Patel Dasharath M, Patel Natavarlal M, Patel Viral F, Bhatt Darshini A
Shri B. M. Shah College of Pharmaceutical Education & Research, Modasa, India.
AAPS PharmSciTech. 2007 Apr 13;8(2):Article 30. doi: 10.1208/pt0802030.
The purpose of this research was to develop and optimize a controlled-release multiunit floating system of a highly water soluble drug, ranitidine HCl, using Compritol, Gelucire 50/13, and Gelucire 43/01 as lipid carriers. Ranitidine HCl-lipid granules were prepared by the melt granulation technique and evaluated for in vitro floating and drug release. Ethyl cellulose, methylcellulose, and hydroxypropyl methylcellulose were evaluated as release rate modifiers. A 3(2) full factorial design was used for optimization by taking the amounts of Gelucire 43/01 (X (1)) and ethyl cellulose (X (2)) as independent variables, and the percentage drug released in 1(Q(1)), 5(Q(5)), and 10 (Q(10)) hours as dependent variables. The results revealed that the moderate amount of Gelucire 43/01 and ethyl cellulose provides desired release of ranitidine hydrochloride from a floating system. Batch F4 was considered optimum since it contained less Gelucire and was more similar to the theoretically predicted dissolution profile (f(2) = 62.43). The temperature sensitivity studies for the prepared formulations at 40 degrees C/75% relative humidity for 3 months showed no significant change in in vitro drug release pattern. These studies indicate that the hydrophobic lipid Gelucire 43/01 can be considered an effective carrier for design of a multiunit floating drug delivery system for highly water soluble drugs such as ranitidine HCl.
本研究的目的是使用Compritol、Gelucire 50/13和Gelucire 43/01作为脂质载体,开发并优化高水溶性药物盐酸雷尼替丁的控释多单元漂浮系统。通过熔融制粒技术制备盐酸雷尼替丁 - 脂质颗粒,并对其体外漂浮和药物释放进行评价。评价了乙基纤维素、甲基纤维素和羟丙基甲基纤维素作为释放速率调节剂的效果。采用3(2)全因子设计进行优化,将Gelucire 43/01(X(1))和乙基纤维素(X(2))的用量作为自变量,将1小时(Q(1))、5小时(Q(5))和10小时(Q(10))释放的药物百分比作为因变量。结果表明,适量的Gelucire 43/01和乙基纤维素可使盐酸雷尼替丁从漂浮系统中实现理想释放。批次F4被认为是最佳的,因为它含有较少的Gelucire,并且与理论预测的溶出曲线更相似(f(2)=62.43)。对制备的制剂在40℃/75%相对湿度下进行3个月的温度敏感性研究,结果表明体外药物释放模式无显著变化。这些研究表明,疏水性脂质Gelucire 43/01可被认为是设计用于高水溶性药物如盐酸雷尼替丁的多单元漂浮药物递送系统的有效载体。