Lehocký Róbert, Pěček Daniel, Štěpánek František
Department of Chemical Engineering, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague 6, Czech Republic; Zentiva, k.s., U Kabelovny 130, 102 00 Praha 10, Czech Republic.
Zentiva, k.s., U Kabelovny 130, 102 00 Praha 10, Czech Republic.
Eur J Pharm Sci. 2016 Dec 1;95:122-129. doi: 10.1016/j.ejps.2016.08.043. Epub 2016 Aug 26.
Injectable depot formulations are aimed at providing long-term sustained release of a drug into systemic circulation, thus reducing plasma level fluctuations and improving patient compliance. The particle size distribution of the formulation in the form of suspension is a key parameter that controls the release rate. In this work, the process of wet stirred media milling (ball milling) of a poorly water-soluble substance has been investigated with two main aims: (i) to determine the parametric sensitivity of milling kinetics; and (ii) to develop scale-up methodology for process transfer from batch to flow-through arrangement. Ball milling experiments were performed in two types of ball mills, a batch mill with a 30ml maximum working volume, and a flow-through mill with a 250ml maximum working volume. Milling parameters were investigated in detail by methodologies of QbD to map the parametric space. Specifically, the effects of ball size, ball fill level, and rpm on the particle breakage kinetics were systematically investigated at both mills, with an additional parameter (flow-rate) in the case of the flow-through mill. The breakage rate was found to follow power-law kinetics with respect to dimensionless time, with an asymptotic d particle size in the range of 200-300nm. In the case of the flow-through mill, the number of theoretical passes through the mill was found to be an important scale-up parameter.
可注射长效制剂旨在使药物长期持续释放进入体循环,从而减少血浆水平波动并提高患者依从性。混悬液形式制剂的粒度分布是控制释放速率的关键参数。在本研究中,对一种难溶性物质进行了湿式搅拌介质研磨(球磨)过程的研究,主要有两个目的:(i)确定研磨动力学的参数敏感性;(ii)开发从分批式到连续流式工艺放大的方法。球磨实验在两种类型的球磨机中进行,一种是最大工作体积为30ml的分批式球磨机,另一种是最大工作体积为250ml的连续流式球磨机。采用质量源于设计(QbD)方法详细研究了研磨参数以绘制参数空间。具体而言,在两台球磨机上系统研究了球径、装球量和转速对颗粒破碎动力学的影响,对于连续流式球磨机还研究了一个额外参数(流速)。发现破碎速率相对于无量纲时间遵循幂律动力学,渐近d粒度在200 - 300nm范围内。对于连续流式球磨机,发现理论通过磨机的次数是一个重要的放大参数。