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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Negative Dielectrophoretic Force based Cell Sorter with Simplified Structure for High Reliability
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Negative Dielectrophoretic Force based Cell Sorter with Simplified Structure for High Reliability

机译:基于负介电电泳力的细胞分选仪,结构简单,可靠性高

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摘要

In this article, a cell sorter with a simplified structure is presented. This sorter harnesses negative dielectrophoretic (n-DEP) force and gravity. In order to enhance the throughput and recovery rate, a meso-sized (15 mmx40 mmx200 mu m) channel assembled with two transparent plates and two side walls is employed. Since a complex structure would degrade the cell sorter's performance due to the leaking phenomenon as well as cell adhesion, the structure of the proposed sorter is simplified by minimizing the number of components. In addition, microelectrode arrays are designed with five continuous microelectrode pairs. This configuration utilizes continuous separation at each electrode pair, thereby enabling greater separation efficiency. As the drag force, gravity and n-DEP force are the principal parameters of the cell sorter, they are evaluated around the DEP barrier. Subsequently, based on the numerical simulation and theoretical results, separation conditions are experimentally investigated. Consequently, 7 Vp-p at 10 kHz is selected as the input condition. In order to evaluate the cell sorter, K562 cells - cancer cells found in bone marrow - are selected for use as target cells. In the experiments, a separation efficiency of 94.74 +/- 0.77%, a throughput of 17,000 cells/min and a recovery rate of 49.42% are achieved.
机译:本文介绍了一种具有简化结构的细胞分选仪。该分选机利用负介电(n-DEP)力和重力。为了提高产量和回收率,采用了由两个透明板和两个侧壁组装而成的中等尺寸(15mmx40mmx200μm)的通道。由于由于泄漏现象以及细胞粘附,复杂的结构会降低细胞分选仪的性能,因此,通过使部件数量最小化来简化所提出​​的分选仪的结构。另外,微电极阵列设计有五个连续的微电极对。这种配置利用在每个电极对处的连续分离,从而实现更高的分离效率。由于拖动力,重力和n-DEP力是细胞分选仪的主要参数,因此将在DEP障碍物周围对其进行评估。随后,基于数值模拟和理论结果,对分离条件进行了实验研究。因此,选择10 kHz时的7 Vp-p作为输入条件。为了评估细胞分选仪,选择了K562细胞(在骨髓中发现的癌细胞)用作靶细胞。在实验中,分离效率为94.74 +/- 0.77%,吞吐量为17,000个细胞/分钟,回收率为49.42%。

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