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采用设计专家软件优化和评价胃滞留盐酸雷尼替丁微球。

Optimization and evaluation of gastroretentive ranitidine HCl microspheres by using design expert software.

机构信息

PDM College of Pharmacy, Bahadurgarh 124507, India.

出版信息

Int J Biol Macromol. 2012 Dec;51(5):691-700. doi: 10.1016/j.ijbiomac.2012.07.030. Epub 2012 Aug 3.

Abstract

The current study involves the development and optimization of their drug entrapment and ex vivo bioadhesion of multiunit chitosan based floating system containing Ranitidine HCl by ionotropic gelation method for gastroretentive delivery. Chitosan being cationic, non-toxic, biocompatible, biodegradable and bioadhesive is frequently used as a material for drug delivery systems and used to transport a drug to an acidic environment where it enhances the transport of polar drugs across epithelial surfaces. The effect of various process variables like drug polymer ratio, concentration of sodium tripolyphosphate and stirring speed on various physiochemical properties like drug entrapment efficiency, particle size and bioadhesion was optimized using central composite design and analyzed using response surface methodology. The observed responses were coincided well with the predicted values given by the optimization technique. The optimized microspheres showed drug entrapment efficiency of 74.73%, particle size 707.26 μm and bioadhesion 71.68% in simulated gastric fluid (pH 1.2) after 8 h with floating lag time 40s. The average size of all the dried microspheres ranged from 608.24 to 720.80 μm. The drug entrapment efficiency of microspheres ranged from 41.67% to 87.58% and bioadhesion ranged from 62% to 86%. Accelerated stability study was performed on optimized formulation as per ICH guidelines and no significant change was found in drug content on storage.

摘要

本研究涉及通过离子凝胶化法开发和优化包含盐酸雷尼替丁的多单位壳聚糖基漂浮系统的药物包封和体外生物黏附,该系统用于胃滞留给药。壳聚糖带正电荷、无毒、生物相容、可生物降解且具有生物黏附性,常被用作药物传递系统的材料,用于将药物输送到酸性环境中,在该环境中增强极性药物穿过上皮表面的传输。使用中心复合设计优化了各种工艺变量(如药物-聚合物比、三聚磷酸钠浓度和搅拌速度)对各种物理化学性质(如药物包封效率、粒径和生物黏附性)的影响,并使用响应面法进行了分析。观察到的响应与优化技术给出的预测值吻合良好。优化后的微球在模拟胃液(pH 1.2)中 8 小时后,漂浮滞后时间为 40s,显示出 74.73%的药物包封效率、707.26μm 的粒径和 71.68%的生物黏附性。所有干燥微球的平均粒径范围为 608.24μm 至 720.80μm。微球的药物包封效率范围为 41.67%至 87.58%,生物黏附性范围为 62%至 86%。按照 ICH 指南对优化配方进行了加速稳定性研究,在储存过程中未发现药物含量有显著变化。

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