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Philip, A.; Kepler, J. A.; Johnson, B. H.; Carrol, F. I. (1988). Peptide derivatives of primaquine as
potential antimalarial agents. Journal of Medicinal Chemistry, 31, 870-874.
Pichereau, C.; Allary, C. (2005). Therapeutic peptides under the spotlight. European
Biopharmaceutical Review Winter Issue, 88-91.
Pochan, D. J.; Schneider, J. P.; Kretsinger, J.; Ozbas, B.; Rajagopal, K.; Haines, L. (2003).
Thermally reversible hydrogels via intramolecular folding and consequent self-assembly of a
de novo designed peptide. Journal of the American Chemical Society, 125, 11802-11803.
Pochopin, N. L.; Charman, W. N.; Stella, V. J. (1995). Amino acid derivatives of dapsone as water-
soluble prodrugs. International Journal of Pharmaceutics, 121, 157-167.
Pooga, M.; Hällbrink, M.; Zorko, M.; Langel, Ü. (1998). Cell penetration by transportan. The
FASEB Journal, 12, 67-77.
Portela, M. J.; Moreira, R.; Valente, E.; Constantino, L.; Iley, J.; Pinto, J.; Rosa, R.; Cravo, P.;
Rosário, V. E. (1999). Dipeptide Derivatives of Primaquine as Transmission-Blocking
Antimalarials: Effect of Aliphatic Side-Chain Acylation on the Gametocytocidal Activity and
on the Formation of Carboxyprimaquine in Rat Liver Homogenates. Pharmaceutical
Research, 16, 949-955.
Pouny, Y.; Rapaport, D.; Mor, A.; Nicolas, P.; Shai, Y. (1992). Interaction of antimicrobial
dermaseptin and its fluorescently labeled analogues with phospholipid membranes.
Biochemistry, 31, 12416-12423.
Powers, J. -P. S. and Hancock, R. E. W. (2003). The relationship between peptide structure and
antibacterial activity. Peptides, 24, 1681-1691.
Pretzel, J.; Mohring, F.; Rahlfs, S.; Becker, K. (2013). Antiparasitic peptides. Advances in
Biochemical Engineering Biotechnology, 135, 157-192.
Raghuraman, H.; Chattopadhyay, A. (2007). Melittin: a membrane-active peptide with diverse
functions. Bioscience Reports, 27, 189-223.
Rasheed, A.; Kumar, C. K.; Mishra, A. (2011). Synthesis, hydrolysis studies and phamacodynamic
profiles of amide prodrugs of dexibuprofen with amino acids. Journal of Enzyme Inhibition
and Medicinal Chemistry, 26, 688-695.
Rautio, J.; Nevalainen, T.; Taipale, H.; Vepsalainen, J.; Gynther, J.; Pedersen, T.; Jarvinen, T.
(1999). Synthesis and in vitro evaluation of aminoacyloxyalkyl esters of 2-(6-ethoxy-2-
naphthyl) propionic acid as novel naproxen prodrugs for dermal drug delivery.
Pharmaceutical Research, 16, 1172-1178.
Rowley, J. A.; Madlambayan, G.; Mooney, D. J. (1999). Alginate hydrogels as synthetic
extracellular matrix materials. Biomaterials, 20, 45-53.
Ruoslahti, E.; Pierschbacher, M. (1987). New perspectives in cell adhesion: RGD and integrins.
Science 238, 491-497.
Säälik, P.; Elmquist, A.; Hansen, M.; Padari, K.; Saar, K.; Viht, K.; Langel, Ü.; Pooga, M. (2004).
Protein cargo delivery properties of cell-penetrating peptides. A comparative study.
Bioconjugate Chemistry, 15(2004), 1246-1253.
Sanderson, J. M. (2005). Peptide-lipid interactions: insights and perspectives. Organic
Biomolecular Chemistry, 3, 201-212.
Santos, C.; Mateus, M. L.; Santos, A. P.; Moreira, R.; Oliveira, E.; Gomes, P. (2005). Cyclization-
activated prodrugs. Synthesis, reactivity and toxicity of dipeptide esters of paracetamol.
Bioorganic and Medicinal Chemistry Letter, 15, 1595-1598.
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