Narendra C, Srinath M S, Babu Ganesh
Department of Pharmaceutics, Krupanidhi College of Pharmacy, Bangalore-34, India.
AAPS PharmSciTech. 2006 Apr 7;7(2):E34. doi: 10.1208/pt070234.
The purpose of the present study was to develop an optimized gastric floating drug delivery system (GFDDS) containing metoprolol tartrate (MT) as a model drug by the optimization technique. A 2(3) factorial design was employed in formulating the GFDDS with total polymer content-to-drug ratio (X1), polymer-to-polymer ratio (X2), and different viscosity grades of hydroxypropyl methyl cellulose (HPMC) (X3) as independent variables. Four dependent variables were considered: percentage of MT release at 8 hours, T50%, diffusion coefficient, and floating time. The main effect and interaction terms were quantitatively evaluated using a mathematical model. The results indicate that X1 and X2 significantly affected the floating time and release properties, but the effect of different viscosity grades of HPMC (K4M and K10M) was nonsignificant. Regression analysis and numerical optimization were performed to identify the best formulation. Fickian release transport was confirmed as the release mechanism from the optimized formulation. The predicted values agreed well with the experimental values, and the results demonstrate the feasibility of the model in the development of GFDDS.
本研究的目的是通过优化技术开发一种以酒石酸美托洛尔(MT)为模型药物的优化胃漂浮药物递送系统(GFDDS)。采用2(3)析因设计来制备GFDDS,将聚合物总含量与药物的比例(X1)、聚合物与聚合物的比例(X2)以及不同粘度等级的羟丙基甲基纤维素(HPMC)(X3)作为自变量。考虑了四个因变量:8小时时MT的释放百分比、T50%、扩散系数和漂浮时间。使用数学模型对主效应和交互项进行了定量评估。结果表明,X1和X2对漂浮时间和释放特性有显著影响,但不同粘度等级的HPMC(K4M和K10M)的影响不显著。进行了回归分析和数值优化以确定最佳配方。证实优化配方的释放机制为菲克释放转运。预测值与实验值吻合良好,结果证明了该模型在GFDDS开发中的可行性。