Sciences, Engineering and Technology, Chemistry, Organic Chemistry, Green Chemistry
Kategorien
Naturwissenschaften Chemie
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Biomedical Chemistry: Current Trends and Developments