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采用准乳液溶剂扩散法制备含欧巴代RS和气相二氧化硅的硝苯地平缓释微球。

Preparation of sustained-release nitrendipine microspheres with Eudragit RS and Aerosil using quasi-emulsion solvent diffusion method.

作者信息

Yang Ming shi, Cui Fu de, You Ben gang, Fan Yu ling, Wang Liang, Yue Peng, Yang He

机构信息

Department of Pharmaceutics, School of Pharmaceutical Science, Shenyang Pharmaceutical University, No. 103, Wenhua Road, Shenyang 110016, China.

出版信息

Int J Pharm. 2003 Jun 18;259(1-2):103-13. doi: 10.1016/s0378-5173(03)00209-6.

Abstract

Sustained-release nitrendipine microspheres were prepared in liquid system by quasi-emulsion solvent diffusion method, in which the Aerosil was employed as an inert dispersing carrier to improve the dissolution rate of nitrendipine, and Eudragit RS as a retarding agent to control the release rate. The resultant microspheres were evaluated for the recovery, bulk density, average particle size, drug loading, and incorporation efficiency. And the factors affecting the formation of microspheres and the drug-release rate were investigated. It was observed by a scanning electron microscope (SEM) that the microspheres were finely spherical and uniform, and no entire nitrendipine crystals were observed visually. The results of X-ray diffraction indicated that nitrendipine in microspheres was disordered, suggesting that nitrendipine was highly dispersed in microspheres. The drug loading of microspheres was enhanced with increasing the ratio of drug to excipients, and the incorporation efficiency was always >90%. The formation of microspheres was mainly influenced by the amount of bridging liquid and sodium dodecyl sulfate (SDS) in poor solvent. The dissolution profiles could be modulated with adjusting the amount of retarding agent and dispersing carrier formulated.

摘要

采用准乳液溶剂扩散法在液相体系中制备了硝苯地平缓释微球,其中使用气相二氧化硅作为惰性分散载体以提高硝苯地平的溶解速率,使用Eudrag1t RS作为阻滞剂来控制释放11率。对所得1微球进行了回收率、堆密度、平均粒径、载药量和包封率的评估。并研究了影响微球形成和药物释放速率的因素。通过扫描电子显微镜(SEM)观察到微球呈精细的球形且均匀,肉眼未观察到完整的硝苯地平晶体。X射线衍射结果表明微球中的硝苯地平呈无序状态,这表明硝苯地平在微球中高度分散。随着药物与辅料比例的增加,微球的载药量增加,且包封率始终>90%。微球的形成主要受不良溶剂中架桥液和十二烷基硫酸钠(SDS)量的影响。通过调整所配制的阻滞剂和分散载体的量可以调节溶出曲线。

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