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In-droplet cell separation based on bipolar dielectrophoretic response to facilitate cellular droplet assays

机译:基于双极介电泳反应的液滴细胞分离,以促进细胞液滴测定

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摘要

Precise manipulation of cells within water-in-oil emulsion droplets has the potential to vastly expand the type of cellular assays that can be conducted in droplet-based microfluidics systems. However, achieving such manipulation remains challenging. Here, we present an in-droplet label-free cell separation technology by utilizing different dielectrophoretic responses of two different cell types. Two pairs of angled planar electrodes were utilized to generate positive or negative dielectrophoretic force acting on each cell type, which results in selective in-droplet movement of only one specific cell type at a time. A downstream asymmetric Y-shaped microfluidic junction splits the mother droplet into two daughter droplets, each of which contains only one cell type. The capability of this platform was successfully demonstrated by conducting in-droplet separation from a mixture ofSalmonellacells and macrophages, two cell types commonly used as a bacterial pathogenicity analysis model. This technology enable the precise manipulation of cells within droplets, which can be exploited as a critical function in implementing broader ranges of droplet-based microfluidics cellular assays.
机译:在油内乳液液滴中精确地操纵细胞具有大大膨胀可以在基于液滴的微流体系统中进行的细胞测定的类型。然而,实现这种操纵仍然具有挑战性。这里,我们通过利用两种不同细胞类型的不同介电泳应答来介绍一种无滴标记的细胞分离技术。使用两对成角度的平面电极来产生作用在每种细胞类型上的正或负电泳力,这导致一次只有一种特定细胞类型的选择性液滴运动。下游不对称Y形微流体接线将母液滴分成两个子液滴,每个液滴仅包含一种细胞类型。通过从甘露壳和巨噬细胞的混合物中进行液滴分离成功地证明了该平台的能力,通常用作细菌致病性分析模型的两种细胞类型。该技术能够精确地操纵液滴内的细胞,其可以被利用为实现基于液滴的微流体细胞测定的更宽范围的关键功能。

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