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喷雾干燥法制备的载卡马西平壳聚糖和羟丙基甲基纤维素微球:制备与表征

Spray-dried carbamazepine-loaded chitosan and HPMC microspheres: preparation and characterisation.

作者信息

Filipović-Grcić Jelena, Perissutti Beatrice, Moneghini Mariarosa, Voinovich Dario, Martinac Anita, Jalsenjak Ivan

机构信息

Department of Pharmaceutics, Faculty of Pharmacy and Biochemistry, University of Zagreb, A. Kovacića 1, 10 000 Zagreb, Croatia.

出版信息

J Pharm Pharmacol. 2003 Jul;55(7):921-31. doi: 10.1211/0022357021503.

Abstract

In this study, the potential of the spray-drying technique for preparing microspheres able to modify the release profile of carbamazepine was investigated. Low-, medium- and high-molecular-weight chitosan and hydroxypropyl methylcellulose (HPMC) in different drug-polymer ratios were used for the preparation of microspheres. The microspheres, characterized by X-ray powder diffractometry (XRD) and differential scanning calorimetry (DSC), were also studied with respect to particle size distribution, drug content and drug release. The results indicated that the entrapment efficiency (EE), as well as carbamazepine release profile, depended on polymeric composition and drug-polymer ratios of the microspheres prepared. The best entrapment efficiencies were obtained when chitosan of low-molecular-weight (CL) or HPMC were used for the microencapsulation. For all types of polymer used, the microspheres with low carbamazepine loading (6.3% w/w) showed better control of drug release than the microspheres with higher drug loadings. The HPMC microspheres showed the slowest carbamazepine release profile with no initial burst effect. Carbamazepine release profiles from ternary systems, carbamazepine-CL-HPMC microspheres, depended mostly on HPMC content and showed similar carbamazepine release profile as CL microspheres when HPMC content was low (9:1 CL-HPMC ratio, w/w). Otherwise, the carbamazepine release from CL-HPMC microspheres was remarkably faster than from either chitosan or HPMC microspheres. The release profile of carbamazepine from the microspheres was highly correlated with the crystalline changes occurring in the matrix.

摘要

在本研究中,对喷雾干燥技术制备能够改变卡马西平释放曲线的微球的潜力进行了研究。使用不同药物 - 聚合物比例的低、中、高分子量壳聚糖和羟丙基甲基纤维素(HPMC)来制备微球。通过X射线粉末衍射(XRD)和差示扫描量热法(DSC)对微球进行表征,并研究了其粒度分布、药物含量和药物释放情况。结果表明,包封率(EE)以及卡马西平的释放曲线取决于所制备微球的聚合物组成和药物 - 聚合物比例。当使用低分子量壳聚糖(CL)或HPMC进行微囊化时,可获得最佳包封率。对于所有类型的聚合物,低卡马西平载药量(6.3% w/w)的微球比高载药量微球对药物释放的控制更好。HPMC微球显示出最慢的卡马西平释放曲线且无初始突释效应。三元体系卡马西平 - CL - HPMC微球的卡马西平释放曲线主要取决于HPMC含量,当HPMC含量较低(CL - HPMC比例为9:1,w/w)时,其卡马西平释放曲线与CL微球相似。否则,CL - HPMC微球中卡马西平的释放比壳聚糖或HPMC微球显著更快。微球中卡马西平的释放曲线与基质中发生的晶体变化高度相关。

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