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有机分子的自动化径向合成。

Automated radial synthesis of organic molecules.

机构信息

Department of Biomolecular Systems, Max-Planck-Institute of Colloids and Interfaces, Potsdam, Germany.

Freie Universität Berlin, Institute of Chemistry and Biochemistry, Berlin, Germany.

出版信息

Nature. 2020 Mar;579(7799):379-384. doi: 10.1038/s41586-020-2083-5. Epub 2020 Mar 18.

Abstract

Automated synthesis platforms accelerate and simplify the preparation of molecules by removing the physical barriers to organic synthesis. This provides unrestricted access to biopolymers and small molecules via reproducible and directly comparable chemical processes. Current automated multistep syntheses rely on either iterative or linear processes, and require compromises in terms of versatility and the use of equipment. Here we report an approach towards the automated synthesis of small molecules, based on a series of continuous flow modules that are radially arranged around a central switching station. Using this approach, concise volumes can be exposed to any reaction conditions required for a desired transformation. Sequential, non-simultaneous reactions can be combined to perform multistep processes, enabling the use of variable flow rates, reuse of reactors under different conditions, and the storage of intermediates. This fully automated instrument is capable of both linear and convergent syntheses and does not require manual reconfiguration between different processes. The capabilities of this approach are demonstrated by performing optimizations and multistep syntheses of targets, varying concentrations via inline dilutions, exploring several strategies for the multistep synthesis of the anticonvulsant drug rufinamide, synthesizing eighteen compounds of two derivative libraries that are prepared using different reaction pathways and chemistries, and using the same reagents to perform metallaphotoredox carbon-nitrogen cross-couplings in a photochemical module-all without instrument reconfiguration.

摘要

自动化合成平台通过消除有机合成的物理障碍来加速和简化分子的制备。这为生物聚合物和小分子提供了通过可重复和直接可比的化学过程不受限制的访问。当前的自动化多步合成依赖于迭代或线性过程,并且在多功能性和设备使用方面需要妥协。在这里,我们报告了一种基于一系列连续流动模块的小分子自动化合成方法,这些模块围绕中央切换站呈放射状排列。使用这种方法,可以将简洁的体积暴露于所需转化所需的任何反应条件下。可以组合顺序的、非同时的反应来进行多步过程,从而能够使用可变的流速、在不同条件下重复使用反应器以及存储中间体。这种全自动化仪器既能够进行线性合成也能够进行收敛合成,并且不需要在不同过程之间进行手动重新配置。该方法的能力通过对目标进行优化和多步合成、通过在线稀释来改变浓度、探索抗惊厥药鲁非酰胺的多步合成的几种策略、使用不同反应途径和化学合成来合成两个衍生文库的十八个化合物以及使用相同的试剂在光化学模块中进行金属光还原碳-氮交叉偶联反应来证明,所有这些都无需仪器重新配置。

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