首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >A Negative Dielectrophoresis and Gravity-Driven Flow-Based High-Throughput and High-Efficiency Cell-Sorting System
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A Negative Dielectrophoresis and Gravity-Driven Flow-Based High-Throughput and High-Efficiency Cell-Sorting System

机译:负介电电泳和重力驱动的高通量高效细胞分选系统

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摘要

We present a negative dielectrophoresis (n-DEP)-based cell separation system for high-throughput and high-efficiency cell separation. To achieve a high throughput, the proposed system comprises macro-sized channel and cantilever-type electrode (CE) arrays (L x W xH = 150 mu m x 500 mu m x 50 mu m) to generate n-DEP force. For high efficiency, double separation modules, which have macro-sized channels and CE arrays in each separation module, are employed. In addition, flow regulators to precisely control the hydrodynamic force are allocated for each outlet. Because the hydrodynamic force and the n-DEP force acting on the target cell are the main determinants of the separation efficiency, we evaluate the theoretical amount of hydrodynamic force and n-DEP force acting on each target cell. Based on theoretical results, separation conditions are experimentally investigated. Finally, to demonstrate the separation performance, we performed the separation of target cells (live K562) from nontarget cells (dead K562) under conditions of low voltage (7Vp-p with 100 kHz) and a flow rate of 15 mu L center dot min(-1), 6 mu L center dot min(-1), and 8 mu L center dot min(-1) in outlets 1, 2, and 3, respectively. The system can separate target cells with 95% separation efficiency in the case of the ratio of 5:1 (live K562:dead K562).
机译:我们提出了基于负介电电泳(n-DEP)的细胞分离系统,以实现高通量和高效的细胞分离。为了获得高产量,所提出的系统包括大型通道和悬臂式电极(CE)阵列(长x宽x高= 150微米x 500微米x 50微米)以产生n-DEP力。为了实现高效率,使用了双分离模块,该模块在每个分离模块中均具有宏通道和CE阵列。此外,为每个出口分配了流量调节器以精确控制流体动力。因为作用于靶细胞的流体动力和n-DEP力是分离效率的主要决定因素,所以我们评估了作用于每个靶细胞的理论流体力和n-DEP力的量。根据理论结果,对分离条件进行了实验研究。最后,为了证明分离性能,我们在低电压(7Vp-p,100 kHz)和15 µL中心点最小流速下,从非靶细胞(死K562)中分离了靶细胞(活K562)。 (-1),分别在出口1、2和3中的6μL中心点min(-1)和8μL中心点min(-1)。在比例为5:1(有效K562:失效K562)的情况下,系统可以以95%的分离效率分离靶细胞。

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