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首页> 外文期刊>Journal of Applied Polymer Science >Numerical simulation of controlled nifedipine release from chitosan microgels
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Numerical simulation of controlled nifedipine release from chitosan microgels

机译:壳聚糖微凝胶控释硝苯地平的数值模拟

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The numerical simulating investigation of drug delivery can provide deeper insight into drug release mechanisms and elucidate efficiently the influences of various physical parameters. Controlled nifedipine release from nonswellable chitosan sphere-based microgels is investigated numerically with a mathematical model in this article. The mathematical model takes into account both drug dissolution and drug diffusion through the continuous matrices of the spherical microgels. Meshless Hermite-cloud method is employed to solve the formulated partial differential equations. It is seen that the model well describes the nifedipine release process from the spherical chitosan microgels. The effect of several important physical parameters on drug release is evaluated, which include microsphere radius, equivalent drug saturation concentration, drug diffusion coefficient, and drug dissolution rate constant. (C) 2004 Wiley Periodicals, Inc.
机译:药物输送的数值模拟研究可以提供对药物释放机制的更深入了解,并有效地阐明各种物理参数的影响。本文用数学模型对硝苯地平从难溶性壳聚糖球状微凝胶中的可控释放进行了数值研究。该数学模型考虑了通过球形微凝胶的连续基质的药物溶解和药物扩散。采用无网格Hermite-cloud方法求解公式化的偏微分方程。可以看出,该模型很好地描述了硝苯地平从球形壳聚糖微凝胶中的释放过程。评估了几个重要的物理参数对药物释放的影响,包括微球半径,等效药物饱和浓度,药物扩散系数和药物溶出速率常数。 (C)2004年Wiley Periodicals,Inc.

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