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Evaluation of Degradation Properties of Polyglycolide and Its Potential as Delivery Vehicle for Anticancer Agents

机译:聚乙氧乙胺降解性能及其作为抗癌剂递送载体的潜力的评价

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Biodegradable polymers offer a unique combination of properties that can be tailored to suit nearly any controlled drug delivery application. The most common biodegradable polymers used for biomedical applications are semicrystalline polyesters and polyethers which possess good mechanical properties and have been used in many controlled release applications. Drug release from these polymers may be controlled by several mechanisms and these include diffusion of drug through a matrix, dissolution of polymer matrix and degradation of the polymer. This study aims to investigate the degradation and drug release properties of polyglycolide (1.03 dL/g), in which, cis platin, an anticancer agent was used as the model drug. The degradation behaviour of the chosen polymer is thought to largely govern the release of the anticancer agent in vitro.
机译:可生物降解的聚合物提供独特的性质组合,可以根据几乎任何受控药物递送应用程序量身定制。用于生物医学应用的最常见的可生物降解聚合物是半结晶的聚酯和聚醚,其具有良好的机械性能,并且已在许多控制的释放应用中使用。这些聚合物的药物释放可以通过几种机制控制,并且这些方法包括通过基质,聚合物基质的溶解和聚合物的降解来扩散。本研究旨在探讨聚乙酰胺(1.03dl / g)的降解和药物释放性质,其中CIS铂,抗癌剂用作模型药物。认为所选择的聚合物的降解行为在很大程度上在体外治理抗癌剂的释放。

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