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Dielectrophoretic capture voltage spectrum for measurement of dielectric properties and separation of cancer cells

机译:介电捕获电压谱,用于测量介电性能和癌细胞分离

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摘要

In this paper, a new dielectrophoresis (DEP) method based on capture voltage spectrum is proposed for measuring dielectric properties of biological cells. The capture voltage spectrum can be obtained from the balance of dielectrophoretic force and Stokes drag force acting on the cell in a microfluidic device with fluid flow and strip electrodes. The method was demonstrated with the measurement of dielectric properties of human colon cancer cells (HT-29 cells). From the capture voltage spectrum, the real part of Clausius–Mossotti factor of HT-29 cells for different frequencies of applied electric field was obtained. The dielectric properties of cell interior and plasma membrane were then estimated by using single-shell dielectric model. The cell interior permittivity and conductivity were found to be insensitive to changes in the conductivity of the medium in which the cells are suspended, but the measured permittivity and conductivity of cell membrane were found to increase with the increase of medium conductivity. In addition, the measurement of capture voltage spectrum was found to be useful in providing the optimum operating conditions for separating HT-29 cells from other cells (such as red blood cells) using dielectrophoresis.
机译:本文提出了一种基于捕获电压谱的介电电泳(DEP)方法来测量生物细胞的介电性能。捕获电压谱可以从介电泳力和斯托克斯拖曳力之间的平衡获得,该作用作用于具有流体流动和带状电极的微流体装置中的细胞。通过测量人结肠癌细胞(HT-29细胞)的介电性能证明了该方法。从捕获电压谱中,获得了不同电场频率下HT-29细胞克劳修斯-莫索蒂因子的实部。然后使用单壳介电模型估算细胞内部和质膜的介电性能。发现细胞内部介电常数和电导率对悬浮细胞的介质的电导率的变化不敏感,但是发现测量的细胞膜的介电常数和电导率随着介质电导率的增加而增加。另外,发现捕获电压谱的测量对于提供最佳的操作条件是有用的,该条件用于通过介电泳将HT-29细胞与其他细胞(例如红细胞)分离。

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