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Mechanochemical solid-state polymerization. IX. Theoretical analysis of rate of drug release from powdered polymeric prodrugs in a heterogeneous system.

机译:机械化学固态聚合。九。异质系统中粉末状聚合物前药释放药物速率的理论分析。

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摘要

We theoretically derived the rate equation of drug release from a simple model in a heterogeneous system. Four assumptions were used to simplify the model. Two kinds of rate equations for drug release derived from two possible limiting cases, that the rate-determining step is a diffusion or hydrolysis controlled process, can predict the experimental results up to 50% hydrolysis. However, the predictions at the later stage by these equations are insufficient. These results suggest that the process of drug release from powdered polymeric prodrugs in a heterogeneous system must be described by both diffusion and hydrolysis. The rate equation derived from a model considering both the diffusion and hydrolysis processes can successfully predict the experimental results for several kinds of polymeric prodrugs. It is also shown that the diffusion coefficient and rate constant for hydrolysis calculated from this equation thoroughly express the character of the comonomer. The rate equation derived from the model that considers both diffusion and hydrolysis is very useful to analyze drug release from various kinds of polymeric prodrugs in a heterogeneous system.
机译:我们从异质系统中的简单模型理论上推导出药物释放速率方程。使用四个假设来简化模型。从两种可能的极限情况得出两种药物释放速率方程,速率确定步骤是扩散或水解控制过程,可以预测高达50%水解的实验结果。但是,这些方程式在后期的预测是不够的。这些结果表明,必须通过扩散和水解来描述异质系统中粉末状聚合物前药中药物释放的过程。从同时考虑了扩散和水解过程的模型得出的速率方程可以成功预测几种聚合物前药的实验结果。还表明由该方程式计算的水解的扩散系数和速率常数充分表达了共聚单体的特性。从考虑扩散和水解的模型得出的速率方程对于分析异质系统中各种聚合物前药的药物释放非常有用。

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