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Sheathless High-Throughput Circulating Tumor Cell Separation Using Viscoelastic non-Newtonian Fluid

机译:粘弹性非牛顿流体的无鞘高通量循环肿瘤细胞分离

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摘要

Circulating tumor cells (CTCs) have attracted increasing attention as important biomarkers for clinical and biological applications. Several microfluidic approaches have been demonstrated to separate CTCs using immunoaffinity or size difference from other blood cells. This study demonstrates a sheathless, high-throughput separation of CTCs from white blood cells (WBCs) using a viscoelastic fluid. To determine the fluid viscoelasticity and the flow rate for CTC separation, and to validate the device performance, flow characteristics of 6, 13, and 27 μm particles in viscoelastic fluids with various concentrations were estimated at different flow rates. Using 0.2% hyaluronic acid (HA) solution, MCF-7 (Michigan Cancer Foundation-7) cells mimicking CTCs in this study were successfully separated from WBCs at 500 μL/min with a separation efficiency of 94.8%. Small amounts of MCF-7 cells (~5.2%) were found at the center outlet due to the size overlap with WBCs.
机译:作为临床和生物学应用的重要生物标志物,循环肿瘤细胞(CTC)引起了越来越多的关注。已经证明了几种微流控方法可以利用免疫亲和力或与其他血细胞的大小差异来分离CTC。这项研究证明了使用粘弹性流体从白细胞(WBC)中无鞘,高通量分离CTC。为了确定流体粘弹性和四氯化碳分离的流速,并验证装置性能,在不同流速下估算了各种浓度的粘弹性流体中6、13和27μm颗粒的流动特性。使用0.2%透明质酸(HA)溶液,本研究中模拟CTC的MCF-7(密歇根州癌症基金会-7)细胞以500μL/ min的速率成功地从WBC中分离出来,分离效率为94.8%。由于与白细胞的大小重叠,在中央出口发现少量MCF-7细胞(约5.2%)。

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