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齐拉西酮固体分散体系统从渗透泵片中的控释及其在禁食状态下提高的生物利用度。

Controlled release of ziprasidone solid dispersion systems from osmotic pump tablets with enhanced bioavailability in the fasted state.

作者信息

Yanfei Miao, Guoguang Chen, Lili Ren, Pingkai Ouyang

机构信息

School of Biotechnology and Pharmaceutical Engineering and.

出版信息

Drug Dev Ind Pharm. 2015;41(8):1353-62. doi: 10.3109/03639045.2014.950273. Epub 2014 Aug 20.

Abstract

OBJECTIVE

The purpose of this work was to develop a controlled release of ziprasidone with no food effect by the osmotic release strategy.

METHODS

The solution of ziprasidone and poloxamer188 (P188) with different weight ratios was spray-dried to form solid dispersion of ziprasidone (SD-ZIP). The SD-ZIP was characterized using scanning electron microscopy (SEM), differential scanning calorimetry (DSC), X-ray powder diffraction (X-RD) and solubility testing. The SD-ZIP osmotic pump tablets were prepared by wet granulation method. The effect of formulation variables on the release characteristic was investigated. The SD-ZIP osmotic pump tablets were administered to fasted and fed beagle dogs and their pharmacokinetics were compared to commercial formulation Zeldox® as a control.

RESULTS

The results of DSC and X-RD indicated that ziprasidone resides in P188 with no crystalline changes. Solubility studies demonstrated that the solubility of SD-ZIP was substantially improved compared to ziprasidone and physical mixtures of ziprasidone and P188. The optimized formulation and drug release profiles of SD-ZIP osmotic pump tablets in different medium were obtained which showed typical osmotically controlled release and could fitted to zero-order kinetics with good linear correlation. Pharmacokinetic studies in beagle dogs showed ziprasidone with prolong actions and no food effect was achieved simultaneously in SD-ZIP osmotic pump tablet compared with Zeldox®.

CONCLUSION

The SD-ZIP osmotic pump tablet could be able to enhance the bioavailability in the fasted state and showed sustained release with prolonged actions.

摘要

目的

本研究旨在通过渗透释放策略开发一种不受食物影响的齐拉西酮控释制剂。

方法

将不同重量比的齐拉西酮和泊洛沙姆188(P188)溶液进行喷雾干燥,以形成齐拉西酮固体分散体(SD-ZIP)。采用扫描电子显微镜(SEM)、差示扫描量热法(DSC)、X射线粉末衍射(X-RD)和溶解度测试对SD-ZIP进行表征。通过湿法制粒法制备SD-ZIP渗透泵片。考察了处方变量对释放特性的影响。将SD-ZIP渗透泵片给予禁食和进食的比格犬,并将其药代动力学与对照商业制剂泽尔道克斯(Zeldox®)进行比较。

结果

DSC和X-RD结果表明,齐拉西酮以无晶型变化的形式存在于P188中。溶解度研究表明,与齐拉西酮以及齐拉西酮与P188的物理混合物相比,SD-ZIP的溶解度有显著提高。获得了SD-ZIP渗透泵片在不同介质中的优化处方和药物释放曲线,呈现典型的渗透控释特征,且符合零级动力学,线性相关性良好。比格犬药代动力学研究表明,与泽尔道克斯(Zeldox®)相比,SD-ZIP渗透泵片能同时实现齐拉西酮作用时间延长且不受食物影响。

结论

SD-ZIP渗透泵片能够提高禁食状态下的生物利用度,并呈现出作用时间延长的缓释效果。

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