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按需在紧凑、可重构系统中连续流生产药物。

On-demand continuous-flow production of pharmaceuticals in a compact, reconfigurable system.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.

Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.

出版信息

Science. 2016 Apr 1;352(6281):61-7. doi: 10.1126/science.aaf1337.

Abstract

Pharmaceutical manufacturing typically uses batch processing at multiple locations. Disadvantages of this approach include long production times and the potential for supply chain disruptions. As a preliminary demonstration of an alternative approach, we report here the continuous-flow synthesis and formulation of active pharmaceutical ingredients in a compact, reconfigurable manufacturing platform. Continuous end-to-end synthesis in the refrigerator-sized [1.0 meter (width) × 0.7 meter (length) × 1.8 meter (height)] system produces sufficient quantities per day to supply hundreds to thousands of oral or topical liquid doses of diphenhydramine hydrochloride, lidocaine hydrochloride, diazepam, and fluoxetine hydrochloride that meet U.S. Pharmacopeia standards. Underlying this flexible plug-and-play approach are substantial enabling advances in continuous-flow synthesis, complex multistep sequence telescoping, reaction engineering equipment, and real-time formulation.

摘要

制药生产通常在多个地点采用批处理。这种方法的缺点包括生产时间长和供应链中断的可能性。作为替代方法的初步演示,我们在这里报告了在紧凑、可重构的制造平台中连续流动合成和配制活性药物成分。在冰箱大小的[1.0 米(宽)×0.7 米(长)×1.8 米(高)]系统中连续端到端合成,每天可生产足够数量的盐酸苯海拉明、盐酸利多卡因、地西泮和盐酸氟西汀口服或局部液体制剂数百至数千剂,符合美国药典标准。这种灵活的即插即用方法的基础是在连续流动合成、复杂的多步序列缩合、反应工程设备和实时配方方面取得了重大进展。

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