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Electrical Impedance Measurements on Electropermeabilized Cells Attached to Microelectrodes

机译:电磁偏析电池上附着在微电极上的电阻测量

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The aim of this study is to use fast electrical impedance spectroscopy to measure the process of electropora-tion applied on cell monolayers growing attached to a specifically designed set of microelectrodes. The frequency response of the impedance can provide useful information about the extent of permeabilization in the cell membranes exposed to high electric fields and also the time dynamics of creation and re-sealing of the '"pores'" created. Cell line CHO-K1 was cultured as a monolayer on a microelectrode assembly fabricated on Indium Tin Oxide substrates. Additionally, propidium iodide fluorescent dye was used to asses the success of permeabilization of cells. Results show two different resealing dynamics corresponding with the presence of two different type of pores (short-lived VS long-lived pores) and how information at different frequencies is valuable to separate different effects namely pore dynamics and release of intracellular contents.
机译:本研究的目的是使用快速电阻抗光谱法测量施加在电池单层上升到的电池单层的电热激素的过程,该电池整体连接到专门设计的微电极组。阻抗的频率响应可以提供关于暴露于高电场的细胞膜中的渗透程度的有用信息,以及创建“孔”的创建和重新密封的时间动态。将细胞系CHO-K1培养为在氧化铟锡基材上制造的微电极组件上的单层培养。另外,使用碘化钛荧光染料来赋予细胞渗透性的成功。结果表明,两种不同的重新密封动态与两种不同类型的孔隙(短寿命与长寿孔)相对应,以及不同频率的信息如何有价值,以分离不同的效果即孔隙动力学和细胞内含量的释放。

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