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In-vitro study of Ketoprofen Release from Synthesized Silica Aerogels (as Drug Carriers) and Evaluation of Mathematical Kinetic Release Models
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نویسنده
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mohammadian manijeh ,s. jafarzadeh kashi tahereh ,erfan mohammad ,pashaei soorbaghi fatemeh
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منبع
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iranian journal of pharmaceutical research - 2018 - دوره : 17 - شماره : 3 - صفحه:818 -829
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چکیده
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Silica aerogels are porous and extremely lightweight nano-materials that show interesting properties. these materials, because of biocompatibility, non-harmful to the body, and specialphysical characteristics such as large surface area and low density have great potential for usein a drug delivery system (dds). the focus of this study is the evaluation of the effects of silicaaero gels on improving the release rate of ketoprofen as a relevant model drug of poorly soluble drugs in water. the in-vitro release rate of a conventional crystalline form of pure drug and three samples of drug loaded silica aerogels with different densities, 0.033, 0.080, and 0.24 g/cm^3 were measured and investigated. the results show that all three samples of silica aerogels considerably increased (p < 0.05) the rate of drug release compared to its crystalline form.the silica aerogel sample with the lowest density (0.033 gr/cm3) has demonstrated the highest release rate of the drug (approximately five times faster than pure drug). thus, silica aerogel scould be acceptable carriers for poorly soluble drugs that require treatment with the fast release.moreover, three release kinetic models were fitted with in-vitro drug release data and evaluated.the results indicate that the first-order model is the best fit with the in-vitro ketoprofen release data. finally, in this article, a new kinetic release equation was obtained based on the first order model and release data, with applying the density of silica aerogel as an effective index parameter. this equation was proposed to describe ketoprofen release rate in silica aerogels.
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کلیدواژه
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Release kinetic model; Drug delivery; Silica aerogel; Ketoprofen; Drug dissolution.
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آدرس
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tehran university of medical sciences, school of dentistry, department of dental biomaterials, Iran, tehran university of medical sciences, school of dentistry, department of dental biomaterials, Iran. tehran university of medical sciences, iranian tissue bank and research center, iran, shahid beheshti university of medical sciences, school of pharmacy, department of pharmaceutics, Iran, tarbiat modares university, faculty of chemical engineering, polymer engineering department, Iran
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Authors
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