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full issue - Association of Biotechnology and Pharmacy

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Current Trends in <strong>Biotechnology</strong> <strong>and</strong> <strong>Pharmacy</strong>Vol. 5 (2) 1084-1097 April 2011. ISSN 0973-8916 (Print), 2230-7303 (Online)10952508 loaded PLGA nanoparticles. J.Nanoparticle Researc, 10:1045-1052.11. Cegnar, M., Premzl, A., Zavasnik-Bergant,V., Kristl, J. <strong>and</strong> Kos, J. (2004). Poly(lactideco-glycolide)nanoparticles as a carriersystem for delivering cysteine proteaseinhibitor cystatin into tumor cells.Experimental Cell Research, 301: 223-231.12. Kawashima, Y., Yamamoto, H., Takeuchi,H., Fujioka, S. <strong>and</strong> Hino T. (1999).Pulmonary delivery <strong>of</strong> insulin with nebulizedDL- lactide / glycolide copolymer (PLGA)nanosphere to prolong hypoglycemic effect,J. Control. Rel. 62: 279-287.13. Bilati, U., Allemann, E. <strong>and</strong> Doelker, E.(2005). Strategic approaches forovercoming peptide <strong>and</strong> protein instabilitywithin biodegradable nano- <strong>and</strong>microparticles. Eur. J. Pharm Biopharm. 59:375-388.14. Bilati, U., Allemann, E. <strong>and</strong> Doelker, E.(2005). Nanoprecipitation versus emulsionbased techniques for the encapsulation <strong>of</strong>protein into biodegradable nanoparticles <strong>and</strong>process related stability <strong>issue</strong>s. AAPSPharm Sci Tech 6:E594-E604.15. Carino, G.P. <strong>and</strong> Jacob, J.S. (2000).Mathiowitz E., Nanosphere based oralinsulin delivery, J. Control. Rel. 65: 261–269.16. Emami, J., Hamishehkar, H., Najafabadi, A.R., Gilani, K., Minaiyan, M., Mahdavi, H.<strong>and</strong> Nokhodochi, A. (2009). A novelapproach to prepare insulin-loaded poly(lactic-co-glycolic acid) microcapsules <strong>and</strong>the protein stability study. J. P. S. 98 (5):1712-1731.17. Ibrahim, M. M., Sammour, O. A., Hammad,M., Megrab, N. A., Li, X. <strong>and</strong> Jasti B.(2008). Novel Aqueous solvent basedmethod for protein based nanoparticles.Current Trends in <strong>Biotechnology</strong> <strong>and</strong><strong>Pharmacy</strong>, 2: (4) 575 -584.18. Rodrigues, J. S., Santos-Magalhães, N. S.,Coelho, L. C. B. B., Couvreur, P., Ponchel,G. <strong>and</strong> Gref R. (2003). Novel core(polyester)-shell (polysaccharide)nanoparticles: protein loading <strong>and</strong> surfacemodification with lectins. J. Controll. Rel.,92 (1-2):103-112.19. Sammour, O.A. <strong>and</strong> Hassan, H.M. (1996).Enhancement <strong>of</strong> the antibacterial activity <strong>of</strong>ampicillin by liposome encapsulation. DrugDelivery, 3: 273–278.20. Giuseppe, G., Enrico, R. <strong>and</strong> Giuseppe, S.(2007). AP/MALDI-MS completecharacterization <strong>of</strong> the proteolytic fragmentsproduced by the interaction <strong>of</strong> insulindegrading enzyme with bovine insulin. J.Mass Spectrometry, 42: 1590-1598.21. Sarmento, B., Ribeiro, A., Veiga, F. <strong>and</strong>Ferreira, D. (2006). Development <strong>and</strong>characterization <strong>of</strong> new insulin containingpolysaccharide nanoparticles. Colloids <strong>and</strong>Surfaces B: Biointerfaces 53: 193–202.22. Houghton, P., Fang, R., Techatanawat, I.,Steventon, G., Hyl<strong>and</strong>s, P. J. <strong>and</strong> Lee C.C.(2007). The sulphorhodamine (SRB) assay<strong>and</strong> other approaches to testing plantextracts <strong>and</strong> derived compounds foractivities related to reputed anticanceractivity. Methods, 42: 377-387.23. Monica, A. V., Napoleon, A., Betts, A. C.,Patrick, I. B. <strong>and</strong> Kenneth, R. (2006).Streptozotocin (STZ) diabetes enhancesbenzo(á)pyrene induced renal injury inSprague Dawley rats. Toxicology Letters,164 214–220.Mahmoud et al

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