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New gentle-wing high-shear granulator: impact of processing variables on granules and tablets characteristics of high-drug loading formulation using design of experiment approach

机译:新的柔性翼高剪刀造粒机:使用实验方法设计的加工变量对颗粒和片剂的高药物装载配方的影响

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The aim of this work was to study the application of design of experiment (DoE) approach in defining design space for granulation and tableting processes using a novel gentle-wing high-shear granulator. According to quality-by-design (QbD) prospective, critical attributes of granules, and tablets should be ensured by manufacturing process design. A face-centered central composite design has been employed in order to investigate the effect of water amount (X-1), impeller speed (X-2), wet massing time (X-3), and water addition rate (X-4) as independent process variables on granules and tablets characteristics. Acetaminophen was used as a model drug and granulation experiments were carried out using dry addition of povidone k30. The dried granules have been analyzed for their size distribution, density, and flow pattern. Additionally, the produced tablets have been investigated for; weight uniformity, breaking force, friability and percent capping, disintegration time, and drug dissolution. Results of regression analysis showed that water amount, impeller speed and wet massing time have significant (p < .05) effect on granules and tablets characteristics. However, the water amount had the most pronounced effect as indicated by its higher parameter estimate. On the other hand, water addition rate showed a minimal impact on granules and tablets properties. In conclusion, water amount, impeller speed, and wet massing time could be considered as critical process variables. Thus, understanding the relationship between these variables and quality attributes of granules and corresponding tablets provides the basis for adjusting granulation variables in order to optimize product performance.
机译:这项工作的目的是研究实验(DOE)方法设计在用新颖的柔和翼高剪切造粒机定义造粒和压片工艺的设计空间。根据逐个设计(QBD)预期,应通过制造工艺设计确保颗粒的临界属性和平板电脑。已经采用了脸部居中的中央复合设计,以研究水量(X-1),叶轮速度(X-2),湿浓缩时间(X-3)和水加入率的影响(X-4 )作为颗粒和片剂特征的独立过程变量。使用乙酰氨基酚作为模型药物,使用干燥的POOMIDONE K30进行造粒实验。已经分析了干燥的颗粒的尺寸分布,密度和流动模式。另外,已经研究了生产的片剂;重量均匀性,断裂力,裂缝和封端,崩解时间和药物溶解。回归分析结果表明,水量,叶轮速度和湿式浓缩时间对颗粒和片剂特征有显着的(p <.05)。然而,水量具有最明显的效果,如其更高的参数估计所示。另一方面,水添加率对颗粒和片剂性质显示出最小的影响。总之,水量,叶轮速度和湿浓缩时间可以被认为是关键过程变量。因此,了解这些变量与颗粒的质量属性之间的关系和相应的片剂的关系为调节造粒变量提供了基础,以便优化产品性能。

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