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一种描述羟丙基甲基纤维素片剂溶胀和药物释放动力学的新模型。

A new model describing the swelling and drug release kinetics from hydroxypropyl methylcellulose tablets.

作者信息

Siepmann J, Podual K, Sriwongjanya M, Peppas N A, Bodmeier R

机构信息

College of Pharmacy, Freie Universität Berlin, Kelchstr. 31, 12169 Berlin,

出版信息

J Pharm Sci. 1999 Jan;88(1):65-72. doi: 10.1021/js9802291.

Abstract

A novel mathematical model for the water transport into and drug release from hydroxypropyl methylcellulose (HPMC) tablets is presented. Fick's second law of diffusion is used to describe the mass transfer processes in the three-component system drug/polymer/water. Numerical solutions of the respective set of partial differential equations are provided, considering axial and radial diffusion within cylindrical tablets. It is shown that the diffusion coefficients strongly depend on the water concentration (parameters quantifying this dependence have been determined). Swelling of the device is considered using moving boundary conditions, whereas dissolution processes are neglected. Experiments proved the applicability of the theory. The practical benefit of the new model is to calculate the required shape and dimensions of HPMC tablets to achieve a desired release profile.

摘要

提出了一种用于描述羟丙基甲基纤维素(HPMC)片剂中水传输和药物释放的新型数学模型。采用菲克第二扩散定律来描述药物/聚合物/水三元体系中的传质过程。考虑了圆柱形片剂内的轴向和径向扩散,给出了相应偏微分方程组的数值解。结果表明,扩散系数强烈依赖于水浓度(已确定量化这种依赖性的参数)。使用移动边界条件考虑装置的溶胀,而忽略溶解过程。实验证明了该理论的适用性。新模型的实际好处是计算出HPMC片剂所需的形状和尺寸,以实现所需的释放曲线。

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