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含聚环氧乙烷的亲水性基质系统用于水不溶性药物零级控释的设计与评价

Design and Evaluation of Hydrophilic Matrix System Containing Polyethylene Oxides for the Zero-Order Controlled Delivery of Water-Insoluble Drugs.

作者信息

Wang Lijie, Chen Kai, Wen Haoyang, Ouyang Defang, Li Xue, Gao Yunyun, Pan Weisan, Yang Xinggang

机构信息

Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, 110000, China.

State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences (ICMS), University of Macau, Macau, China.

出版信息

AAPS PharmSciTech. 2017 Jan 1;18(1):82-92. doi: 10.1208/s12249-016-0498-y. Epub 2016 Feb 16.

Abstract

The aim of this study was to design a polyethylene oxide (PEO) binary hydrophilic matrix controlled system and investigate the most important influence(s) on the in vitro water-insoluble drug release behavior of this controlled system. Direct-compressed PEO binary matrix tablets were obtained from a variety of low viscosity hydrophilic materials as a sustained agent, using anhydrous drugs as a model drug. Water uptake rate, swelling rate, and erosion rate of matrices were investigated for the evaluation of the PEO hydrophilic matrix systems. The effect of the dose, the solubility of water-insoluble drug, and the rheology of polymers on in vitro release were also discussed. Based on the in vitro release kinetics study, three optimized PEO binary matrices were selected for further research. And, these PEO binary matrices had shown the similar release behavior that had been evaluated by the similarity factor f . Further study indicated that they had identical hydration, swelling, and erosion rate. Moreover, rheology study exhibited the similar rheological equation of Herschel-Bulkley and their viscosity was also within the same magnitude. Therefore, viscosity plays the most important role to control drug release compared to other factors in PEO binary matrix system. This research provides fundamental understanding of in vitro drug release of PEO binary hydrophilic matrix tablets and helps pharmaceutical workers to develop a hydrophilic controlled system, which will effectively shorten the process of formulation development by reducing trial-and-error.

摘要

本研究的目的是设计一种聚环氧乙烷(PEO)二元亲水性基质控释系统,并研究对该控释系统体外水不溶性药物释放行为的最重要影响因素。以无水药物为模型药物,从多种低粘度亲水性材料作为缓释剂直接压片制备PEO二元基质片。研究了基质的吸水率、溶胀率和侵蚀率,以评估PEO亲水性基质系统。还讨论了剂量、水不溶性药物的溶解度和聚合物的流变学对体外释放的影响。基于体外释放动力学研究,选择了三种优化的PEO二元基质进行进一步研究。并且,这些PEO二元基质表现出相似的释放行为,通过相似因子f进行了评估。进一步研究表明它们具有相同的水合、溶胀和侵蚀速率。此外,流变学研究显示了相似的赫谢尔-布尔克利流变方程,并且它们的粘度也在同一范围内。因此,在PEO二元基质系统中,与其他因素相比,粘度对控制药物释放起着最重要的作用。本研究为PEO二元亲水性基质片的体外药物释放提供了基本认识,并有助于制药工作者开发亲水性控释系统,通过减少试错有效地缩短制剂开发过程。

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