Institut fuer Analytische Chemie, Chemo- & Biosensorik, Universitaet Regensburg, Universitaetsstr. 31, 93053 Regensburg, Germany.
Biosens Bioelectron. 2011 Aug 15;26(12):4720-7. doi: 10.1016/j.bios.2011.05.033. Epub 2011 May 27.
In this study adherent animal cells were grown to confluence on circular gold-film electrodes of 250 μm diameter that had been deposited on the surface of a regular culture dish. The impedance of the cell-covered electrode was measured at designated frequencies to monitor the behavior of the cells with time. This approach is referred to as electric cell-substrate impedance sensing or short ECIS in the literature. The gold-film electrodes were also used to deliver well-defined AC voltage pulses of several volts amplitude and several hundred milliseconds duration to the adherent cells in order to achieve reversible membrane electroporation (in situ electroporation=ISE). Electroporation-assisted introduction of membrane impermeable molecules into the cytoplasm was studied by using FITC-labeled dextran molecules of different molecular weights. Probes as big as 2MDa were successfully loaded into the cells residing on the electrode surface. Time-resolved impedance measurements before and immediately after the electroporation pulse revealed the kinetics of membrane resealing as well as subsequent changes in cell morphology. Cells recovered from the electroporation pulse within less than 90 min. When membrane-impermeable, bioactive compounds like N(3)(-) or bleomycin were introduced into the cells by in situ electroporation, concomitant ECIS readings sensitively reported on the associated response of the cells to these toxins as a function of time (ISE-ECIS).
在这项研究中,贴壁细胞生长到铺满直径 250μm 的圆形金膜电极上,这些金膜电极沉积在普通培养皿的表面。通过在指定频率下测量细胞覆盖电极的阻抗,监测细胞随时间的行为。这种方法被称为细胞-基质阻抗检测或简称 ECIS。金膜电极也被用于向贴壁细胞施加几个伏特幅度和几百毫秒持续时间的明确的交流电脉冲,以实现可逆的细胞膜电穿孔(原位电穿孔=ISE)。通过使用不同分子量的 FITC 标记的葡聚糖分子,研究了电穿孔辅助将膜不可渗透的分子引入细胞质的情况。大小可达 2MDa 的探针成功地被加载到位于电极表面的细胞中。电穿孔脉冲前后的时间分辨阻抗测量揭示了细胞膜重封的动力学以及随后的细胞形态变化。细胞在 90 分钟内从电穿孔脉冲中恢复。当通过原位电穿孔将膜不可渗透的生物活性化合物(如 N(3)(-) 或博来霉素)引入细胞时,伴随的 ECIS 读数敏感地报告了细胞对这些毒素的相应反应随时间的变化(ISE-ECIS)。