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Single-layer planar on-chip flow cytometer using microfluidic drifting based three-dimensional (3D) hydrodynamic focusing

机译:使用基于微流体漂移的三维(3D)流体动力学聚焦的单层平面芯片流式细胞仪

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摘要

In this work, we demonstrate an on-chip microfluidic flow cytometry system based on a three-dimensional (3D) hydrodynamic focusing technique, microfluidic drifting. By inducing Dean flow in a curved microfluidic channel, microfluidic drifting can be used to hydrodynamically focus cells or particles in the vertical direction and enables the 3D hydrodynamic focusing in a single-layer planar microfluidic device. Through theoretical calculation, numerical simulation, and experimental characterization, we found that the microfluidic drifting technique can be effectively applied to three-dimensionally focus microparticles with density and size equivalent to those of human CD4+ T lymphocytes. In addition, we developed a flow cytometry platform by integrating the 3D focusing device with a laser-induced fluorescence (LIF) detection system. The system was shown to provide effective high-throughput flow cytometry measurements at a rate of greater than 1700 cells s~(-1).
机译:在这项工作中,我们演示了基于三维(3D)流体动力学聚焦技术,微流体漂移的片上微流体流式细胞仪系统。通过在弯曲的微流体通道中诱导Dean流动,微流体漂移可用于在垂直方向上对细胞或颗粒进行流体动力学聚焦,并在单层平面微流体设备中实现3D流体动力学聚焦。通过理论计算,数值模拟和实验表征,我们发现微流体漂移技术可以有效地应用于三维聚焦微粒,其密度和大小与人CD4 + T淋巴细胞的密度和大小相当。此外,我们通过将3D聚焦设备与激光诱导荧光(LIF)检测系统集成在一起,开发了流式细胞仪平台。该系统被证明可以以大于1700个细胞s〜(-1)的速率提供有效的高通量流式细胞术测量。

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