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用于回肠-结肠给药的pH响应性聚合物药物释放性能的体外比较评估。

A comparative in vitro assessment of the drug release performance of pH-responsive polymers for ileo-colonic delivery.

作者信息

Ibekwe Valentine C, Fadda Hala M, Parsons Gary E, Basit Abdul W

机构信息

Department of Pharmaceutics, The School of Pharmacy, University of London, 29/39 Brunswick Square, London WC1N 1AX, UK.

出版信息

Int J Pharm. 2006 Feb 3;308(1-2):52-60. doi: 10.1016/j.ijpharm.2005.10.038. Epub 2005 Dec 13.

Abstract

The aim of this study was to investigate the in vitro dissolution characteristics of pH-responsive polymers in a variety of simulated fluids. Prednisolone tablets were fabricated and coated with the following polymer systems: Eudragit S (organic solution), Eudragit S (aqueous dispersion), Eudragit FS (aqueous dispersion) and Eudragit P4135 (organic solution). Dissolution tests were conducted using a pH change method whereby tablets were transferred from acid to buffer. Three different buffer media were investigated: two compendial phosphate buffers (pH range 6.8-7.4) and a physiological buffer solution (Hanks buffer) with very similar ionic composition to intestinal fluid (pH 7.4). There was considerable drug release from tablets coated with Eudragit P4135 in acid, prompting discontinuation of further investigations of this polymer. Eudragit S (organic solution), Eudragit S (aqueous dispersion) and Eudragit FS on the other hand prevented drug release in acid, though subsequent drug release in the buffer media was found to be influenced by the duration of tablet exposure to acid. At pH 7.4 drug release rate from the polymer coated tablets was similar in the two compendial media, however in the physiological buffer, they were found to differ in the following order: Eudragit S (aqueous dispersion)>Eudragit FS>Eudragit S (organic solution). The results indicate that the tablets coated with the newer Eudragit FS polymer would be more appropriate for drug delivery to the ileo-colonic region in comparison to the more established Eudragit S. More importantly, however, dissolution in the physiological buffer was found to be markedly slower for all the coated tablets than in the two compendial buffers, a result akin to reported slower dissolution of enteric coated tablets in vivo. There is therefore the need to adequately simulate the ionic composition of the intestinal fluid in the dissolution media.

摘要

本研究的目的是考察pH响应性聚合物在多种模拟流体中的体外溶出特性。制备了泼尼松龙片,并使用以下聚合物体系进行包衣:Eudragit S(有机溶液)、Eudragit S(水分散体)、Eudragit FS(水分散体)和Eudragit P4135(有机溶液)。采用pH变化法进行溶出试验,即将片剂从酸性介质转移至缓冲液中。考察了三种不同的缓冲介质:两种药典规定的磷酸盐缓冲液(pH范围6.8 - 7.4)和一种离子组成与肠液非常相似的生理缓冲溶液(汉克斯缓冲液,pH 7.4)。用Eudragit P4135包衣的片剂在酸性介质中有大量药物释放,因此停止了对该聚合物的进一步研究。另一方面,Eudragit S(有机溶液)、Eudragit S(水分散体)和Eudragit FS可防止药物在酸性介质中释放,不过随后在缓冲介质中的药物释放受片剂在酸性介质中暴露时间的影响。在pH 7.4时,聚合物包衣片剂在两种药典规定介质中的药物释放速率相似,然而在生理缓冲液中,发现它们的释放速率按以下顺序不同:Eudragit S(水分散体)>Eudragit FS>Eudragit S(有机溶液)。结果表明,与更常用的Eudragit S相比,用新型Eudragit FS聚合物包衣的片剂更适合将药物递送至回肠结肠区域。然而,更重要的是,发现所有包衣片剂在生理缓冲液中的溶出明显慢于两种药典规定的缓冲液,这一结果类似于肠溶衣片剂在体内溶出较慢的报道。因此,有必要在溶出介质中充分模拟肠液的离子组成。

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