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Design of an Automated Reagent-Dispensing System for Reaction Screening and Validation with DNA-Tagged Substrates

机译:用DNA标记的基材进行反应筛选和验证的自动试剂分配系统的设计

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摘要

Laboratory automation strategies have vast potential for accelerating discovery processes. They enable higher efficiency and throughput for time-consuming screening procedures and reduce error-prone manual steps. Automating repetitive procedures can for instance support chemists in optimizing chemical reactions. Particularly, the technology of DNA-encoded libraries (DELs) may benefit from automation techniques, since translation of chemical reactions to DNA-tagged reactants often requires screening of multiple reaction parameters and evaluation of large numbers of reactants. Here, we describe a portable, automated system for reagent dispensing that was designed from open source materials. The system was validated by performing amide coupling of carboxylic acids to DNA-linked amine and a micelle-mediated Povarov reaction to DNA-tagged hexahydropyrroloquinolines. The latter reaction required accurate pipetting of multiple components including different solvents and a surface-active reagent. Analysis of reactions demonstrated that the robotic system achieved high accuracy comparable to experimentation by an experienced chemist with the potential of higher throughput.
机译:实验室自动化策略具有加速发现过程的巨大潜力。它们能够耗时更高的效率和吞吐量,以耗时的筛选程序,并减少易于易于的手动步骤。自动化重复程序可以例如支持化学家优化化学反应。特别地,DNA编码的文库(DEL)的技术可以从自动化技术中受益,因为化学反应对DNA标记的反应物的翻译通常需要筛选多重反应参数和大量反应物的评价。在这里,我们描述了一种用于试剂分配的便携式自动化系统,其由开源材料设计。通过对DNA标记的六氢喹啉进行羧酸与DNA连接的胺和胶束介导的POVAROV反应进行羧酸酰胺偶联来验证该系统。后一种反应需要准确地移液,包括不同溶剂和表面活性试剂。反应分析证明了机器人系统的高精度与经验丰富的化学家的实验相当,具有较高产量的潜力。

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