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采用双层包衣技术制备的 5-单硝酸异山梨酯(5-ISMN)缓释微丸,用于减少 5-ISMN 的迁移和升华。

Isosorbide-5-mononitrate (5-ISMN) sustained-release pellets prepared by double layer coating for reducing 5-ISMN migration and sublimation.

机构信息

Department of Pharmaceutics, Shenyang Pharmaceutical University, Shenyang, China.

出版信息

Int J Pharm. 2010 Nov 15;400(1-2):138-44. doi: 10.1016/j.ijpharm.2010.08.046. Epub 2010 Sep 6.

Abstract

The major aim of this study was to prepare isosorbide-5-mononitrate (5-ISMN) sustained-release pellets and evaluate their stability. The pellets were prepared by extrusion/spheronization, and then the core pellets were coated with ethylcellulose (EC 10cp) and Eudragit(®)NE30D. Here, EC was used as the subcoating agent while Eudragit(®)NE30D acted as the outer-coating agent. 5-ISMN sustained-release pellets as a novel drug delivery system contained the immediate-release portion in the outer-coating layer. Unexpectedly, 5-ISMN was found to migrate from the interior of the pellets to the surface forming needle crystals and exhibited the phenomenon of sublimation, which resulted in a tremendous increase in the release rate. Our research showed that the migration and sublimation of the active ingredient was related to the temperature and humidity. Polyvinylpyrrolidone (PVP K30) can affect the precipitation of 5-ISMN by forming a charge transfer complex between the drug and PVP, while hydroxypropyl methyl cellulose (HPMC E5) had no effect, and confirmed the correctness of this view through photographs and IR spectra. In the investigation of the stability, the results showed that there was no sublimation and migration while the pellets stored at 25°C/60%RH (ambient conditions) and 40°C/75% RH (stress conditions) during a 6-month period.

摘要

本研究的主要目的是制备异山梨醇-5-单硝酸酯(5-ISMN)缓释微丸并评价其稳定性。采用挤出/滚圆法制备微丸,然后用乙基纤维素(EC 10cp)和 Eudragit(®) NE30D 对微丸芯进行包衣。这里,EC 用作次包衣剂,而 Eudragit(®) NE30D 则作为外涂层剂。5-ISMN 缓释微丸作为一种新型药物传递系统,在其外涂层中含有速释部分。出乎意料的是,5-ISMN 从微丸内部迁移到表面形成针状晶体并表现出升华现象,导致释放速率急剧增加。我们的研究表明,活性成分的迁移和升华与温度和湿度有关。聚乙烯吡咯烷酮(PVP K30)可以通过在药物和 PVP 之间形成电荷转移复合物来影响 5-ISMN 的沉淀,而羟丙基甲基纤维素(HPMC E5)则没有影响,并通过照片和 IR 光谱证实了这一观点的正确性。在稳定性研究中,结果表明在 6 个月的时间内,微丸在 25°C/60%RH(环境条件)和 40°C/75%RH(应激条件)下储存时,没有发生升华和迁移。

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