首页> 外文期刊>Journal of Applied Polymer Science >Copolymerization and Polymer Blending of Trimethylene Carobonate and Adipic Anhydride for Tailored Drug Delivery
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Copolymerization and Polymer Blending of Trimethylene Carobonate and Adipic Anhydride for Tailored Drug Delivery

机译:碳酸三亚甲基酯与己二酸酐的共聚合和聚合物共混用于量身定制的药物递送

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摘要

The copolymerization in bulk and solution of trimethylene carbonate (TMC) with adipic anphdride (AA) as well as the blending of homopolymers are described. We show experimentally that the components are not copolymerizable but partially miscible, forming a microscopic dispersion without any visible signs of phase separation. Poly (adipic anhydride) (PAA) functions as a plasticizer, permitting an increase in the erosion rate by increasing the porosity and hydration. Drug delivery from be blends was evaluated. A statistical factorial model was designed to explore the influence of three important blend parameters and their interactions, making it possible to predict the erosion and drug-release behavior of the blend matrices. The PAA: poly (trimethylene carbonate) (PTMC) ratio and molecular weight of the polycarbonate component significantly influence the drug-release performance, mass loss, and degree of plasticization. The interaction among these factors also influences the blend properties. Plasticization of PTMC enhances the drug release to an extant that is dependent on the amount of PAA used. We demonstrate that blending offers a convenient alternative to copolymerization for the preparation of polymer matrices with predictable drug delivery.
机译:描述了碳酸三亚甲基酯(TMC)与己二酸酐(AA)的本体和溶液共聚以及均聚物的共混。我们通过实验表明,这些组分不可共聚,但可部分混溶,形成微观分散体,没有任何明显的相分离迹象。聚己二酸酐(PAA)用作增塑剂,可通过增加孔隙率和水合作用来提高腐蚀速率。评价了来自be blends的药物递送。设计了统计析因模型,以探索三个重要的共混物参数及其相互作用的影响,从而可以预测共混物基质的腐蚀和药物释放行为。聚碳酸酯组分的PAA:聚碳酸三亚甲基酯(PTMC)的比例和分子量显着影响药物释放性能,质量损失和增塑程度。这些因素之间的相互作用也影响共混物的性能。 PTMC的增塑将药物释放增强到一定程度,这取决于所用PAA的量。我们证明了共混为制备具有可预测药物传递的聚合物基质提供了一种方便的共聚替代方法。

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