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多分散聚合物网络中水的吸收、降解、侵蚀和药物释放的混合模型。

A mixture model for water uptake, degradation, erosion and drug release from polydisperse polymeric networks.

机构信息

MOX-Modeling and Scientific Computing, Department of Mathematics F. Brioschi, Politecnico di Milano, Milano, Italy.

出版信息

Biomaterials. 2010 Apr;31(11):3032-42. doi: 10.1016/j.biomaterials.2010.01.008. Epub 2010 Feb 2.

Abstract

We introduce a general class of mixture models suitable to describe water-dependent degradation and erosion of biodegradable polymers in conjunction with drug release. The ability to predict and quantify degradation and erosion has direct impact in a variety of biomedical applications and is a useful design tool for biodegradable implants and tissue engineering scaffolds. The model is based on a finite number of constituents describing the polydisperse polymeric system, each representing chains of an average size, and two additional constituents, water and drug. Hydrolytic degradation of individual chains occurs at the molecular level and mixture constituents diffuse individually accordingly to Fick's 1st law at the bulk level - such analysis confers a multi-scale aspect to the resulting reaction-diffusion system. A shift between two different types of behavior, each identified to surface or bulk erosion, is observed with the variation of a single non-dimensional parameter measuring the relative importance of the mechanisms of reaction and diffusion. Mass loss follows a sigmoid decrease in bulk eroding polymers, whereas decreases linearly in surface eroding polymers. Polydispersity influences degradation and erosion of bulk eroding polymers and drug release from unstable surface eroding matrices is dramatically enhanced in an erosion-controlled release.

摘要

我们介绍了一类通用的混合物模型,该模型适合描述水依赖性的生物可降解聚合物的降解和侵蚀以及药物释放。预测和量化降解和侵蚀的能力对各种生物医学应用有直接影响,并且是生物可降解植入物和组织工程支架的有用设计工具。该模型基于描述多分散聚合物系统的有限数量的成分,每个成分代表平均大小的链,以及另外两个成分,水和药物。个别链的水解降解发生在分子水平上,并且混合物成分相应地按照 Fick 第一定律在整体水平上扩散 - 这种分析使反应扩散系统具有多尺度的特点。随着反应和扩散机制的相对重要性的单一无量纲参数的变化,观察到两种不同类型的行为之间的转变,每种行为都与表面或整体侵蚀有关。在整体侵蚀聚合物中,质量损失遵循指数下降,而在表面侵蚀聚合物中则呈线性下降。多分散性会影响整体侵蚀聚合物的降解和侵蚀,并且在侵蚀控制释放中,不稳定的表面侵蚀基质中药物的释放会显著增强。

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