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Dependence of Impedance of Embedded Single Cells on Cellular Behaviour

机译:嵌入式单细胞的阻抗对细胞行为的依赖性

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Non-invasive single cell analyses are increasingly required for the medical diagnostics of test substances or the development of drugs and therapies on the single cell level. For the non-invasive characterisation of cells, impedance spectroscopy which provides the frequency dependent electrical properties has been used. Recently, microfludic systems have been investigated to manipulate the single cells and to characterise the electrical properties of embedded cells. In this article, the impedance of partially embedded single cells dependent on the cellular behaviour was investigated by using the microcapillary. An analytical equation was derived to relate the impedance of embedded cells with respect to the morphological and physiological change of extracellular interface. The capillary system with impedance measurement showed a feasibility to monitor the impedance change of embedded single cells caused by morphological and physiological change of cell during the addition of DMSO. By fitting the derived equation to the measured impedance of cell embedded at different negative pressure levels, it was able to extrapolate the equivalent gap and gap conductivity between the cell and capillary wall representing the cellular behaviour.
机译:非侵入性单细胞分析越来越多地用于测试物质的医学诊断或单细胞水平上药物和疗法的开发。对于细胞的非侵入性表征,已经使用了阻抗谱,其提供了频率依赖性的电特性。最近,已经研究了微流体系统以操纵单个细胞并表征嵌入式细胞的电学性质。在本文中,通过使用微毛细管研究了部分嵌入的单细胞的阻抗(取决于细胞行为)。推导了一个解析方程,将嵌入式细胞的阻抗与细胞外界面的形态和生理变化联系起来。带有阻抗测量的毛细管系统显示了监测添加DMSO期间由细胞形态和生理变化引起的嵌入式单细胞阻抗变化的可行性。通过将导出的方程拟合到在不同负压水平下嵌入的细胞的测量阻抗,可以推断出细胞与代表细胞行为的毛细管壁之间的等效间隙和间隙电导率。

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