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Evaluation of micromotion of vascular endothelial cells with estrogen in electrical cell-substrate impedance sensing (ECIS) method using a mathematical model cell-to-cell distance and cell-to-substrate distance

机译:利用细胞间距离和细胞间距离数学模型评估电-底物阻抗传感(ECIS)方法中雌激素对血管内皮细胞微动的影响

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We proposed a mathematical model for the micro-dynamics of cultured cells measured with ECIS (Electrical Cell-substrate Impedance Sensing system. Our mathematical model is composed of culture medium impedance between cells (Z/sub sol/), cell impedance (Z/sub c/), and polarization impedance of the electrode (Z/sub p/). It was found that whether cell-to-cell or cell-to-substrate gaps caused the changes in the impedance could be determined based on the changes in the total resistance and reactance (capacitance). Cell-to-cell gaps mainly affects the total resistance value. Cell-to-substrate gaps mainly affects total capacitance value. Based on these results, when the cultured endothelial cells (HUVEC) were stimulated with estrogen for 40 hours, it was proved that the cell-to-cell distances decreased, even though the cell-to-substrate distances slightly increased. This result suggests that the barrier function of endothelium is fortified by estrogen.
机译:我们提出了一种用ECIS(电细胞-底物阻抗传感系统)测量培养细胞的微动力学的数学模型。我们的数学模型由细胞之间的培养基阻抗(Z / sub sol /),细胞阻抗(Z / sub)组成。 c /)和电极的极化阻抗(Z / sub p /),发现可以根据阻抗的变化确定是由单元间还是单元间间隙引起的阻抗变化。总电阻和电抗(电容)。细胞间的间隙主要影响总电阻值,细胞间的间隙主要影响总电容值。基于这些结果,当用雌激素刺激培养的内皮细胞(HUVEC)时40小时后,即使细胞与底物之间的距离略有增加,也证明了细胞与细胞之间的距离减小了,这表明内皮细胞的屏障功能被雌激素所强化。

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