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有机化学。用于合成复杂分子的毫微微升级高通量化学。

Organic chemistry. Nanomole-scale high-throughput chemistry for the synthesis of complex molecules.

机构信息

Department of Process and Analytical Chemistry, Merck Research Laboratories, Merck and Co. Inc., Rahway, NJ 07065, USA.

Department of Pharmacokinetics, Pharmacodynamics and Drug Metabolism, Merck Research Laboratories, Merck and Co. Inc., West Point, PA 19486, USA.

出版信息

Science. 2015 Jan 2;347(6217):49-53. doi: 10.1126/science.1259203. Epub 2014 Nov 20.

Abstract

At the forefront of new synthetic endeavors, such as drug discovery or natural product synthesis, large quantities of material are rarely available and timelines are tight. A miniaturized automation platform enabling high-throughput experimentation for synthetic route scouting to identify conditions for preparative reaction scale-up would be a transformative advance. Because automated, miniaturized chemistry is difficult to carry out in the presence of solids or volatile organic solvents, most of the synthetic "toolkit" cannot be readily miniaturized. Using palladium-catalyzed cross-coupling reactions as a test case, we developed automation-friendly reactions to run in dimethyl sulfoxide at room temperature. This advance enabled us to couple the robotics used in biotechnology with emerging mass spectrometry-based high-throughput analysis techniques. More than 1500 chemistry experiments were carried out in less than a day, using as little as 0.02 milligrams of material per reaction.

摘要

在新药发现或天然产物合成等新的合成努力的前沿,很少有大量的材料可用,时间也很紧张。一个能够实现高通量实验的微型自动化平台,用于寻找合成路线,以确定制备反应扩大规模的条件,将是一个变革性的进步。由于在存在固体或挥发性有机溶剂的情况下很难进行自动化微型化学实验,因此大部分的合成“工具包”无法轻易微型化。我们选择钯催化的交叉偶联反应作为测试案例,开发了在室温下在二甲亚砜中运行的自动化友好反应。这一进展使我们能够将生物技术中使用的机器人与新兴的基于质谱的高通量分析技术结合起来。使用的材料量每个反应低至 0.02 毫克,在不到一天的时间内进行了 1500 多次化学实验。

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