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Development of a parallel three-dimensional microfluidic device for high-throughput cytometry

机译:高通量细胞术的平行三维微流体装置的研制

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摘要

Microflow cytometry was previously pursued to achieve high-throughput cell analyses. It has advantages of parallelization and miniaturization capabilities that allow fewer detecting elements to simultaneously observe multiple channels. However, the major disadvantage is that it is difficult to precisely control parallel cell positions in each channel when cells pass through the detection area. In this study, we developed a multilayer microfluidic device, which has one sample flow inlet, two sheath flow inlets, and one flow outlet, which can achieve parallel sheath 3D flow focusing and fluorescence detection in 32 channels. The sample flow in each channel is focused and allows the cells or particles to pass through the detection zone one by one. Optimized flow rate ratios of the sample flow, lateral sheath flow, and circular sheath flow were found. The highest throughput of 10~6 cells/s was obtained using mammalian cells. The current cytometer, which incorporates a microoptic-integrated microfluidic device and newly developed optical system, was proven to have multicolor detection ability.
机译:以前追求微流量细胞术以实现高通量细胞分析。它具有并行化和小型化能力的优点,允许较少的检测元件同时观察多个通道。然而,主要缺点是,当细胞通过检测区域时,难以精确地控制每个通道中的平行电池位置。在这项研究中,我们开发了一种多层微流体装置,其具有一个样品流入口,两个护套流入口和一个流动出口,可以在32个通道中实现平行的鞘3D流量聚焦和荧光检测。每个通道中的样品流程聚焦并允许细胞或粒子逐个通过检测区域。发现了样品流动,侧鞘流和圆形鞘流的优化流量比。使用哺乳动物细胞获得10〜6个细胞/ s的最高通量。含有微光学集成的微流体装置和新开发的光学系统的电流细胞仪被证明具有多色检测能力。

著录项

  • 来源
    《Sensors and Actuators》 |2020年第10期|128255.1-128255.10|共10页
  • 作者单位

    School of Biomedical Engineering Taipei Medical University 250 Wuxing St. Taipei 11031 Taiwan ROC International PhD Program for Biomedical Engineering Taipei Medical University 250 Wuxing St. Taipei 11031 Taiwan ROC Graduate Institute of Biomedical Optomechatronics Taipei Medical University 250 Wuxing St Taipei 11031 Taiwan ROC International Ph.D. Program for Cell Therapy and Regeneration Medicine College of Medicine 250 Wuxing St. Taipei 11031 Taiwan ROC;

    International PhD Program for Biomedical Engineering Taipei Medical University 250 Wuxing St. Taipei 11031 Taiwan ROC Graduate Institute of Biomedical Optomechatronics Taipei Medical University 250 Wuxing St Taipei 11031 Taiwan ROC;

    Institute of Applied Mechanics National Taiwan University 1 Roosevelt Road Sec. 4 Taipei 10617 Taiwan ROC;

    Institute of Applied Mechanics National Taiwan University 1 Roosevelt Road Sec. 4 Taipei 10617 Taiwan ROC;

    Department of Mechanical and Aerospace Engineering University of California at Los Angeles 420 Westwood Plaza Los Angeles CA 90095 USA Department of Bioengineering University of California at Los Angeles 420 Westwood Plaza Los Angeles CA 90095 USA;

    Institute of Applied Mechanics National Taiwan University 1 Roosevelt Road Sec. 4 Taipei 10617 Taiwan ROC;

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

    High throughput; 3D microfluidics; Flow cytometry; Microoptics;

    机译:高吞吐量;3D微流体;流式细胞仪;微光学;

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