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Enrichment of diluted cell populations from large sample volumes using 3D carbon-electrode dielectrophoresis

机译:使用3D碳电极介电电泳从大量样品中富集稀释的细胞群体

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摘要

Here, we report on an enrichment protocol using carbon electrode dielectrophoresis to isolate and purify a targeted cell population from sample volumes up to 4 ml. We aim at trapping, washing, and recovering an enriched cell fraction that will facilitate downstream analysis. We used an increasingly diluted sample of yeast, 106–102 cells/ml, to demonstrate the isolation and enrichment of few cells at increasing flow rates. A maximum average enrichment of 154.2 ± 23.7 times was achieved when the sample flow rate was 10 μl/min and yeast cells were suspended in low electrically conductive media that maximizes dielectrophoresis trapping. A COMSOL Multiphysics model allowed for the comparison between experimental and simulation results. Discussion is conducted on the discrepancies between such results and how the model can be further improved.
机译:在这里,我们报告了使用碳电极介电泳从样品体积最大至4 ml分离和纯化目标细胞群体的富集方案。我们的目标是捕获,洗涤和回收富集的细胞部分,以利于下游分析。我们使用了稀释度越来越高的酵母样品10 6 –10 2 cells / ml,以证明随着流速的增加,少量细胞的分离和富集。当样品流速为10μl/ min且酵母细胞悬浮在低电导率介质中时,最大平均富集度达到154.2±23.7倍,从而最大程度地提高了介电电泳的捕获率。 COMSOL Multiphysics模型可以比较实验结果和仿真结果。讨论了这种结果与如何进一步改善模型之间的差异。

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