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首页> 外文期刊>International Journal of Pharmaceutics >Effect of poly-hydroxy aliphatic ester polymer type on amoxycillin release from cylindrical compacts.
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Effect of poly-hydroxy aliphatic ester polymer type on amoxycillin release from cylindrical compacts.

机译:聚羟基脂肪族酯聚合物类型对阿莫西林从圆柱坯中释放的影响。

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摘要

The objective of the work was to investigate the effects of a range of poly-hydroxy aliphatic esters (poly-lactide (PLA) and poly-lactide-co-glycolide (PLGA)) of different molecular weight and composition on the release and stability of the amphoteric drug amoxycillin. The effect of this amphoteric drug on the extent and kinetics of polymer degradation was also investigated. The polymers were used to prepare drug-free and drug-loaded cylindrical discs. Drug release profiles were determined while changes in polymer composition were monitored by weight loss and molecular weight change. The extent of drug release was highly dependent on polymer molecular weight and composition, with earlier complete release occurring with the lower molecular weight and lower lactide containing polymers. A larger proportion of drug was released by polymer degradation control with the higher lactide containing polymer. The proportion of drug released intact was influenced by the polymer molecular weight, with a greater proportion of intact drug being released from the higher molecular weight systems. The inclusion of amoxycillin influenced polymer degradation and resulted in slower polymer hydrolysis. Model parameters obtained for polymer degradation indicated that this retardation effect increased with increasing lactide content of the polymer. The results suggest that small amounts of amoxycillin or its degradation products may bind or cross link with the polymers, thus retarding their degradation.
机译:这项工作的目的是研究一系列不同分子量和组成的聚羟基脂肪族酯(聚丙交酯(PLA)和聚丙交酯-共-乙交酯)对释放和稳定性的影响。两性药物阿莫西林。还研究了这种两性药物对聚合物降解程度和动力学的影响。该聚合物用于制备无药和载药的圆柱盘。确定药物释放曲线,同时通过重量损失和分子量变化监测聚合物组成的变化。药物释放的程度高度依赖于聚合物的分子量和组成,较低的分子量和较低的含丙交酯的聚合物会发生较早的完全释放。较高比例的含丙交酯的聚合物通过聚合物降解控制释放出较大比例的药物。完整释放的药物的比例受聚合物分子量的影响,较大比例的完整药物从较高分子量的系统中释放。阿莫西林的加入影响聚合物降解并导致较慢的聚合物水解。获得的用于聚合物降解的模型参数表明,这种延迟效应随聚合物丙交酯含量的增加而增加。结果表明少量的阿莫西林或其降解产物可能与聚合物结合或交联,从而阻碍了它们的降解。

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