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Mathematical modeling and simulation of drug release from microspheres: Implications to drug delivery systems

期刊

ADVANCED DRUG DELIVERY REVIEWS
卷 58, 期 12-13, 页码 1274-1325

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ELSEVIER
DOI: 10.1016/j.addr.2006.09.007

关键词

release mechanism; polymeric system; diffusion; swelling; erosion; irradiation; transport; tissue; brain; computational fluid dynamics

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This article aims to provide a comprehensive review of existing mathematical models and simulations of drug release from polymeric microspheres and of drug transport in adjacent tissues. In drug delivery systems, mathematical modeling plays an important role in elucidating the important drug release mechanisms, thus facilitating the development of new pharmaceutical products by a systematic, rather than trial-and-error, approach. The mathematical models correspond to the known release mechanisms, which are classified as diffusion-, swelling-, and erosion-controlled systems. Various practical applications of these models which explain experimental data are illustrated. The effect of gamma-irradiation sterilization on drug release mechanism from erosion-controlled systems will be discussed. The application of existing models to nanoscale drug delivery systems specifically for hydrophobic and hydrophilic molecules is evaluated. The current development of drug transport modeling in tissues utilizing computational fluid dynamics (CFD) will also be described. (c) 2006 Elsevier B.V. All rights reserved.

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