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Droplet incubation and splitting in open microfluidic channels

机译:开放式微流体通道中的液滴孵育和分裂

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Droplet-based microfluidics enables compartmentalization and controlled manipulation of small volumes. Open microfluidics provides increased accessibility, adaptability, and ease of manufacturing compared to closed microfluidic platforms. Here, we begin to build a toolbox for the emerging field of open channel droplet-based microfluidics, combining the ease of use associated with open microfluidic platforms with the benefits of compartmentalization afforded by droplet-based microfluidics. We develop fundamental microfluidic features to control droplets flowing in an immiscible carrier fluid within open microfluidic systems. Our systems use capillary flow to move droplets and carrier fluid through open channels and are easily fabricated through 3D printing, micromilling, or injection molding; further, droplet generation can be accomplished by simply pipetting an aqueous droplet into an empty open channel. We demonstrate on-chip incubation of multiple droplets within an open channel and subsequent transport (using an immiscible carrier phase) for downstream experimentation. We also present a method for tunable droplet splitting in open channels driven by capillary flow. Additional future applications of our toolbox for droplet manipulation in open channels include cell culture and analysis, on-chip microscale reactions, and reagent delivery.
机译:基于液滴的微流体可以实现划分和控制的小卷操纵。与封闭的微流体平台相比,开放的微流体提供了增加的可访问性,适应性和制造能力。在这里,我们开始为基于开放通道液滴的新出现领域构建一个工具箱,与开放的微流体平台相关的易用性相结合,其具有基于液滴的微流体所提供的划分的微流体化的益处。我们开发了基本的微流体特征,以控制在开放的微流体系统内流动的液滴流动。我们的系统使用毛细管流过开放通道移动液滴和载体流体,并且通过3D打印,微卷或注塑易于制造;此外,可以通过简单地将含水液滴输出到空开通道中来实现液滴产生。我们展示了在开放通道内的多个液滴的片上孵育和随后的运输(使用不混溶的载体相)进行下游实验。我们还提出了一种用于由毛细管流动驱动的打开通道中可调谐液滴分裂的方法。我们的工具箱的额外应用程序在开放渠道中的液滴操作包括细胞培养和分析,片上微观反应和试剂递送。

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