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Improvement of Tablet Coating Uniformity Using a Quality by Design Approach

机译:通过设计提高质量改善片剂包衣均匀性

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摘要

A combination of analytical and statistical methods is used to improve a tablet coating process guided by quality by design (QbD) principles. A solid dosage form product was found to intermittently exhibit bad taste. A suspected cause was the variability in coating thickness which could lead to the subject tasting the active ingredient in some tablets. A number of samples were analyzed using a laser-induced breakdown spectroscopy (LIBS)-based analytical method, and it was found that the main variability component was the tablet-to-tablet variability within a lot. Hence, it was inferred that the coating process (performed in a perforated rotating pan) required optimization. A set of designed experiments along with response surface modeling and kriging method were used to arrive at an optimal set of operating conditions. Effects of the amount of coating imparted, spray rate, pan rotation speed, and spray temperature were characterized. The results were quantified in terms of the relative standard deviation of tablet-averaged LIBS score and a coating variability index which was the ratio of the standard deviation of the tablet-averaged LIBS score and the weight gain of the tablets. The data-driven models developed based on the designed experiments predicted that the minimum value of this index would be obtained for a 6% weight gain for a pan operating at the highest speed at the maximum fill level while using the lowest spraying rate and temperature from the chosen parametric space. This systematic application of the QbD-based method resulted in an enhanced process understanding and reducing the coating variability by more than half.
机译:分析和统计方法的组合可用于改进片剂包衣过程,该过程以质量(设计)原则为指导。发现固体剂型产品间歇地表现出不良味道。一个可疑的原因是包衣厚度的变化,这可能导致受试者品尝某些片剂中的活性成分。使用基于激光诱导击穿光谱法(LIBS)的分析方法对许多样品进行了分析,结果发现,主要变异性成分是片剂之间的变异性。因此,可以推断出涂层工艺(在多孔旋转锅中进行)需要优化。使用一组设计好的实验以及响应曲面建模和克里金法来获得最佳的操作条件。表征了所施加的涂料量,喷涂速率,锅旋转速度和喷涂温度的影响。根据片剂平均LIBS得分的相对标准偏差和包衣变异性指数对结果进行定量,该涂层变异性指数是片剂平均LIBS得分的标准偏差与片剂重量增加的比率。根据设计的实验开发的数据驱动模型预测,对于以最高速度,最大填充量运行,同时使用最低喷射速率和温度的锅操作,重量增加6%时,将获得该指标的最小值。选择的参数空间。这种基于QbD的方法的系统应用提高了对工艺的理解,并将涂层的可变性降低了一半以上。

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