AlKhatib Hatim Samir, Sakr Adel
Industrial Pharmacy Graduate Program, College of Pharmacy, University of Cincinnati, Cincinnati, Ohio, USA.
Pharm Dev Technol. 2003;8(1):87-96. doi: 10.1081/pdt-120017527.
The aim of this study was to statistically optimize the use of blends of methacrylic acid ester copolymers with different permeability properties as controlled-release coating systems for tablets to produce predictable predesigned release profiles. A full factorial design was used to study and optimize the use of methacrylic acid ester copolymers Eudragit RS 30D and Eudragit RL 30D as coating materials for controlled release. Directly compressed theophylline tablets were coated with aqueous dispersions containing different proportions of the two copolymers using a side-vented coating pan (Accela Cota). The effect of polymer loading level at 5, 7.5, and 10% weight gain and curing time at 50 degrees C for 12 and 24 hours were also evaluated. Coated tablets were tested for their drug release in water using a United States Pharmacopeia (USP) dissolution apparatus #2. The results showed that increasing the content of the lower permeability copolymer Eudragit RS 30D, increasing the polymer load, and increasing curing time at 50 degrees C resulted in slower drug release. A statistical model that describes and predicts the drug release properties of the coated tablets as a function of the copolymers ratio in the coating dispersion, polymer load, and curing time at 50 degrees C was developed. The most significant factor affecting drug release was found to be the ratio of the two copolymers in the coating dispersion followed by the curing time at 50 degrees C and the polymer loading level. Good correlations were observed between the model fitted values andthe experimental values. An optimized formula prepared by superimposing two-dimensional contour plots was prepared; its release profile was found to be in agreement with the prediction obtained from the model.
本研究的目的是通过统计学方法优化使用具有不同渗透性的甲基丙烯酸酯共聚物混合物作为片剂的控释包衣系统,以产生可预测的预先设计的释放曲线。采用全因子设计来研究和优化甲基丙烯酸酯共聚物Eudragit RS 30D和Eudragit RL 30D作为控释包衣材料的使用。使用侧通风包衣锅(Accela Cota)将含有不同比例两种共聚物的水分散体包衣在直接压片的茶碱片上。还评估了聚合物负载水平在5%、7.5%和10%重量增加时以及在50℃下固化12小时和24小时的效果。使用美国药典(USP)溶出装置#2测试包衣片在水中的药物释放。结果表明,增加低渗透性共聚物Eudragit RS 30D的含量、增加聚合物负载量以及增加在50℃下的固化时间会导致药物释放变慢。建立了一个统计模型,该模型描述并预测了包衣片的药物释放特性与包衣分散体中共聚物比例、聚合物负载量以及在50℃下的固化时间之间的函数关系。发现影响药物释放的最显著因素是包衣分散体中两种共聚物的比例,其次是在50℃下的固化时间和聚合物负载水平。在模型拟合值和实验值之间观察到良好的相关性。通过叠加二维等高线图制备了一个优化配方;发现其释放曲线与模型预测结果一致。