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Highly-efficient single-cell capture in microfluidic array chips using differential hydrodynamic guiding structures

机译:使用差分流体动力引导结构在微流控阵列芯片中高效捕获单细胞

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摘要

This paper presents a highly efficient single cell capture scheme using hydrodynamic guiding structures in a microwell array. The implemented structure has a capturing efficiency of >80%, and has a capacity to place individual cells into separated microwells, allowing for the time-lapse monitoring on single cell behavior. Feasibility was tested by injecting microbeads (15 μm in diameter) and prostate cancer PC3 cells in an 8×8 microwell array chip and >80% of the microwells were occupied by single ones. Using the chips, the number of cells required for cell assays can be dramatically reduced and this will facilitate overcoming a huddle of assays with scarce supply of cells.
机译:本文提出了一种在微孔阵列中使用水力引导结构的高效单细胞捕获方案。所实现的结构具有> 80%的捕获效率,并具有将单个细胞放入分离的微孔的能力,从而允许对单个细胞行为进行时延监视。通过在8×8微孔阵列芯片中注射微珠(直径为15μm)和前列腺癌PC3细胞来测试可行性,并且> 80%的微孔被单个微孔占据。使用这些芯片,可以大大减少细胞测定所需的细胞数量,这将有助于克服因供应不足而导致的繁杂测定。

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