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Multiple and High-Throughput Droplet Reactions via Combination of Microsampling Technique and Microfluidic Chip

机译:微采样技术与微流控芯片相结合的多重高通量液滴反应

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Microdroplets offer unique compartments for accommodating a large number of chemical and biological reactions in tiny volume with precise control. A major concern in droplet-based microfluidics is the difficulty to address droplets individually and achieve high throughput at the same time. Here, we have combined an improved cartridge sampling technique with a microfluidic chip to perform droplet screenings and aggressive reaction with minimal (nanoliter-scale) reagent consumption. The droplet composition, distance, volume (nanoliter to subnanoliter scale), number, and sequence could be precisely and digitally programmed through the improved sampling technique, while sample evaporation and cross-contamination are effectively eliminated. Our combined device provides a simple model to utilize multiple droplets for various reactions with low reagent consumption and high throughput.
机译:微滴提供了独特的隔室,可通过精确控制以小体积容纳大量化学和生物反应。基于微滴的微流控技术的主要问题是难以分别处理微滴并同时实现高通量。在这里,我们将改进的弹药筒采样技术与微流控芯片相结合,以最小的试剂消耗(纳升规模)进行液滴筛选和激进反应。液滴的组成,距离,体积(纳升至亚纳升规模),数量和顺序可通过改进的采样技术进行精确数字化编程,同时有效消除了样品蒸发和交叉污染。我们的组合设备提供了一个简单的模型,可利用多个液滴进行各种反应,且试剂消耗低,通量高。

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