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基于三维微带电极操作的负介电泳的血细胞微流控分离

Microfluidic Separation of Blood Cells Based on the Negative Dielectrophoresis Operated by Three Dimensional Microband Electrodes.

作者信息

Yasukawa Tomoyuki, Yamada Junko, Shiku Hitoshi, Matsue Tomokazu, Suzuki Masato

机构信息

Graduate School of Material Science, University of Hyogo, 3-2-1 Kouto, Kamigori, Ako, Hyogo 678-1297, Japan.

Graduate School of Environmental Studies, Tohoku University, 6-6-11, Aramaki, Aoba, Sendai 980-8579, Japan.

出版信息

Micromachines (Basel). 2020 Aug 31;11(9):833. doi: 10.3390/mi11090833.

Abstract

A microfluidic device is presented for the continuous separation of red blood cells (RBCs) and white blood cells (WBCs) in a label-free manner based on negative dielectrophoresis (n-DEP). An alteration of the electric field, generated by pairs of slanted electrodes (separators) that is fabricated by covering parts of single slanted electrodes with an insulating layer is used to separate cells by their sizes. The repulsive force of n-DEP formed by slanted electrodes prepared on both the top and bottom substrates led to the deflection of the cell flow in lateral directions. The presence of gaps covered with an insulating layer for the electric field on the electrodes allows the passing of RBCs through gaps, while relatively large WBCs (cultured cultured human acute monocytic leukemia cell line (THP-1 cells)) flowed along the slanted separator without passing through the gaps and arrived at an edge in the channel. The passage efficiency for RBCs through the gaps and the arrival efficiency for THP-1 cells to the upper edge in the channel were estimated and found to be 91% and 93%, respectively.

摘要

本文介绍了一种基于负介电泳(n-DEP)的微流控装置,用于以无标记方式连续分离红细胞(RBC)和白细胞(WBC)。通过用绝缘层覆盖单个倾斜电极的部分区域来制造成对的倾斜电极(分离器),利用由此产生的电场变化,根据细胞大小分离细胞。在顶部和底部基板上制备的倾斜电极形成的n-DEP排斥力导致细胞流在横向方向上发生偏转。电极上覆盖有用于电场的绝缘层的间隙的存在,使得红细胞能够通过间隙,而相对较大的白细胞(培养的人急性单核细胞白血病细胞系(THP-1细胞))则沿着倾斜的分离器流动,不通过间隙,并到达通道的边缘。估计了红细胞通过间隙的通过率和THP-1细胞到达通道上边缘的到达率,分别为91%和93%。

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