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Electrowetting-on-dielectric (EWOD) digital microfluidic device for in-line workup in organic reactions: A critical step in the drug discovery work cycle

机译:电润湿 - 介电(EWOD)数字微流体装置在有机反应中在线上次处理:药物发现工作循环中的关键步骤

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摘要

As microfluidic systems play important roles to advance chemical synthesis applications in pharmaceutical and life science fields, the demand for fully-automated chemical synthesis work cycles grows. A successful automation of chemical synthesis with high yields requires not only executing sequential steps of organic chemical reactions, but also simple and adaptive purification (i.e., workup) techniques in each step. Despite recent advances in microreactor technologies, seamlessly integrating reactions and work-up toward a fully-automated chemical synthesis platform is an unmet challenge. In this study, we have demonstrated an electrowetting-on-dielectric (EWOD) digital microfluidic device (DMF) as an efficient in-line work-up tool for organic chemical synthesis reactions. The model protocol performed on EWOD DMF involves an acid-base workup, liquid-liquid extraction (LLE), and in-line solvent-swap. Device operation parameters of each reactant and unit process have been optimized. This study manifests the capacity of an EWOD device to transform into a drug discovery platform, particularly by hosting synthetically important reactions that require complicated work-up sequences.
机译:由于微流体系统发挥重要作用,以推进制药和生命科学领域的化学合成应用,对全自动化学合成工作周期的需求增长。具有高收率的化学合成的成功自动化不仅需要执行有机化学反应的顺序步骤,而且在每个步骤中执行简单和适应性纯化(即,处理)技术。尽管最近MicroreActor技术的进步,但无缝地整合反应和朝向全自动化学合成平台的处理是一个未满足的挑战。在这项研究中,我们已经证明了一种电润湿介电(EWOD)数字微流体装置(DMF),作为有机化学合成反应的有效的在线上工作工具。在EWOD DMF上进行的模型方案涉及酸碱处理,液 - 液萃取(LLE)和在线溶剂掉。已经优化了每个反应物和单元工艺的设备操作参数。本研究表明EWOD装置转化为药物发现平台的能力,特别是通过托管需要复杂的后退序列的合成重要反应。

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