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载卡托普利的基于玉米醇溶蛋白的多孔漂浮胃滞留片的制备和评价。

Preparation and evaluation of captopril loaded gastro-retentive zein based porous floating tablets.

机构信息

School of Biomedical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.

School of Biomedical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China; JiaxingYaojiao Medical Device Co. Ltd., 321 Jiachuang Road, Jiaxing 314032, China.

出版信息

Int J Pharm. 2020 Apr 15;579:119185. doi: 10.1016/j.ijpharm.2020.119185. Epub 2020 Feb 26.

Abstract

In this study, gastro-retentive porous floating tablets of captopril based on zein are reported using l-menthol as a porogen. Tablets were prepared by the direct compression method. Removing of l-menthol through sublimation process generated pores in tablets, which decreased the density to promote floating over gastric fluid. Prepared tablets showed no floating lag time and prolong total floating time (>24 h). Drug release was found dependent upon porosity of tablets, an increase in porosity of tablets resulted in increased drug release, so it can be tuned by varying concentration of l-menthol. In addition to floating and sustained release properties, porous tablets showed robust mechanical behavior in wet conditions, which can enable them to withstand real gastric environment stress. In vivo studies using New Zealand rabbits also confirmed the prolonged gastric retention (24 h) and plasma drug concentration-time profile showed sustained release of captopril with higher T and MRT as compared to marketed immediate-release tablets. Overall, it was concluded that effective gastric retention can be achieved using porous zein tablets using l-menthol as a porogen.

摘要

本研究报道了基于玉米醇溶蛋白的胃滞留多孔漂浮卡托普利片,其中使用 l-薄荷醇作为致孔剂。采用直接压片法制备片剂。通过升华过程去除 l-薄荷醇会在片剂中产生孔,从而降低密度以促进在胃液上漂浮。所制备的片剂没有漂浮滞后时间,并且总漂浮时间延长(>24 小时)。发现药物释放取决于片剂的孔隙率,增加片剂的孔隙率会导致药物释放增加,因此可以通过改变 l-薄荷醇的浓度来调节。除了漂浮和持续释放特性外,多孔片剂在潮湿条件下还表现出良好的机械性能,这使其能够承受真实的胃环境压力。使用新西兰兔的体内研究也证实了延长的胃滞留(24 小时),并且与市售的即刻释放片剂相比,药物浓度-时间曲线显示卡托普利的持续释放,T 和 MRT 更高。总体而言,结论是使用 l-薄荷醇作为致孔剂的多孔玉米醇溶蛋白片剂可以实现有效的胃滞留。

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