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首页> 外文期刊>International Journal of Pharmaceutics >Controlled release from hydrogel-based solid matrices. A model accounting for water up-take, swelling and erosion.
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Controlled release from hydrogel-based solid matrices. A model accounting for water up-take, swelling and erosion.

机译:从基于水凝胶的固体基质中控制释放。解释水吸收,溶胀和侵蚀的模型。

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摘要

Design and realization of drug delivery systems based on polymer matrices could be greatly improved by modeling the phenomena which take place after the systems administration. Availability of a reliable mathematical model, able to predict the release kinetic from drug delivery systems, could actually replace the resource-consuming trial-and-error procedures usually followed in the manufacture of these latter. In this work, the complex problem of drug release from polymer (HPMC) based matrices systems was faced. The phenomena, previously observed and experimentally quantified, of water up-take, system swelling and erosion, and drug release were here described by transient mass balances with diffusion. The resulting set of differential equations was solved by using finite element methods. Two different systems were investigated: cylindrical matrices in which the transport phenomena were allowed only by lateral surfaces ("radial" case), and cylindrical matrices with the overall surface exposed to the solvent ("overall" case). A code able to describe quantitatively all the observed phenomena has been obtained.
机译:通过对在系统管理后发生的现象进行建模,可以大大改善基于聚合物基质的药物输送系统的设计和实现。一个可靠的数学模型的可用性,能够预测药物输送系统的释放动力学,实际上可以替代制造这些药物时通常遵循的耗费资源的反复试验程序。在这项工作中,面临着基于聚合物(HPMC)的基质系统释放药物的复杂问题。吸水,系统溶胀和腐蚀以及药物释放的现象是先前观察到的并通过实验量化的,在此通过扩散的瞬时质量平衡来描述。通过使用有限元方法解决了所得的一组微分方程。研究了两种不同的系统:其中仅通过侧面允许传输现象的圆柱形基质(“径向”情况)和整个表面暴露于溶剂的圆柱形基质(“整体”情况)。已经获得了能够定量描述所有观察到的现象的代码。

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