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Hydrodynamic Cell Enrichment in Double Spiral Microfluidic Channels

机译:双螺旋微流体通道中的流体动力学细胞富集

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Rapid cell separation and enrichment has attracted significant attention because of its important applications in cell biology studies and biomedical diagnostics. we have developed a compact microfluidic platform, composed of 6-loop double spiral microchannels, to separate cancer cells from blood cells. The curved geometry induces a Dean drag force acting on cells to compete with the inertial lift, resulting in different equilibrium positions for different sized cells. The separation chip is characterized with the mixture of 4T1 cells and the murine blood cells at different flow rates, with decent separation and enrichment efficiency.
机译:由于其在细胞生物学研究和生物医学诊断中的重要应用,快速细胞分离和富集引起了重要的关注。我们开发了一种紧凑的微流体平台,由6环双螺旋微通道组成,将癌细胞与血细胞分离。弯曲几何形状诱导作用在电池上的Dean拖曳力与惯性升力竞争,导致不同尺寸细胞的不同平衡位置。分离芯片的特征在于4T1细胞和鼠血细胞的混合物,以不同的流速,具有体面的分离和富集效率。

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