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集成热熔挤出-注塑连续片剂制造平台:关键工艺参数和配方属性对产品稳健性和尺寸稳定性的影响。

Integrated hot-melt extrusion - injection molding continuous tablet manufacturing platform: Effects of critical process parameters and formulation attributes on product robustness and dimensional stability.

作者信息

Desai Parind M, Hogan Rachael C, Brancazio David, Puri Vibha, Jensen Keith D, Chun Jung-Hoon, Myerson Allan S, Trout Bernhardt L

机构信息

Novartis-MIT Center of Continuous Manufacturing, Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge 02139, MA, USA.

Genentech, Inc., 1 DNA Way, South San Francisco 94080, CA, USA.

出版信息

Int J Pharm. 2017 Oct 5;531(1):332-342. doi: 10.1016/j.ijpharm.2017.08.097. Epub 2017 Aug 24.

DOI:10.1016/j.ijpharm.2017.08.097
PMID:28844899
Abstract

This study provides a framework for robust tablet development using an integrated hot-melt extrusion-injection molding (IM) continuous manufacturing platform. Griseofulvin, maltodextrin, xylitol and lactose were employed as drug, carrier, plasticizer and reinforcing agent respectively. A pre-blended drug-excipient mixture was fed from a loss-in-weight feeder to a twin-screw extruder. The extrudate was subsequently injected directly into the integrated IM unit and molded into tablets. Tablets were stored in different storage conditions up to 20 weeks to monitor physical stability and were evaluated by polarized light microscopy, DSC, SEM, XRD and dissolution analysis. Optimized injection pressure provided robust tablet formulations. Tablets manufactured at low and high injection pressures exhibited the flaws of sink marks and flashing respectively. Higher solidification temperature during IM process reduced the thermal induced residual stress and prevented chipping and cracking issues. Polarized light microscopy revealed a homogeneous dispersion of crystalline griseofulvin in an amorphous matrix. DSC underpinned the effect of high tablet residual moisture on maltodextrin-xylitol phase separation that resulted in dimensional instability. Tablets with low residual moisture demonstrated long term dimensional stability. This study serves as a model for IM tablet formulations for mechanistic understanding of critical process parameters and formulation attributes required for optimal product performance.

摘要

本研究提供了一个使用集成热熔挤出-注射成型(IM)连续制造平台进行稳健片剂开发的框架。分别使用灰黄霉素、麦芽糊精、木糖醇和乳糖作为药物、载体、增塑剂和增强剂。将预混合的药物-辅料混合物从失重喂料器输送至双螺杆挤出机。随后将挤出物直接注入集成IM单元并模制成片剂。将片剂在不同储存条件下储存长达20周以监测物理稳定性,并通过偏光显微镜、差示扫描量热法(DSC)、扫描电子显微镜(SEM)、X射线衍射(XRD)和溶出度分析进行评估。优化的注射压力提供了稳健的片剂配方。在低注射压力和高注射压力下制造的片剂分别表现出缩痕和飞边缺陷。IM过程中较高的固化温度降低了热诱导残余应力,并防止了崩片和开裂问题。偏光显微镜显示结晶态灰黄霉素在无定形基质中均匀分散。DSC证实了高片剂残余水分对麦芽糊精-木糖醇相分离的影响,这导致尺寸不稳定。残余水分低的片剂表现出长期尺寸稳定性。本研究作为IM片剂配方的模型,用于对最佳产品性能所需的关键工艺参数和配方属性进行机理理解。

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