Huang Yaw-Bin, Tsai Yi-Hung, Lee Shu-Hui, Chang Jui-Sheng, Wu Pao-Chu
School of Pharmacy, Kaohsiung Medical University, No. 100, Shih-Chuan 1st Rd., Kaohsiung City 80708, Taiwan, ROC.
Int J Pharm. 2005 Jan 31;289(1-2):87-95. doi: 10.1016/j.ijpharm.2004.10.021. Epub 2004 Dec 25.
The purpose of this study was to optimize the pH-dependent release of nicardipine hydrochloride extended release formulations by using simultaneously combination two hydrophilic polymers: hydroxypropylmethylcellulose (HPMC) and sodium alginate as retardant and avicel as additive. The constrained mixture experimental design was used to prepare systematic model formulations which were composed of three formulation variables: the content of HPMC (X1), avicel (X2), and sodium alginate (X3). The response surface methodology (RSM) and multiple response optimization utilizing the polynomial equation were used to search for the optimal formulation with specific release rate at different time intervals and to quantify the effect of each formulation variables. The drug release percent at 3, 6 and 12 h were the target responses and were restricted to 10-30% (Y3h), 40-65% (Y6h) and not less than 80% (Y12h), respectively. The results showed that the effect of combination of HPMC and sodium alginate was the most influence factor on the drug release from extended-release matrix tablets. The observed results of Y3h, Y6h and Y12h coincided well with the predictions in the RSM optimization technique, indicating it was quite useful for optimizing pharmaceutical formulation. The mechanism of drug release from extended-release matrix tablets was dependent on the added amount of alginate. The release kinetic of drug from HPMC matrix tablets with alginate was followed the zero-order release pattern.
羟丙基甲基纤维素(HPMC)和海藻酸钠作为阻滞剂以及微晶纤维素作为添加剂,来优化盐酸尼卡地平缓释制剂的pH依赖性释放。采用约束混合物实验设计来制备系统的模型制剂,这些制剂由三个制剂变量组成:HPMC(X1)、微晶纤维素(X2)和海藻酸钠(X3)的含量。使用响应面法(RSM)和利用多项式方程的多响应优化来寻找在不同时间间隔具有特定释放速率的最佳制剂,并量化每个制剂变量的影响。3、6和小时的药物释放百分比为目标响应,分别限制为10 - 30%(Y3h)、40 - 65%(Y6h)和不少于80%(Y12h)。结果表明,HPMC和海藻酸钠组合的影响是对缓释基质片药物释放的最主要影响因素。Y3h、Y6h和Y12h的观察结果与RSM优化技术中的预测结果吻合良好,表明其对优化药物制剂非常有用。缓释基质片的药物释放机制取决于海藻酸钠的添加量。含海藻酸钠的HPMC基质片的药物释放动力学遵循零级释放模式。