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In-depth experimental analysis of pharmaceutical twin-screw wet granulation in view of detailed process understanding

机译:关于详细过程理解的药物双螺杆湿造粒的深度实验分析

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Twin-screw wet granulation is gaining increasing interest within the pharmaceutical industry for the continuous manufacturing of solid oral dosage forms. However, limited prior fundamental physical understanding has been generated relating to the granule formation mechanisms and kinetics along the internal compartmental length of a twin-screw granulator barrel, and about how process settings, barrel screw configuration and formulation properties such as particle size, density and surface properties influence these mechanisms. One of the main reasons for this limited understanding is that experimental data is generally only collected at the exit of the twin-screw granulator barrel although the granule formation occurs spatially along the internal length of the barrel. The purpose of this study is to analyze the twin-screw wet granulation process using both hydrophilic and hydrophobic formulations, manufactured under different process settings such as liquid-to-solid ratio, mass throughput and screw speed, in such a way that the mechanisms occurring in the individual granulator barrel compartments (i.e., the wetting and different conveying and kneading compartments) and their impact upon granule formation are understood. To achieve this, a unique experimental setup was developed allowing granule characteristic data-collection such as size, shape, liquid and porosity distribution at the different compartments along the length of the granulator barrel. Moreover, granule characteristic information per granule size class was determined. The experimental results indicated that liquid-to-solid ratio is the most important factor dictating the formation of the granules and their corresponding properties, by regulating the degree of aggregation and breakage in the different compartments along the internal length of the twin-screw granulator barrel. Collecting appropriate and detailed experimental data about granule formation along the internal length of the granulator barrel is thus crucial for gaining fundamental physical understanding of the twin-screw wet granulation process. (C) 2017 Elsevier B.V. All rights reserved.
机译:双螺杆湿法制粒是获得了连续制造的固体口服剂型在制药工业中越来越多的关注。然而,已经产生限于现有基本物理理解与沿着双螺杆造粒机筒的内部隔室长度的颗粒形成机制和动力学,以及有关如何处理设置,机筒螺杆构造和制剂性质如粒度,密度和表面性质影响这些机制。一个主要的原因这种有限的理解是,实验数据通常仅在双螺杆造粒桶的出射虽然颗粒形成沿着筒的内部长度在空间上发生收集。本研究的目的是使用亲水性和疏水性的制剂来分析双螺杆湿法制粒过程中,在不同的过程设置,例如液体 - 固体比例,质量吞吐量和螺杆转速,以这样的方式使得产生的机制。制造在各个筒造粒机隔室(即,润湿和不同的输送和捏合区室),而当颗粒形成它们的影响被理解。为了实现这一目标,一个唯一的实验装置被开发从而允许颗粒特性的数据收集,例如大小,形状,液体和孔隙率分布在沿造粒机筒的长度的不同隔室。此外,测得每粒度类颗粒特征信息。实验结果表明,液 - 固比为听写颗粒和它们相应的属性的形成最重要的因素,由沿双螺杆造粒机机筒的内部长度调节聚集和破损的程度在不同隔室。收集适当的和详细的实验数据沿左右造粒机机筒的内部长度颗粒形成因此是用于获得对的基本物理理解关键双螺杆湿法制粒方法。 (c)2017年Elsevier B.V.保留所有权利。

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