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Electro-Deformation of Fused Cells in a Microfluidic Array Device

机译:微流控阵列设备中融合细胞的电变形

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摘要

We present a new method of analyzing the deformability of fused cells in a microfluidic array device. Electrical stresses—generated by applying voltages (4–20 V) across discrete co-planar microelectrodes along the side walls of a microfluidic channel—have been used to electro-deform fused and unfused stem cells. Under an electro-deformation force induced by applying an alternating current (AC) signal, we observed significant electro-deformation phenomena. The experimental results show that the fused stem cells were stiffer than the unfused stem cells at a relatively low voltage (<16 V). However, at a relatively high voltage, the fused stem cells were more easily deformed than were the unfused stem cells. In addition, the electro-deformation process is modeled based on the Maxwell stress tensor and structural mechanics of cells. The theoretical results show that a positive correlation is found between the deformation of the cell and the applied voltage, which is consistent with the experimental results. Combined with a numerical analysis and experimental study, the results showed that the significant difference of the deformation ratio of the fused and unfused cells is not due to their size difference. This demonstrates that some other properties of cell membranes (such as the membrane structure) were also changed in the electrofusion process, in addition to the size modification of that process.
机译:我们提出了一种分析微流控阵列设备中融合细胞的可变形性的新方法。电应力是通过沿微流体通道的侧壁在不连续的共平面微电极上施加电压(4–20 V)产生的,已用于电变形融合和未融合的干细胞。在通过施加交流电(AC)信号引起的电变形力下,我们观察到了明显的电变形现象。实验结果表明,在相对较低的电压(<16 V)下,融合的干细胞比未融合的干细胞更坚硬。然而,在相对较高的电压下,融合的干细胞比未融合的干细胞更容易变形。另外,基于麦克斯韦应力张量和细胞的结构力学对电变形过程进行建模。理论结果表明,电池的变形与施加的电压之间存在正相关,这与实验结果一致。结合数值分析和实验研究,结果表明,融合和未融合细胞的变形率的显着差异不是由于它们的尺寸差异。这表明,在电融合过程中,除了改变细胞膜的一些其他性质(如膜结构)外,还需要改变其大小。

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