Haddish-Berhane Nahor, Jeong Seong Hoon, Haghighi Kamyar, Park Kinam
Department of Agricultural and Biological Engineering, Purdue University, West Lafayette, IN 47907, USA.
Int J Pharm. 2006 Oct 12;323(1-2):64-71. doi: 10.1016/j.ijpharm.2006.05.064. Epub 2006 Jun 6.
The objective of the present study is to include coating thickness non-uniformity in the development of a drug release model using coated ion-exchange pellets through the use of stochastic approaches. Drug release from ion-exchange resins was described using a Nernst-Plank model. Complexes of a model drug (dextromethorphan) and Dowex 50WX4-200 were prepared using a modified batch method and coated with Kollicoat SR 30D polymer. The deterministic model, validated using experimental drug release profiles for different coating thicknesses at 0%, 10%, 15%, 20% (w/w), was in agreement with the experimental data with a maximum root mean square error (RMSE) of 2.4%. An arbitrary Lagrangian-Eulerian approach was pursued to develop models of spherical pellets with non-uniform coating thicknesses. The Monte Carlo method was used to simulate the effect of the level of coating deformity on the cumulative drug release profile. Considering the co-existence of equal percentages of deformed and undeformed pellets in a batch, the cumulative release profile can vary by approximately +/-6% as a result of coating non-uniformity. The release profile obtained for a model of an arbitrary pellet with an actual non-uniform coating profile was in good agreement with the average release profile for the models of the theoretical randomly deformed pellets. The developed mathematical model is a useful tool to evaluate and predict release profiles of polymer coated ion-exchange resin complexes.
本研究的目的是通过使用随机方法,将包衣厚度不均匀性纳入使用包衣离子交换微丸的药物释放模型的开发中。使用能斯特-普朗克模型描述离子交换树脂的药物释放。采用改进的分批法制备模型药物(右美沙芬)与Dowex 50WX4 - 200的复合物,并用Kollicoat SR 30D聚合物包衣。确定性模型通过0%、10%、15%、20%(w/w)不同包衣厚度的实验药物释放曲线进行验证,与实验数据一致,最大均方根误差(RMSE)为2.4%。采用任意拉格朗日-欧拉方法建立包衣厚度不均匀的球形微丸模型。使用蒙特卡罗方法模拟包衣变形程度对累积药物释放曲线的影响。考虑到一批中变形和未变形微丸百分比相等的共存情况,由于包衣不均匀,累积释放曲线可能会有大约±6%的变化。具有实际不均匀包衣轮廓的任意微丸模型得到的释放曲线与理论随机变形微丸模型的平均释放曲线吻合良好。所开发的数学模型是评估和预测聚合物包衣离子交换树脂复合物释放曲线的有用工具。