Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu, 610041, China.
Engineering Center of Catalysis and Synthesis for Chiral Molecules, Department of Chemistry, Fudan University, Shanghai, 200433, China.
Chemistry. 2022 Jun 10;28(33):e202200700. doi: 10.1002/chem.202200700. Epub 2022 May 4.
Continuous flow synthetic technologies had been widely applied in the total synthesis in the past few decades. Fully continuous flow synthesis is still extremely focused on multi-step synthesis of complex natural pharmaceutical molecules. Thus, the development of fully continuous flow total synthesis of natural products is in demand but challenging. Herein, we demonstrated the first fully continuous flow approach towards asymmetric total synthesis of natural tetrahydroprotoberberine alkaloids, (-)-isocanadine, (-)-tetrahydropseudocoptisine, (-)-stylopine and (-)-nandinine. This method features a concise linear sequence involving four chemical transformations and three on-line work-up processing in an integrated flow platform, without any intermediate purification. The overall yield and enantioselectivity of this four-step continuous flow chemistry were up to 50 % and 92 %ee, respectively, in a total residence time of 32.5 min, corresponding to a throughput of 145 mg/h.
连续流动合成技术在过去几十年中被广泛应用于全合成中。完全连续流动合成仍然非常关注复杂天然药物分子的多步合成。因此,对天然产物的完全连续流动全合成的发展是有需求的,但具有挑战性。在此,我们展示了首例不对称全合成天然四氢原小檗碱类生物碱(-)-异卡定碱、(-)-四氢小檗碱、(-)-斯氏紫堇碱和(-)-纳地新的完全连续流动方法。该方法具有简洁的线性序列,包括在集成流平台中进行的四个化学转化和三个在线后处理,无需任何中间纯化。在总停留时间为 32.5 分钟的情况下,该四步连续流动化学的总收率和对映选择性分别高达 50%和 92%ee,对应的通量为 145mg/h。