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首页> 外文期刊>Journal of Applied Polymer Science >Release of highly hydrophilic drugs from poly(epsilon-caprolactone) matrices
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Release of highly hydrophilic drugs from poly(epsilon-caprolactone) matrices

机译:从聚(ε-己内酯)基质中释放高度亲水的药物

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摘要

We examine the release of two highly hydrophilic drugs, nicotine and caffeine, from poly(epsilon-caprolactone) (PCL) matrices. We find that the dominant mechanism for drug release is drug diffusion through the PCL matrices. As a result, the rate of drug release (defined by the amount of drug released per unit time) decreases exponentially with time. Coating the drug-carrying particles with a drug-free PCL layer significantly changes the release profile: instead of exponential decay, the release rate exhibits a peak whose location (time) and magnitude vary with the diffusion coefficient of the drug in the polymer and the thickness of the coating. As a result, coating may be used to control the release rate and obtain a relatively constant rate over a period of time. (c) 2007 Wiley. Periodicals, Inc.
机译:我们研究了从聚(ε-己内酯)(PCL)基质中释放出两种高度亲水的药物,尼古丁和咖啡因。我们发现药物释放的主要机制是通过PCL基质的药物扩散。结果,药物释放速率(由每单位时间释放的药物量定义)随时间呈指数下降。用不含药物的PCL层涂覆载药颗粒会显着改变释放曲线:释放速率显示出一个峰,该峰的位置(时间)和大小随药物在聚合物和聚合物中的扩散系数而变化,而不是指数衰减。涂层的厚度。结果,包衣可用于控制释放速率并在一段时间内获得相对恒定的速率。 (c)2007年威利。期刊公司

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