Yim Se Jun, Ramanjaneyulu Bandaru T, Vidyacharan Shinde, Yang Yu Dong, Kang In Seok, Kim Dong-Pyo
Center of Intelligent Microprocess of Pharmaceutical Synthesis, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673 Korea.
Computational Fluid Dynamics, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673 Korea.
Lab Chip. 2020 Mar 3;20(5):973-978. doi: 10.1039/c9lc01099h.
Continuous pharmaceutical manufacturing receives intense attention as an alternative way to meet flexible market needs with the assurance of higher safety and quality control. Here, we report a compact reaction-module on a pad (CRP, 170 × 170 × 1.2 mm) for scale-up production of drug precursors in a continuous-flow. The CRP system was devised by stacking 9 films of the patterned polyimide to integrate micro-flow circuits, combining the functions of the even distribution of feeds, being completely mixed in less than a few milliseconds. A methodology of using a highly reactive species for the single-step synthesis of α-phosphonyloxy ketone, a drug scaffold, required the synthesis time of a few seconds in microfluidics. The fast reaction in the single CRP was capable of producing 19.2 g h-1 drug precursor, which indicates a solid step toward kilogram-scale pharmaceutical manufacturing in small footage.
连续制药生产作为一种满足灵活市场需求的替代方式,在确保更高安全性和质量控制方面受到了广泛关注。在此,我们报告了一种用于连续流中药物前体放大生产的紧凑型反应模块(CRP,170×170×1.2毫米)。CRP系统是通过堆叠9层图案化聚酰亚胺薄膜设计而成,以集成微流电路,兼具进料均匀分布的功能,并能在不到几毫秒的时间内实现完全混合。一种使用高活性物种单步合成药物骨架α-磷酰氧基酮的方法,在微流控中合成时间只需几秒。单个CRP中的快速反应能够每小时生产19.2克药物前体,这标志着在小占地面积内迈向千克级制药生产的坚实一步。