Ivana Jovanovic MT.pdf (7089 KB) - Institut tehničkih nauka SANU

Ivana Jovanovic MT.pdf (7089 KB) - Institut tehničkih nauka SANU Ivana Jovanovic MT.pdf (7089 KB) - Institut tehničkih nauka SANU

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Ivana Jovanović Magistarska teza [63] H.-J. Jeon, Y.-I. Jeong, M.-K. Jang, Y.-H. Park, J.-W. Nah, Effect of solvent on the preparation of surfactant-free poly(DL-lactide-co-glycolide) nanoparticles and norfloxacin release characteristics, International Journal of Pharmaceutics 207 (2000) 99-108. [64] S. Freitas, H. P. Merkle, B. Gander, Microencapsulation by solvent extraction/evaporation: reviewing the state of the art of microsphere preparation process technology, Journal of Controlled Release 102 (2005) 313-332. [65] www.karmat.com/images/21af70e0-1b59-427d-93a4-e1b0bba9538c..jpg [66] M. Lück, K.-F. Pistel, Y.-X. Li, T. Blunk, R. H. Müller, Plasma protein adsorption on biodegradable microspheres consisting of poly(D,L-lactide-co-glycolide), poly(L-lactide) or ABA triblock copolymers containing poly(oxyethylene): influence of production method and polymer composition, Journal of Controlled Release 55 (1998) 107-120. [67] J. Lee, E. C. Cho, K. Cho, Incorporation and release behavior of hydrophobic drug in functionalized poly(D,L-lactide)-block-poly(ethilene oxide) micelles, Journal of Controlled Release 50 (1998) 31-40. [68] J. Kreuter, V. E. Petrov, D. A. Kharkevich, R. N. Alyautdin, Influence of the of surfactant on the analgesic effects induced by the peptide dalargin after its delivery across the blood-brain barrier using surfactant coated nanoparticles, Journal of Controlled Release 49 (1997) 81-87. [69] J. Kreuter, Nanoparticulate systems for brain delivery of drugs, Advanced Drug Delivery Reviews 47 (2001) 65-81. [70] E. Allemann, P. Gravel, J. C. Leroux, L. Balant, R. Gurny, Kinetics of blood component adsorption on poly(D,L-lactic acid) nanoparticles: evidence of complement C3 component involvement, Journal of Biomedical Materials ResearchPart A 37 (1997) 229-234. [71] R. Gref, M. Lück, P. Quellec, M. Marchand, E. Dellacherie, S. Harnitsch, ‛Stealth’ corona-core nanoparticles surface modified by polyethylene glycol (PEG): influences of the corona (PEG chain length and surface density) and of the core composition on phagocytic uptake and plasma protein adsorption, Colloids and Surfaces B: Biointerfaces 18 (2000) 301-313. [72] T. Niwa, H. Takeuchi, T. Hino, M. Nohara, Y. Kawashima, Biodegradable submicron carriers for peptide drugs: preparation of –lactide/glycolide copolymer (PLGA) nanospheres with nafarelin acetate by novel emulsion-phase separation method in an oil system, International Journal of Pharmaceutics 121 (1995) 45-54. [73] E. Horisawa, T. Hirota, S. Kawazoe, J. Yamada, H. Yamamoto, H. Takeuchi, Y. Kawashima, Prolonged anti-inflammatory action of DL-lactide/glycolide copolymer nanospheres containing betamethasone sodium phosphate for an intra-articular delivery system in antigeninduced arthritic rabbit, Pharmaceutical Research 19 (2002) 403-410. [74] Y. N. Konan, R. Gutny, E. Allemann, Preparation and characterization of sterile and freeze dried sub-200 nm nanoparticles, International Journal of Pharmaceutics 233 (2002) 239-252. 124

Ivana Jovanović Magistarska teza [75] F. De Jaeghere, E. Allemann, J. C. Leroux, W. Stevels, J. Feijen, E. Doelker et al., Formulation and lyoprotection of poly(lactic acid-co-ethylene oxide) nanoparticles: influence on physical stability and in vitro cell uptake, Pharmaceutical Research 16 (1999) 859-866. [76] S. C. Lee, J.T. Oh, M.H. Jang, S.I. Chung, Quantitative analysis of polyvinyl alcohol on the surface of poly(DL-lactide-co-glycolide) microparticles prepared by solvent evaporation method: effect of particle size and PVA concetration, Journal of Controlled Release 59 (1999) 123-132. [77] K. M. Shakesheff, C. Evora, I. Soriano, R. Langer, The adsorption of poly(vinyl alcohol) to biodegradable microparticles studied by X-ray photoelectron spectroscopy (XPS), Journal of Colloid & Interface Science 185 (1997) 538-547. [78] F. Boury, H. Marchais, J. E. Proust, J. P. Benoit, Bovine serum albumin release poly(αhydroxy acid) microspheres: effects of polymer molecular weight and surface properties, Journal of Controlled Release 45 (1997) 75-86. [79] E. C. Lavelle, S. Sharif, N. W. Thomas, J. Holland, S. S. Davis, The importance of gastrointestinal uptake of particles in design of oral delivery systems, Advanced Drug Delivery Reviews 18 (1995) 5-22. [80] Y. Tabata, Y. Ikada, Phagocytosis of polymer microspheres by macrophages, Advances in Polymer Science 94 (1991) 107-141. [81] P. Caliceti, S. Salmaso, N. Elvassore, A. Bertucco, Effective protein release from PEG/PLA nano particles produced by compressed gas-anti-solvent precipitation techniques, Journal of Controlled Release 94 (2004) 195-205. [82] B. Sjostrom, B. R. Kronberg, J. Carlfors, A method for the preparation of submicron particles of sparingly water-soluble drugs by precipitation in oil-in water emulsions, I: influence of emulsification and surfactant concentration, Journal of Pharmaceutical Science 82 (1993) 579-583. [83] B. Sjostrom, B. R. Kronberg, J. Carlfors, A method for the preparation of submicron particles of sparingly water-soluble drugs by precipitation in oil-in water emulsions, II: influence of emulsifier, the solvent, and the drug substance, Journal of Pharmaceutical Science 82 (1993) 585- 589. [84] G. Gaucher, M. Poreba, F. Ravenelle, J.-C. Leroux, Poly(N-vinyl-pyrolidone)-blockpoly(D,L-Lactide) as polymeric emulsifier for the preparation of biodegradable nanoparticles, Journal of Pharmaceutical Science 96 (2007) 1763-1775. [85] C. Witschi, E. Doelker, Residual solvents in pharmaceutical products: acceptable limits, influences on physicochemical properties, analytical methods and documented values, European Journal of Pharmaceutics and Biopharmaceutics 43 (1997) 215-242. [86] Y. I. Jeong, J. B. Cheon, S. H. Kim et al., Clonazepam release from core-shell type nanoparticles in vitro, Journal of Controlled Release 51 (1998)169-178. [87] G. S. Kwon, M. Naito, M. Yokoyama, T. Okano, Y. Sakurai, K. Kaoka, Physical entrapment of adriamycin in AB block copolymer micelles, Pharmaceutical Research 12 (1995) 192- 195. [88] D. D. Lasic, Mixed micelles in drug delivery, Nature 355 (1992) 279-280. 125

