首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Dissolution test for site-specific release isoniazid pellets in USP apparatus 3 (reciprocating cylinder): Optimization using response surface methodology.
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Dissolution test for site-specific release isoniazid pellets in USP apparatus 3 (reciprocating cylinder): Optimization using response surface methodology.

机译:USP装置3(往复缸)中针对特定位置释放异烟肼小丸的溶解试验:使用响应面方法进行优化。

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摘要

The present work aims to predict drug release from novel site-specific release isoniazid pellets, in USP dissolution test apparatus 3, using the response surface methodology (RSM). Site-specific release isoniazid pellets were prepared by extrusion-spheronization followed by aqueous coating of Acryl-EZE((R)). RSM was employed for designing of the experiment, generation of mathematical models and optimization study. A 3(2) full factorial design was used to study the effect of two factors (at three levels), namely volume of dissolution medium (150, 200, 250ml) and reciprocation rate (5, 15, 25 dips per min). Amount of drug released in 0.1N hydrochloric acid at 2h and in pH 6.8 phosphate buffer at 45min were selected as responses. Results revealed that both, the volume of medium and reciprocation rate, are significant factors affecting isoniazid release. A second order polynomial equation fitted to the data was used to predict the responses in the optimal region. The optimized conditions resulted in dissolution data that were close to the predicted values. The proposed mathematical model is found to be robust and accurate for optimization of dissolution test conditions for site-specific release isoniazid pellets.
机译:本工作旨在使用响应表面方法(RSM)在USP溶出度测试仪3中预测新的特定部位释放异烟肼微丸的药物释放。通过挤出滚圆法,然后对Acryl-EZE进行水性包衣来制备定点释放异烟肼颗粒。 RSM被用于实验设计,数学模型生成和优化研究。 3(2)全因子设计用于研究两个因素(三个水平)的影响,即溶出介质的体积(150、200、250ml)和往复速率(每分钟5、15、25浸)。选择在2h在0.1N盐酸和45min在pH 6.8磷酸盐缓冲液中释放的药物量作为响应。结果表明,介质的体积和往复速率都是影响异烟肼释放的重要因素。拟合数据的二阶多项式方程用于预测最佳区域中的响应。优化的条件导致溶出度数据接近于预测值。发现所提出的数学模型对于针对特定部位释放异烟肼小丸的溶出度测试条件的优化是鲁棒且准确的。

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