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环糊精聚合物的可溶性和不溶性对羟丙甲纤维素片药物释放的影响。

Influence of soluble and insoluble cyclodextrin polymers on drug release from hydroxypropyl methylcellulose tablets.

机构信息

Department of Pharmacy and Pharmaceutical Technology, University of Navarra, Pamplona, Spain.

出版信息

Drug Dev Ind Pharm. 2009 Oct;35(10):1264-70. doi: 10.1080/03639040902882306.

Abstract

BACKGROUND

The influence of beta-cyclodextrin (beta-CD) polymers on drug release from hydroxypropyl methylcellulose (HPMC) matrices has not been reported in the literature.

AIM

The influence of monomeric beta-CD and both soluble and insoluble beta-CD polymers on drug release from tablets containing either 30% or 50% hydroxypropyl methylcellulose has been studied using diflunisal (DF) as model drug.

METHOD

The DF-beta-CD inclusion complex (1:1 M) was prepared by coevaporation and characterised using X-ray diffraction, differential thermal analysis, and IR spectroscopy. The dissolution assays were performed according to the USP paddle method.

RESULTS

The incorporation of beta-CD in the complexed form increases drug release from hydroxypropyl methylcellulose tablets in comparison with the physical mixture because of the better solubilization of the drug. The soluble polymer promotes drug release to a higher extent than the physical mixture with monomeric beta-CD, but the insoluble polymer, which is itself a hydrogel, gives rise to the most retarded release profile, probably by retention of the drug in its structure. The formulations containing physical mixtures with either beta-CD or the soluble polymer present an optimum adjustment to zero-order release kinetics, and the inclusion complex followed non-Fickian diffusion according to the Korsmeyer-Peppas model.

CONCLUSION

The release profile of DF from a HPMC matrix can be modulated in different ways by the use of either monomeric or polymeric beta-CD.

摘要

背景

β-环糊精(β-CD)聚合物对羟丙基甲基纤维素(HPMC)基质中药物释放的影响在文献中尚未报道。

目的

使用双氯芬酸(DF)作为模型药物,研究了单体β-CD 以及可溶性和不溶性β-CD 聚合物对分别含有 30%或 50%羟丙基甲基纤维素的片剂中药物释放的影响。

方法

通过共蒸发制备 DF-β-CD 包合物(1:1 M),并使用 X 射线衍射、差示热分析和红外光谱对其进行了表征。根据 USP 桨法进行溶解试验。

结果

与物理混合物相比,由于药物的更好溶解,将β-CD 以包合形式掺入可增加 HPMC 片剂中药物的释放。可溶性聚合物比单体β-CD 的物理混合物更能促进药物释放,但不溶性聚合物(本身是一种水凝胶)会导致释放曲线最滞后,可能是由于药物被保留在其结构中。含有物理混合物的制剂(无论是与β-CD 还是可溶性聚合物)均能最佳地调整至零级释放动力学,且包合物根据 Korsmeyer-Peppas 模型遵循非 Fickian 扩散。

结论

通过使用单体或聚合物β-CD 可以以不同方式调节 DF 从 HPMC 基质中的释放曲线。

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