基于CA的可生物降解聚合物控释微结构结构优化研究

Yue Rui-xia, Cao Jun-min
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引用次数: 1

摘要

具有微室阵列的可生物降解药物控释微结构是一种以可生物降解聚合物为材料的新型药物控释系统。为了获得某种期望的药物释放轮廓,有必要对聚合物装置的结构进行优化。本文利用元胞自动机(Cellular Automata, CA)建立了可生物降解可控给药系统的数学模型。此外,还对不同结构微室阵列的可生物降解控释系统进行了模拟。通过结构优化(最优的非均匀分布和尺寸),获得所需的药物释放轮廓。综上所述,本研究对大阵列微室可生物降解控释系统的结构优化设计具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on structural optimization of Biodegradable Polymer Controlled Drug Release Microstructure based on CA
A biodegradable controlled drug release microstructure with an array of micro chambers is a new kind of controlled drug delivery system which is made by biodegradable polymer. For a certain desired drug release profile, it is necessary to optimize the structure of the polymer device. In this study, a new mathematical model for a biodegradable controlled drug delivery system is presented by using Cellular Automata (CA). Furthermore, the simulations of the biodegradable controlled-release system with an array of micro chambers with different structures are carried out. By a structural optimization (optimal non-uniform distribution and dimension), a desired drug release profile is achieved. In conclusion, the study introduced here is important for the structural optimization design of the biodegradable controlled-release system with large array of micro chambers.
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