Size-based hydrodynamic rare tumor cell separation in curved microfluidic channels

弯曲微流体通道中基于尺寸的流体动力学稀有肿瘤细胞分离

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作者:Jiashu Sun, Chao Liu, Mengmeng Li, Jidong Wang, Yunlei Xianyu, Guoqing Hu, Xingyu Jiang

Abstract

In this work, we propose a rapid and continuous rare tumor cell separation based on hydrodynamic effects in a label-free manner. The competition between the inertial lift force and Dean drag force inside a double spiral microchannel results in the size-based cell separation of large tumor cells and small blood cells. The mechanism of hydrodynamic separation in curved microchannel was investigated by a numerical model. Experiments with binary mixture of 5- and 15-μm-diameter polystyrene particles using the double spiral channel showed a separation purity of more than 95% at the flow rate above 30 ml/h. High throughput (2.5 × 10(8) cells/min) and efficient cell separation (more than 90%) of spiked HeLa cells and 20 × diluted blood cells was also achieved by the double spiral channel.

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