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Novel Poly(glycerol-adipate) Polymers Used for Nanoparticle Making: A Study of Surface Free Energy.
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نویسنده
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Orafai Hossein ,Kallinteri Paraskevi ,Garnett Martin ,Huggins Sean ,Hutcheon Gillian ,Pourcain Cristopher
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منبع
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iranian journal of pharmaceutical research - 2008 - دوره : 7 - شماره : 1 - صفحه:11 -19
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چکیده
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Nanoparticles made of biodegradable polymers has become the best approach for nanoparticle making due to their compatibility with the human body. new glycerol adipate polymers with hydroxyl group substituted with different percent of acyl group, sited as figures within the abbreviated name in the text, and triptophan were synthesizedand proposed to be used in the preparction of dexamethason phosphate loaded nanoparticles, using the evaporation-deposition technique. the particle forming ability, size and distribution of the nanoparticles might be related to more important physicochemical characteristics, such as the surface properties of the polymers. in this study surface free energies of five derivatives (0%, 20%, 40%, 100% and triptophan 5%) were determined by means of contact angle measurement carried out on filmsformed on the glass slides ksc cam 100 instrument. the results were then incorporated into the fowkes equation, toobtion the surface energy of the polymers. also, different concentrations of methanol were used to obtion contact angles, which in turn were used to give the criticalsurface tension ((gamma)(c)) of the polymers, using the zizman's method. the results of surface characteristics indicated that the 40% c8, polymer was probably the most consistent, compared to the others during the preparation stage, in order to form smaller sized particles with a narrower distribution, correlating with the other works carried out on the loaded particles. in conclusion, it seems that this method could be used to predict characteristics of polymers used for the selection of the best polymer in this series and probably other polymers for nanoparticle making, particularly for the loading of ionized drugs.
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کلیدواژه
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Nanoparticle; Contact angle; Surface energy; Critical surface tension.
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آدرس
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mashhad university of medical sciences, School of Pharmacy , ایران, University of Nottingham., School of Pharmacy , England., University of Nottingham., School of Pharmacy , England., Liverpool John Moores University., School of Pharmacy and Chemistry , England., Liverpool John Moores University., School of Pharmacy and Chemistry , England., Aston University., School of Engineering and Applied Sciences , England.
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پست الکترونیکی
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orafaih@mums.ac.ir
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Authors
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