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亲水性载体对固体自微乳化药物传递系统结构转变及体外性质的影响

Effects of Hydrophilic Carriers on Structural Transitions and In Vitro Properties of Solid Self-Microemulsifying Drug Delivery Systems.

作者信息

Yi Tao, Zhang Jifen

机构信息

School of Health Sciences, Macao Polytechnic Institute, Macao 999078, China.

College of Pharmaceutical Sciences, Southwest University, Chongqing 400716, China.

出版信息

Pharmaceutics. 2019 Jun 8;11(6):267. doi: 10.3390/pharmaceutics11060267.

Abstract

Self-microemulsifying drug delivery systems (SMEDDS) offer potential for improving the oral bioavailability of poorly water-soluble drugs. However, their susceptibilities during long term storage and in vivo precipitation issues limit their successful commercial application. To overcome these limitations, SMEDDS can be solidified with solid carriers, thus producing solid self-microemulsifying drug delivery systems (S-SMEDDS). In this study, effects of various hydrophilic carriers on structural transitions and in vitro properties of S-SMEDDS were investigated in order to set up in vitro methods for screening out appropriate carriers for S-SMEDDS. Liquid SMEDDS was prepared and characterized using nimodipine as a model drug. The effects of various hydrophilic carriers on internal microstructure and solubilization of SMEDDS were investigated by conductivity measurement and in vitro dispersion test. The results showed that hydrophilic carriers including dextran 40, maltodextrin and PVP K30 seemed to delay the percolation transition of SMEDDS, allowing it to maintain a microstructure that was more conducive to drug dissolution, thus significantly increasing the solubilization of nimodipine in the self-microemulsifying system and decreasing drug precipitation when dispersed in simulated gastric fluid. S-SMEDDS of nimodipine were prepared by using spray drying with hydrophilic carriers. The effects of various hydrophilic carriers on in vitro properties of S-SMEDDS were investigated by using SEM, DSC, PXRD and in vitro dissolution. The results showed that properties of hydrophilic carriers, especially relative molecular mass of carriers, had obvious influences on surface morphologies of S-SMEDDS, reconstitution of microemulsion and physical state of nimodipine in S-SMEDDS. Considering that in vitro properties of S-SMEDDS are closely related to their pharmacokinetic properties in vivo, the simple and economical in vitro evaluation methods established in this paper can be used to screen solid carriers of S-SMEDDS well.

摘要

自微乳化药物递送系统(SMEDDS)为提高难溶性药物的口服生物利用度提供了潜力。然而,它们在长期储存期间的敏感性以及体内沉淀问题限制了其成功的商业应用。为了克服这些限制,SMEDDS可以与固体载体固化,从而产生固体自微乳化药物递送系统(S-SMEDDS)。在本研究中,研究了各种亲水性载体对S-SMEDDS结构转变和体外性质的影响,以便建立体外方法来筛选适合S-SMEDDS的载体。以尼莫地平为模型药物制备并表征了液体SMEDDS。通过电导率测量和体外分散试验研究了各种亲水性载体对SMEDDS内部微观结构和增溶作用的影响。结果表明,包括右旋糖酐40、麦芽糊精和聚乙烯吡咯烷酮K30在内的亲水性载体似乎延迟了SMEDDS的渗滤转变,使其能够保持更有利于药物溶解的微观结构,从而显著增加尼莫地平在自微乳化系统中的增溶作用,并减少其分散在模拟胃液中时的药物沉淀。采用喷雾干燥法,以亲水性载体为辅料制备了尼莫地平S-SMEDDS。通过扫描电子显微镜(SEM)、差示扫描量热法(DSC)、粉末X射线衍射法(PXRD)和体外溶出度试验,研究了各种亲水性载体对尼莫地平S-SMEDDS体外性质的影响。结果表明,亲水性载体的性质,尤其是载体的相对分子质量,对S-SMEDDS的表面形态、微乳液的重构以及尼莫地平在S-SMEDDS中的物理状态有明显影响。鉴于S-SMEDDS的体外性质与其体内药代动力学性质密切相关,本文建立的简单经济的体外评价方法可很好地用于筛选S-SMEDDS的固体载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/076b/6631422/7da56a7106ae/pharmaceutics-11-00267-g001.jpg

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