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Marrying chemistry with biology by combining on-chip solution-based combinatorial synthesis and cellular screening

机译:通过结合基于芯片解决方案的组合合成和细胞筛选将化学与生物学结合起来

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摘要

Drug development often relies on high-throughput cell-based screening of large compound libraries. However, the lack of miniaturized and parallelized methodologies in chemistry as well as strict separation and incompatibility of the synthesis of bioactive compounds from their biological screenings makes this process expensive and inefficient. Here, we demonstrate an on-chip platform that combines solution-based synthesis of compound libraries with high-throughput biological screenings (chemBIOS). The chemBIOS platform is compatible with both organic solvents required for the synthesis and aqueous solutions necessary for biological screenings. We use the chemBIOS platform to perform 75 parallel, three-component reactions to synthesize a library of lipidoids, followed by characterization via MALDI-MS, on-chip formation of lipoplexes, and on-chip cell screening. The entire process from the library synthesis to cell screening takes only 3 days and about 1 mL of total solutions, demonstrating the potential of the chemBIOS technology to increase efficiency and accelerate screenings and drug development.
机译:药物开发通常依赖于大型化合物库的高通量细胞筛选。然而,由于缺乏化学上的小型化和平行化方法,以及从其生物学筛选中严格分离和不合成生物活性化合物的合成,使得该方法昂贵且效率低下。在这里,我们演示了一个片上平台,该平台将基于解决方案的化合物库合成与高通量生物筛选(chemBIOS)相结合。 chemBIOS平台与合成所需的有机溶剂和生物筛选所需的水溶液均兼容。我们使用chemBIOS平台执行75个平行的三组分反应以合成类脂质库,然后通过MALDI-MS进行表征,片上脂质复合物的形成以及片上细胞筛选。从文库合成到细胞筛选的整个过程仅需3天,总溶液量约为1 µmL,这表明chemBIOS技术具有提高效率,加速筛选和药物开发的潜力。

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