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首页> 外文期刊>International Journal of Pharmaceutics >Statistical optimisation of diclofenac sustained release pellets coated with polymethacrylic films.
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Statistical optimisation of diclofenac sustained release pellets coated with polymethacrylic films.

机译:统计优化的双氯芬酸缓释微丸涂有聚甲基丙烯酸薄膜。

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摘要

The objective of the present study was to evaluate three formulation parameters for the application of polymethacrylic films from aqueous dispersions in order to obtain multiparticulate sustained release of diclofenac sodium. Film coating of pellet cores was performed in a laboratory fluid bed apparatus. The chosen independent variables, i.e. the concentration of plasticizer (triethyl citrate), methacrylate polymers ratio (Eudragit RS:Eudragit RL) and the quantity of coating dispersion were optimised with a three-factor, three-level Box-Behnken design. The chosen dependent variables were cumulative percentage values of diclofenac dissolved in 3, 4 and 6 h. Based on the experimental design, different diclofenac release profiles were obtained. Response surface plots were used to relate the dependent and the independent variables. The optimisation procedure generated an optimum of 40% release in 3 h. The levels of plasticizer concentration, quantity of coating dispersion and polymer to polymer ratio (Eudragit RS:Eudragit RL) were 25% w/w, 400 g and 3/1, respectively. The optimised formulation prepared according to computer-determined levels provided a release profile, which was close to the predicted values. We also studied thermal and surface characteristics of the polymethacrylic films to understand the influence of plasticizer concentration on the drug release from the pellets.
机译:本研究的目的是评估从水性分散体中应用聚甲基丙烯酸薄膜的三个配方参数,以获得双氯芬酸钠的多颗粒持续释放。丸芯的膜包衣在实验室流化床设备中进行。所选的独立变量,即增塑剂(柠檬酸三乙酯)的浓度,甲基丙烯酸酯聚合物的比例(Eudragit RS:Eudragit RL)和涂料分散体的量通过三因素三级Box-Behnken设计进行了优化。选择的因变量是双氯芬酸在3、4和6小时内溶解的累积百分比值。基于实验设计,获得了不同的双氯芬酸释放曲线。响应面图用于关联因变量和自变量。优化程序在3小时内产生了40%的最佳释放。增塑剂浓度,涂料分散体的量和聚合物与聚合物的比率(Eudragit RS:Eudragit RL)的水平分别为25%w / w,400 g和3/1。根据计算机确定的水平制备的优化制剂可提供接近于预测值的释放曲线。我们还研究了聚甲基丙烯酸薄膜的热和表面特性,以了解增塑剂浓度对药物从小球中释放的影响。

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