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工艺参数和处方因素对用尤特奇L 100-55包衣的片剂药物释放的影响。

Influence of processing parameters and formulation factors on the drug release from tablets powder-coated with Eudragit L 100-55.

作者信息

Sauer Dorothea, Zheng Weijia, Coots Lonique B, McGinity James W

机构信息

Drug Dynamics Institute, The University of Texas at Austin, Austin 78712, USA.

出版信息

Eur J Pharm Biopharm. 2007 Sep;67(2):464-75. doi: 10.1016/j.ejpb.2007.02.021. Epub 2007 Mar 7.

Abstract

The aim of this study was to develop a dry powder coating process for chlorpheniramine maleate (CPM) tablets using Eudragit L 100-55 as the delayed release polymer. Powder coating, a water and organic solvent-free process, was investigated as a method to prevent the migration of an ionizable, highly water soluble model drug into the polymeric film during the coating process. Eudragit L 100-55 was pre-plasticized with triethyl citrate (TEC) using hot-melt extrusion at levels of 20%, 30%, and 40%, based on the polymer weight. The extrudate was subsequently cut into pellets and cryogenically ground into a fine powder. Talc was incorporated into the coating powder as an anti-tack agent. PEG 3350 was used as a primer for the powder coating of tablets with pre-plasticized Eudragit L 100-55. The addition of polyethylene glycol 3350 (PEG 3350) to the pre-plasticized Eudragit L 100-55 was necessary to enhance the adhesion of the coating powder to the tablet cores. PEG 3350 also improved film formation and coalescence of the polymeric particles due to its plasticization effects on the acrylic polymer. For comparison, theophylline tablets were also coated with pre-plasticized Eudragit L 100-55. Theophylline was selected as a less water soluble model drug. The powder coating process was performed in a modified laboratory scale spheronizer. The drug release rate was dependent both on TEC content and the coating level. The stability of the powder-coated CPM tablets was confirmed at 25 degrees C/60% RH over a storage time of 12 weeks.

摘要

本研究的目的是开发一种以Eudragit L 100-55为缓释聚合物的马来酸氯苯那敏(CPM)片剂的干粉包衣工艺。干粉包衣是一种无水性和有机溶剂的工艺,作为一种防止可电离的高水溶性模型药物在包衣过程中迁移到聚合物膜中的方法进行了研究。基于聚合物重量,使用热熔挤出法将柠檬酸三乙酯(TEC)以20%、30%和40%的水平对Eudragit L 100-55进行预塑化。随后将挤出物切成颗粒并低温研磨成细粉。滑石粉作为抗粘剂加入到包衣粉末中。聚乙二醇3350(PEG 3350)用作预塑化Eudragit L 100-55片剂干粉包衣的底漆。向预塑化的Eudragit L 100-55中添加聚乙二醇3350(PEG 3350)对于增强包衣粉末与片芯的粘附力是必要的。PEG 3350由于其对丙烯酸聚合物的增塑作用,还改善了聚合物颗粒的成膜和聚结。为了进行比较,茶碱片也用预塑化的Eudragit L 100-55进行包衣。茶碱被选为水溶性较低的模型药物。干粉包衣工艺在改良的实验室规模滚圆机中进行。药物释放速率既取决于TEC含量,也取决于包衣水平。在25℃/60%相对湿度下储存12周后,证实了干粉包衣CPM片剂的稳定性。

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