<strong>Ivana</strong> Jovanović<br />

Magistarska teza<br />

[75] F. De Jaeghere, E. Allemann, J. C. Leroux, W. Stevels, J. Feijen, E. Doelker et al.,<br />

Formulation and lyoprotection of poly(lactic acid-co-ethylene oxide) nanoparticles: influence on<br />

physical stability and in vitro cell uptake, Pharmaceutical Research 16 (1999) 859-866.<br />

[76] S. C. Lee, J.T. Oh, M.H. Jang, S.I. Chung, Quantitative analysis of polyvinyl alcohol on<br />

the surface of poly(DL-lactide-co-glycolide) microparticles prepared by solvent evaporation method:<br />

effect of particle size and PVA concetration, Journal of Controlled Release 59 (1999) 123-132.<br />

[77] K. M. Shakesheff, C. Evora, I. Soriano, R. Langer, The adsorption of poly(vinyl alcohol)<br />

to biodegradable microparticles studied by X-ray photoelectron spectroscopy (XPS), Journal of<br />

Colloid & Interface Science 185 (1997) 538-547.<br />

[78] F. Boury, H. Marchais, J. E. Proust, J. P. Benoit, Bovine serum albumin release poly(αhydroxy<br />

acid) microspheres: effects of polymer molecular weight and surface properties, Journal of<br />

Controlled Release 45 (1997) 75-86.<br />

[79] E. C. Lavelle, S. Sharif, N. W. Thomas, J. Holland, S. S. Davis, The importance of<br />

gastrointestinal uptake of particles in design of oral delivery systems, Advanced Drug Delivery<br />

Reviews 18 (1995) 5-22.<br />

[80] Y. Tabata, Y. Ikada, Phagocytosis of polymer microspheres by macrophages,<br />

Advances in Polymer Science 94 (1991) 107-141.<br />

[81] P. Caliceti, S. Salmaso, N. Elvassore, A. Bertucco, Effective protein release from<br />

PEG/PLA nano particles produced by compressed gas-anti-solvent precipitation techniques, Journal<br />

of Controlled Release 94 (2004) 195-205.<br />

[82] B. Sjostrom, B. R. Kronberg, J. Carlfors, A method for the preparation of submicron<br />

particles of sparingly water-soluble drugs by precipitation in oil-in water emulsions, I: influence of<br />

emulsification and surfactant concentration, Journal of Pharmaceutical Science 82 (1993) 579-583.<br />

[83] B. Sjostrom, B. R. Kronberg, J. Carlfors, A method for the preparation of submicron<br />

particles of sparingly water-soluble drugs by precipitation in oil-in water emulsions, II: influence of<br />

emulsifier, the solvent, and the drug substance, Journal of Pharmaceutical Science 82 (1993) 585-<br />

589.<br />

[84] G. Gaucher, M. Poreba, F. Ravenelle, J.-C. Leroux, Poly(N-vinyl-pyrolidone)-blockpoly(D,L-Lactide)<br />

as polymeric emulsifier for the preparation of biodegradable nanoparticles, Journal<br />

of Pharmaceutical Science 96 (2007) 1763-1775.<br />

[85] C. Witschi, E. Doelker, Residual solvents in pharmaceutical products: acceptable limits,<br />

influences on physicochemical properties, analytical methods and documented values, European<br />

Journal of Pharmaceutics and Biopharmaceutics 43 (1997) 215-242.<br />

[86] Y. I. Jeong, J. B. Cheon, S. H. Kim et al., Clonazepam release from core-shell type<br />

nanoparticles in vitro, Journal of Controlled Release 51 (1998)169-178.<br />

[87] G. S. Kwon, M. Naito, M. Yokoyama, T. Okano, Y. Sakurai, K. Kaoka, Physical<br />

entrapment of adriamycin in AB block copolymer micelles, Pharmaceutical Research 12 (1995) 192-<br />

195.<br />

[88] D. D. Lasic, Mixed micelles in drug delivery, Nature 355 (1992) 279-280.<br />

125

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