Sungthongjeen Srisagul, Sriamornsak Pornsak, Puttipipatkhachorn Satit
Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Naresuan University, Phitsanulok, Thailand.
Eur J Pharm Biopharm. 2008 May;69(1):255-63. doi: 10.1016/j.ejpb.2007.09.013. Epub 2007 Oct 1.
Floating multi-layer coated tablets were designed based on gas formation. The system consists of a drug-containing core tablet coated with a protective layer (hydroxypropyl methylcellulose), a gas forming layer (sodium bicarbonate) and a gas-entrapped membrane, respectively. The mechanical properties of acrylic polymers (Eudragit RL 30D, RS 30D, NE 30D) and ethylcellulose were characterized by the puncture test in order to screen a suitable film for the system. Eudragit RL 30D was chosen as a gas-entrapped membrane due to its high flexibility and high water permeability. The obtained tablets enabled to float due to the CO2-gas formation and the gas entrapment by polymeric membrane. The effect of formulation variables on floating properties and drug release was investigated. The floating tablets using direct-compressed cores had shorter time to float and faster drug release than those using wet-granulated cores. The increased amount of a gas forming agent did not affect time to float but increased the drug release from the floating tablets while increasing coating level of gas-entrapped membrane increased time to float and slightly retarded drug release. Good floating properties and sustained drug release were achieved. These floating tablets seem to be a promising gastroretentive drug delivery system.
基于气体生成设计了漂浮型多层包衣片。该系统由分别包有保护层(羟丙基甲基纤维素)、产气层(碳酸氢钠)和气阱膜的含药核心片组成。通过穿刺试验对丙烯酸聚合物(Eudragit RL 30D、RS 30D、NE 30D)和乙基纤维素的机械性能进行了表征,以便为该系统筛选合适的薄膜。由于Eudragit RL 30D具有高柔韧性和高透水性,因此被选作气阱膜。所得片剂由于CO2气体的生成以及聚合物膜对气体的截留而能够漂浮。研究了制剂变量对漂浮性能和药物释放的影响。与使用湿法制粒核心片的漂浮片相比,使用直接压片核心片的漂浮片具有更短的漂浮时间和更快的药物释放。产气剂用量的增加不影响漂浮时间,但增加了漂浮片的药物释放,而增加气阱膜的包衣水平则增加了漂浮时间并略微延迟了药物释放。实现了良好的漂浮性能和持续的药物释放。这些漂浮片似乎是一种很有前景的胃滞留药物递送系统。