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在高速旋转压片机上开发可崩解的多单元片。

Development of disintegrating multiple-unit tablets on a high-speed rotary tablet press.

作者信息

Wagner K G, Krumme M, Beckert T E, Schmidt P C

机构信息

Institut für Pharmazie, Universität Tübingen, Tübingen, Germany.

出版信息

Eur J Pharm Biopharm. 2000 Sep;50(2):285-92. doi: 10.1016/s0939-6411(00)00078-3.

Abstract

Enteric coated bisacodyl pellets were compressed into divisible disintegrating tablets on a high speed rotary tablet press and investigated for pellet damages. The degree of pellet damages was examined via the bisacodyl dissolution during the acid treatment of' the drug release test for enteric coated articles according to USP 23. The damages depended on the type of filler-binder used and settings of the tablet press. Avicel PH 101 proved to be the most suitable filler-binder, effecting homogeneous distribution of the pellets within the tablets, as could be shown by image analysis of coloured pellets. The speed of the tablet press had noo influence on the pellet damages using Avicel PH 101 as a filler-binder, however, tablets containing 70% (w/w) of coated pellets did not fulfil the requirements of USP 23, despite optimum elasticity and coating thickness of a new Eudragit FS 30 D coating. Reducing the proportion of pellets to 60% per tablet, less than 10% of bisacodyl were released within 2 h during acid treatment thus fulfilling the requirements of the USP 23.

摘要

将肠溶包衣的比沙可啶微丸在高速旋转压片机上压制成可分割的分散片,并对微丸的破损情况进行研究。根据美国药典23版对肠溶包衣制剂进行药物释放测试时,通过在酸处理过程中比沙可啶的溶出度来检查微丸的破损程度。微丸的破损情况取决于所用填充剂-黏合剂的类型以及压片机的设置。事实证明,微晶纤维素PH 101是最合适的填充剂-黏合剂,通过对染色微丸的图像分析可以看出,它能使微丸在片剂中均匀分布。使用微晶纤维素PH 101作为填充剂-黏合剂时,压片机的速度对微丸破损情况没有影响,然而,尽管新型聚丙烯酸树脂FS 30 D包衣具有最佳弹性和包衣厚度,但含有70%(w/w)包衣微丸的片剂仍不符合美国药典23版的要求。将每片微丸的比例降至60%,在酸处理过程中,2小时内比沙可啶的释放量不到10%,从而符合美国药典23版的要求。

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