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热熔挤出从纯物质到基质辅助加工一步连续合成药物共晶 - 最新进展。

Continuous, one-step synthesis of pharmaceutical cocrystals via hot melt extrusion from neat to matrix-assisted processing - State of the art.

机构信息

Department of Drug Form Technology, Wroclaw Medical University, Wroclaw, Poland.

Department of Drug Form Technology, Wroclaw Medical University, Wroclaw, Poland.

出版信息

Int J Pharm. 2019 Mar 10;558:426-440. doi: 10.1016/j.ijpharm.2019.01.016. Epub 2019 Jan 18.

Abstract

Use of hot melt extrusion (HME) as continuous manufacturing process in the cocrystal synthesis is of increasing interest from both industrial and academic perspective and it is seen as a newly developing branch of mechanochemistry with possible broad application in single step synthesis and formulation of pharmaceutical cocrystals. Furthermore, one-step formulation of pharmaceutical products results in combined processing of pharmaceutical cocrystal mixtures with polymers using HME, which may result in phase change or formation of amorphous solid dispersions during the material processing. The manuscript aims at providing selection guidelines and understanding of processing parameters and instrumental setup of importance to design the HME process for cocrystal synthesis. Furthermore, importance of stoichiometry control of the final product and the matrix selection criteria in simultaneous synthesis and formulation of pharmaceutical cocrystals via HME are provided. The first part of this review, introduce mechanochemical methods of cocrystals synthesis along brief explanation of the possible molecular mechanisms of cocrystal synthesis via mechanochemical approach. Subsequently, the critical process parameters i.e. temperature, screw speed, screw configuration or material feed rate of importance in successful synthesis of high quality product are described followed by literature examples of the processing of neat cocrystal compounds or matrix assisted cocrystallisation.

摘要

热熔挤出(HME)作为连续制造工艺在共晶合成中的应用,引起了工业界和学术界的越来越多的关注,它被视为机械化学的一个新发展分支,在药物共晶的一步合成和制剂中可能具有广泛的应用。此外,药物产品的一步制剂导致使用 HME 对药物共晶混合物与聚合物的一步加工,这可能导致在材料加工过程中发生相变化或形成无定形固体分散体。本文旨在提供选择指南和对加工参数和仪器设置的理解,这些参数和仪器设置对于设计用于共晶合成的 HME 工艺很重要。此外,还提供了通过 HME 同时合成和制剂药物共晶时对最终产物的化学计量控制和基质选择标准的重要性。本文的第一部分介绍了共晶合成的机械化学方法,并简要解释了通过机械化学方法合成共晶的可能分子机制。随后,描述了在成功合成高质量产品中重要的关键工艺参数,如温度、螺杆速度、螺杆构型或物料进料速率,以及纯共晶化合物或基质辅助共晶化加工的文献实例。

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