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首页> 外文期刊>Journal of Membrane Science >Mathematical modeling of transdermal drug-delivery systems: Analysis and applications
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Mathematical modeling of transdermal drug-delivery systems: Analysis and applications

机译:透皮给药系统的数学建模:分析和应用

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摘要

A closed-form mathematical solution was obtained for in vitro skin permeation of a drug dissolved in a vehicle. The solution to the mathematical model, which was described by Fickian diffusion equations and appropriate boundary conditions, was derived using Laplace transform methods. The Residue theorem was applied to invert the equations from the Laplace domain into the time domain. The closed-form solution, obtained for the present percutaneous drug-delivery model, can be readily applied to many drug/vehicle systems to predict drug-release profiles, reducing the cost associated with extensive experimental procedures. In this work, the developed solution was used to assess the relative impact of different physicochemical parameters on the drug-release profiles. Such parameters include the vehicle-skin partition coefficient for the drug k(m), the thickness of applied medicament l(a) and the diffusion through the vehicle D-1. Results showed that the rate of drug delivery decreased with an increase in the vehicle-skin partition coefficient. The time required for all of the drug to penetrate through the skin is less for a small dose than for a large dose. (c) 2005 Elsevier B.V. All rights reserved.
机译:获得了封闭形式的数学解,用于溶解在媒介物中的药物的体外皮肤渗透。使用拉普拉斯变换法导出了数学模型的解,该解由菲克扩散方程和适当的边界条件描述。应用残差定理将方程从拉普拉斯域转换为时域。对于本发明的经皮药物递送模型获得的封闭形式的溶液可以容易地应用于许多药物/车辆系统以预测药物释放曲线,从而降低了与大量实验程序相关的成本。在这项工作中,开发的解决方案用于评估不同理化参数对药物释放曲线的相对影响。这些参数包括药物k(m)的媒介物皮肤分配系数,所施用药物的厚度l(a)和通过媒介物D-1的扩散。结果表明,药物输送率随着媒介物-皮肤分配系数的增加而降低。小剂量所有药物穿透皮肤所需的时间少于大剂量。 (c)2005 Elsevier B.V.保留所有权利。

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