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基于酸碱中和的沉淀/匀化法制备阿立哌唑纳米混悬剂的增溶作用及其口服生物利用度研究。

Enhanced dissolution and oral bioavailability of aripiprazole nanosuspensions prepared by nanoprecipitation/homogenization based on acid-base neutralization.

机构信息

School of Pharmacy, Fudan University, Key Laboratory of Smart Drug Delivery of Ministry of Education and PLA, Shanghai, 201203, PR China.

出版信息

Int J Pharm. 2012 Nov 15;438(1-2):287-95. doi: 10.1016/j.ijpharm.2012.09.020. Epub 2012 Sep 16.

Abstract

In this study, aripiprazole (APZ), a weak alkaline drug with pH-dependent solubility, was selected as model drug to examine the feasibility of preparing nanosuspensions using nanoprecipitation/homogenization technique based on acid-base neutralization. The related substances in nanosuspensions prepared under optimal conditions were slightly increased as compared with APZ raw material. The resultant APZ nanosuspensions showed a mean particle size of 350 nm with polydispersion index (PI) value of 0.20. Good physical stability was kept for over 40 days. SEM observation showed the morphology of oval crystals with rough surface. Nanosuspensions significantly increased the solubility as well as the dissolution of APZ due to the decreased particle size. Differential scanning calorimetry and powder X-ray diffractometry confirmed the crystallinity of APZ in nanosuspensions. APZ nanosuspensions got maximum absorption rate and extent comparing with APZ commercial tablet and suspensions with relative bioavailability of 123.43 ± 12.98% and 171.41 ± 14.62%, respectively. This technique has the potential to prepare nanosuspensions of insoluble drugs with pH-dependent solubility.

摘要

在这项研究中,选择弱碱性药物阿立哌唑(APZ)作为模型药物,考察了基于酸碱中和的纳米沉淀/匀化技术制备纳米混悬剂的可行性。与 APZ 原料药相比,在最佳条件下制备的纳米混悬剂中的有关物质略有增加。所得的 APZ 纳米混悬剂的平均粒径为 350nm,多分散指数(PI)值为 0.20。良好的物理稳定性可保持超过 40 天。SEM 观察显示,其形态为表面粗糙的椭圆形晶体。由于粒径减小,纳米混悬剂显著提高了 APZ 的溶解度和溶出度。差示扫描量热法和粉末 X 射线衍射法证实了纳米混悬剂中 APZ 的结晶度。与 APZ 商业片剂和混悬剂相比,APZ 纳米混悬剂的吸收速度和程度最大,相对生物利用度分别为 123.43±12.98%和 171.41±14.62%。该技术有可能制备具有 pH 依赖性溶解度的难溶性药物的纳米混悬剂。

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