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首页> 外文期刊>Sensors and Actuators >Hydrodynamic blood cell separation using fishbone shaped microchannel for circulating tumor cells enrichment
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Hydrodynamic blood cell separation using fishbone shaped microchannel for circulating tumor cells enrichment

机译:使用鱼骨形微通道进行血流动力学细胞分离以富集循环肿瘤细胞

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摘要

Cancer patients have a range of from 1 to 1000 circulating tumor cells (CTCs) with 5 × 109erythrocytes in 1 ml volume of their peripheral blood. Due to this rarity of CTCs, a pre-process for the enrichment of CTCs in blood sample is required. For a fast and passive CTCs enrichment process, we developed a fishbone shape microchannel, which has geometry of 50 repeated 45° angled expansion and contraction channels. The enrichment process can be achieved from the differences between the dominant forces with respect to the diameter of each type of cell. For the feasibility test, we used three different sizes of microparticles of 2 μm, 6 μm, and 13 μm dia. to mimic platelet, erythrocytes, and leukocyte or human breast cancer cells, respectively. The results show that the smaller particles (2 μm or 6 μm dia.) laterally move to both side wall directions by dominant inertial lift force, whereas the larger particle (13 μm dia.) focused on the centerline of the channel by dominant momentum change-induced inertial force under appropriate fluid flow velocity. We also performed a cell separation experiment using MCF-7 and a human erythrocyte mixture. The recovery efficiency of MCF-7 is over 98% at the detection window with a high throughput (250 μl/min).
机译:癌症患者的外周血中每1 µml体积就有1至1000个循环肿瘤细胞(CTC),其中5××109个红细胞在其中。由于四氯化碳的这种稀有性,需要进行血液样品中四氯化碳富集的预处理。对于快速和被动的四氯化碳富集过程,我们开发了一条鱼骨形微通道,该通道具有50个重复的45°成角度的伸缩通道的几何形状。富集过程可以通过相对于每种细胞直径的主力之间的差异来实现。对于可行性测试,我们使用了三种不同尺寸的直径分别为2μm,6μm和13μm的微粒。分别模拟血小板,红细胞和白细胞或人乳腺癌细胞。结果表明,较小的粒子(直径2μm或6μm)通过惯性惯性力横向移动到两个侧壁方向,而较大的粒子(直径13μm)通过主导动量变化集中在通道的中心线在适当的流体流速下产生的惯性力。我们还使用MCF-7和人类红细胞混合物进行了细胞分离实验。在检测窗口中,MCF-7的回收效率超过98%,并具有高通量(250μl/ min)。

著录项

  • 来源
    《Sensors and Actuators》 |2018年第5期|38-43|共6页
  • 作者单位

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device;

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device,Department of Biomedical Engineering, School of Medicine, Keimyung University;

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device;

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device;

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device;

    Daegu Research Center for Medical Devices and Rehab., Korea Institute of Machinery and Materials Engineering, Department of Medical Device;

    Department of Biomedical Engineering, School of Medicine, Keimyung University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrodynamic activated cell sorter (HACS); Circulating tumor cells (CTCs) enrichment; Inertial lift force; Momentum change-induced inertial force;

    机译:流体动力激活细胞分选仪(HACS);循环肿瘤细胞(CTC)富集;惯性提升力;动量变化引起的惯性力;

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