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双氯芬酸钠空心微球——一种胃滞留控释给药系统。

Hollow microspheres of diclofenac sodium - a gastroretentive controlled delivery system.

作者信息

Bv Basavaraj, R Deveswaran, S Bharath, Abraham Sindhu, Furtado Sharon, V Madhavan

机构信息

Department of Pharmaceutics, MS Ramaiah College of Pharmacy, MSR Nagar, MSRIT Post, Bangalore-560 054, India.

出版信息

Pak J Pharm Sci. 2008 Oct;21(4):451-4.

Abstract

Most of the floating systems have an inherent drawback of high variability in the GI transit time, invariably affecting the bioavailability of drug. To overcome it, a multiple unit floating system with extended GI transit time, capable of distributing widely throughout the GIT for effective enteric release of the drug has been sought. Microballoons loaded with drug in their outer polymer shells were prepared by novel emulsion solvent diffusion method. The ethanol: dicloromethane solution of drug and Eudragit-S were poured into an aqueous solution of PVA that was thermally controlled at 40 degrees C. The gas phase generated in the dispersed polymer droplet by the evaporation of solvent formed an internal cavity in the microsphere of the polymer with the drug. The flowability of the resulting microballoons improved when compared to pure drug. The microballoons on floatation along with the surfactant, floated continuously for more than 12 hours in the acidic medium in-vitro conditions. The in-vitro drug release profile of the formulation in the simulated gastric buffer showed no drug release, which emphasizes the enteric release property and in simulated intestinal buffer, a slow and controlled drug release of 60 to 84% was obtained over a period of 8 hours. Drug release was significantly affected by increased drug to polymer concentration at pH 6.8. The formulation was found to be physically and chemically stable as per the ICH guidelines.

摘要

大多数漂浮系统存在胃肠道转运时间高度可变的固有缺点,这不可避免地会影响药物的生物利用度。为了克服这一问题,人们一直在寻找一种具有延长胃肠道转运时间的多单元漂浮系统,该系统能够在胃肠道中广泛分布,以实现药物的有效肠溶释放。通过新型乳液溶剂扩散法制备了外层聚合物壳中载有药物的微球。将药物和尤特奇-S的乙醇:二氯甲烷溶液倒入温度控制在40℃的聚乙烯醇水溶液中。溶剂蒸发在分散的聚合物液滴中产生的气相在载有药物的聚合物微球中形成一个内腔。与纯药物相比,所得微球的流动性有所提高。微球与表面活性剂一起漂浮时,在体外酸性介质中连续漂浮超过12小时。该制剂在模拟胃缓冲液中的体外药物释放曲线显示无药物释放,这突出了其肠溶释放特性;在模拟肠缓冲液中,8小时内药物缓慢且可控释放60%至84%。在pH 6.8时,药物与聚合物浓度的增加对药物释放有显著影响。根据国际人用药品注册技术协调会指南,该制剂在物理和化学上是稳定的。

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