首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems >LABEL-FREE BLOOD CELLS SEPARATION AND ENRICHMENT FROM WHOLE BLOOD BY HIGH-THROUGHPUT HYDRODYNAMIC AND INERTIAL FORCE
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LABEL-FREE BLOOD CELLS SEPARATION AND ENRICHMENT FROM WHOLE BLOOD BY HIGH-THROUGHPUT HYDRODYNAMIC AND INERTIAL FORCE

机译:通过高通量流体动力学和惯性力和惯性力的无标记血细胞分离和富集全血

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White blood cells or rare cells such as cancer cells with red blood cells in the whole blood, the concentration difference is approximately 1000 times in whole blood. To handle this extremely large cells population in microfluidic chip, we created a microdevice that takes advantage of the intrinsic features of blood flow in the microcirculation to separate leukocytes from whole blood, and solve clogging problem due to the large amount of blood cells (10~(8-9) cell/ml) by high-throughput hydrodynamic separation in microchannel. Results also showed high separation efficiency of blood cells by inertial force in microfluidics that containing high concentration whole blood cells (4.3×10~6 cells/μl). We demonstrated whole blood human separation in double layer structured microfluidic devices, utilizing the principle of hydrodynamic inertial forces to separate red blood cells from whole blood and enrich leukocytes (white blood cells) extracting by the elastic properties of blood cell and the inertial force, like shear lift force in a continuous flow separation, a high separation efficiency (~92%) and high throughput flow rate (10 mL, 300 μl/s) was obtained in this microfluidic chip.
机译:白细胞或稀有细胞如癌细胞在全血中具有红细胞,浓度差异为全血约1000倍。为了处理微流体芯片中的这种极大的细胞群,我们创建了一种微型细胞,这些微循环中的血流量的内在特征,以将白细胞与全血分离,并由于大量的血细胞解决堵塞问题(10〜 (8-9)细胞/ mL)通过微通道中的高通量流体动力学分离。结果还通过含有高浓度全血细胞(4.3×10〜6个细胞/μl)的微流体中的惯性力,血细胞的高分离效率。我们在双层结构化的微流体装置中展示了全血人分离,利用流体动力学惯性力的原理与全血分离红细胞,并通过血细胞的弹性性能和惯性力来提取白细胞(白细胞)提取。在该微流体芯片中获得高分离效率(〜92%)和高通量流速(10mL,300μl/ s)的剪切力升力。

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