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Coalescing drops in microfluidic parking networks: A multifunctional platform fordrop-based microfluidics

机译:微流停车网络中的凝聚液滴:用于基于液滴的微流控

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摘要

Multiwell plate and pipette systems have revolutionized modern biological analysis; however, they have disadvantages because testing in the submicroliter range is challenging, and increasing the number of samples is expensive. We propose a new microfluidic methodology that delivers the functionality of multiwell plates and pipettes at the nanoliter scale by utilizing drop coalescence and confinement-guided breakup in microfluidic parking networks (MPNs). Highly monodisperse arrays of drops obtained using a hydrodynamic self-rectification process are parked at prescribed locations in the device, and our method allows subsequent drop manipulations such as fine-gradation dilutions, reactant addition, and fluid replacement while retaining microparticles contained in the sample. Our devices operate in a quasistatic regime where drop shapes are determined primarily by the channel geometry. Thus, the behavior of parked drops is insensitive to flow conditions. This insensitivity enables highly parallelized manipulation of drop arrays of different composition, without a need for fine-tuning the flow conditions and other system parameters. We also find that drop coalescence can be switched off above a critical capillary number, enabling individual addressability of drops in complex MPNs. The platform demonstrated here is a promising candidate for conducting multistep biological assays in a highly multiplexed manner, using thousands of submicroliter samples.
机译:多孔板和移液器系统彻底改变了现代生物学分析方法。但是,它们具有缺点,因为在亚微升范围内进行测试具有挑战性,并且增加样品数量非常昂贵。我们提出了一种新的微流控方法,该方法通过利用微流控停车网络(MPN)中的液滴结合和限制引导的破裂,在纳升级提供多孔板和移液器的功能。使用流体动力学自矫正工艺获得的高度单分散的液滴阵列停放在设备中的指定位置,并且我们的方法允许后续的液滴操作(例如精细分级稀释,反应物添加和流体置换)同时保留样品中包含的微粒。我们的设备在准静态状态下工作,液滴形状主要取决于通道的几何形状。因此,停滞的液滴的行为对流动条件不敏感。这种不敏感性使得能够对不同组成的液滴阵列进行高度并行的操作,而无需微调流动条件和其他系统参数。我们还发现,可以在高于临界毛细管数的情况下关闭墨滴聚结,从而可以实现复杂MPN中墨滴的单独寻址。这里展示的平台是使用数千个亚微升样品以高度复用的方式进行多步生物学测定的有希望的候选者。

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