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制剂因素对石杉碱甲-PLGA微球体外包封率及释放行为的影响

Effects of formulation factors on encapsulation efficiency and release behaviour in vitro of huperzine A-PLGA microspheres.

作者信息

Fu X, Ping Q, Gao Y

机构信息

China Pharmaceutical University, Nanjing.

出版信息

J Microencapsul. 2005 Feb;22(1):57-66. doi: 10.1080/02652040400026509.

Abstract

To develop a long-acting injectable huperzine A-PLGA microsphere for the chronic therapy of Alzheimer's disease, the microsphere was prepared by using o/w emulsion solvent extraction evaporation method based on a series of formulation design of the emulsion. The dialysis method was used for release analysis. The encapsulation efficiency and release amount of the microspheres were determined by UV/VIS spectrophotometry. The morphology of the microspheres was observed by scanning electron microscopy. The distribution of the drug within microspheres was observed by a confocal laser scanning microscope. The results indicated that the PLGA 15 000 microspheres possessed a smooth and round appearance with average particle size of 50 microm or so. The encapsulation percentages of microspheres prepared from PLGA 15 000, 20 000 and 30 000 were 62.75, 27.52 and 16.63%, respectively. The drug release percentage during the first day decreased from 22.52% of PLGA 30 000 microspheres to 3.97% of PLGA 15 000 microspheres, the complete release could be prolonged to 3 weeks. The initial burst release of microspheres with higher molecular weight PLGA could be explained by the inhomogeneous distribution of drug within microspheres. The encapsulation efficiency of the microspheres improved as the polymer concentration increase in oil phase and PVA concentration decreased in aqueous phase. The burst release could be controlled by reducing the polymer concentration. Evaporation temperature had a large effect on the drug release profiles. It had better be controlled under 30 degrees C. Within a certain range of particle size, encapsulation efficiency decreased and drug release rate increased with the reducing of the particle size.

摘要

为研发用于阿尔茨海默病长期治疗的长效注射用石杉碱甲 - 聚乳酸 - 羟基乙酸共聚物(PLGA)微球,基于一系列乳液配方设计,采用水包油(o/w)乳液溶剂萃取蒸发法制备微球。采用透析法进行释放分析。通过紫外/可见分光光度法测定微球的包封率和释放量。用扫描电子显微镜观察微球的形态。用共聚焦激光扫描显微镜观察药物在微球内的分布。结果表明,PLGA 15000微球外观光滑圆润,平均粒径约为50微米。由PLGA 15000、20000和30000制备的微球包封率分别为62.75%、27.52%和16.63%。第一天的药物释放率从PLGA 30000微球的22.52%降至PLGA 15000微球的3.97%,完全释放可延长至3周。高分子量PLGA微球的初始突释可通过药物在微球内分布不均来解释。随着油相中聚合物浓度增加和水相中聚乙烯醇(PVA)浓度降低,微球的包封率提高。通过降低聚合物浓度可控制突释。蒸发温度对药物释放曲线有很大影响,最好控制在30℃以下。在一定粒径范围内,随着粒径减小,包封率降低,药物释放速率增加。

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