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固体分散体方法提高新型抗癫痫药物司替戊醇的溶出速率

Solid Dispersion Approach Improving Dissolution Rate of Stiripentol: a Novel Antiepileptic Drug.

作者信息

Afifi Samar

机构信息

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia. ; Department of Pharmaceutics, National Organization for Drug Control and Research, Giza, Egypt.

出版信息

Iran J Pharm Res. 2015 Fall;14(4):1001-14.

Abstract

Some drugs have low bioavailability due to their poor aqueous solubility and/or slow dissolution rate in biological fluids. Stiripentol (STP) is a novel anticonvulsant drug that is structurally unrelated to the currently available antiepileptics. It has poor aqueous solubility and its solubility has to be enhanced accordingly. Polyethyleneglycol 6000 (PEG-6000) is commonly utilized as a hydrophilic carrier for poorly water soluble drugs in order to improve their bioavailability. STP and PEG-6000 binary system was obtained by physical mixture, solvent evaporation, co-evaporation and melting methods using different weight ratios. The properties of the prepared binary systems were evaluated using dissolution rate, phase solubility, Fourier-transform infrared (FTIR) spectroscopy, differential scanning calorimetry (DSC) and scanning electron microscope (SEM) studies. The FTIR spectroscopic studies showed the stability of STP and absence of STP-PEG-6000 interaction. The DSC and SEM studies indicated the amorphous state of STP in its binary systems with PEG-6000. Dissolution profile of STP was significantly improved via complexation with PEG-6000 as compared with the pure drug. The binary system which was prepared using melting method showed the highest dissolution rate. The promising results of the prepared binary systems open the avenue for further oral formulation of STP.

摘要

一些药物由于其在水性介质中的低溶解度和/或在生物流体中的缓慢溶解速率而具有低生物利用度。司替戊醇(STP)是一种新型抗惊厥药物,其结构与目前可用的抗癫痫药物无关。它的水溶性较差,因此其溶解度必须相应提高。聚乙二醇6000(PEG - 6000)通常用作水溶性差的药物的亲水性载体,以提高其生物利用度。通过物理混合、溶剂蒸发、共蒸发和熔融方法,使用不同的重量比获得了STP和PEG - 6000二元体系。使用溶解速率、相溶解度、傅里叶变换红外(FTIR)光谱、差示扫描量热法(DSC)和扫描电子显微镜(SEM)研究来评估所制备的二元体系的性质。FTIR光谱研究表明STP的稳定性以及不存在STP - PEG - 6000相互作用。DSC和SEM研究表明STP在其与PEG - 6000的二元体系中呈无定形态。与纯药物相比,通过与PEG - 6000络合,STP的溶出曲线得到了显著改善。使用熔融法制备的二元体系显示出最高的溶解速率。所制备的二元体系的良好结果为STP的进一步口服制剂开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ec/4673928/adeb778fcb59/ijpr-14-1001-g001.jpg

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