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Basic study of dielectric properties of cancer cells by dielectrophoretic velocimetry

机译:介电泳速度癌细胞介电特性的基本研究

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摘要

Cell separation technique is essential for the detection of circulating tumor cells in blood and for enrichment of stem cell in regenerative medicine. However, conventional methods require cell labeling such as antibodies, which may damage the cells during the operation. Therefore, dielectrophoresis (DEP), a "label-free" separation technique that eliminates the effects on cells, has been attracting attention. In this paper, we investigated the dielectric properties of Jurkat cells derived from human T-cell leukemia cells by dielectrophoretic velocimetry. An equivalent circuit model of the cell was constructed and the frequency characteristics of the voltage of each layer of the cell were calculated. As a result, it was shown that the live and dead cells showed opposite dielectrophoretic forces in the region below 10 kHz, indicating the possibility of separating them. The agreement between the theoretical calculations and the experimental results shows the validity of the equivalent circuit model.
机译:细胞分离技术对于检测血液中的循环肿瘤细胞和富集干细胞在再生医学中的富集是必不可少的。然而,常规方法需要细胞标记,例如抗体,其可能在操作期间损坏细胞。因此,介电泳(DEP),一种消除对细胞效果的“无标记”分离技术一直吸引了注意力。本文通过介电泳速度研究了衍生自人T细胞白血病细胞的Jurkat细胞的介电性质。构造了电池的等效电路模型,并计算了每层电池的电压的频率特性。结果,显示出活和死细胞在10kHz以下区域显示出相反的电泳力,表明可以分离它们的可能性。理论计算与实验结果之间的协议表明了等效电路模型的有效性。

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