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In Situ Bipolar Electroporation for Localized Cell Loading with Reporter Dyes and Investigating Gap Junctional Coupling

机译:原位双极电穿孔用于记者染料的局部细胞上样并研究间隙连接

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摘要

Electroporation is generally used to transfect cells in suspension, but the technique can also be applied to load a defined zone of adherent cells with substances that normally do not permeate the plasma membrane. In this case a pulsed high-frequency oscillating electric field is applied over a small two-wire electrode positioned close to the cells. We compared unipolar with bipolar electroporation pulse protocols and found that the latter were ideally suited to efficiently load a narrow longitudinal strip of cells in monolayer cultures. We further explored this property to determine whether electroporation loading was useful to investigate the extent of dye spread between cells coupled by gap junctions, using wild-type and stably transfected C6 glioma cells expressing connexin 32 or 43. Our investigations show that the spatial spread of electroporation-loaded 6-carboxyfluorescein, as quantified by the standard deviation of Gaussian dye spread or the spatial constant of exponential dye spread, was a reliable approach to investigate the degree of cell-cell coupling. The spread of reporter dye between coupled cells was significantly larger with electroporation loading than with scrape loading, a widely used method for dye-coupling studies. We conclude that electroporation loading and dye transfer is a robust technique to investigate gap-junctional coupling that combines minimal cell damage with accurate probing of the degree of cell-cell communication.
机译:电穿孔通常用于转染悬浮液中的细胞,但是该技术也可以应用于用正常情况下不渗透质膜的物质加载粘附细胞的特定区域。在这种情况下,脉冲高频振荡电场被施加在靠近电池的小两线电极上。我们将单极电穿孔脉冲方案与双极电穿孔脉冲方案进行了比较,发现后者非常适合在单层培养物中有效加载狭窄的纵向细胞条带。我们进一步探索了该性质,以确定表达连接蛋白32或43的野生型和稳定转染的C6胶质瘤细胞,电穿孔负荷是否对研究间隙连接偶联的细胞之间的染料扩散程度有用。我们的研究表明,用高斯染料扩散的标准偏差或指数染料扩散的空间常数来量化电穿孔负载的6-羧基荧光素是研究细胞-细胞偶联程度的可靠方法。报告染料在偶联细胞之间的扩散在电穿孔负载下比刮擦负载下大得多,刮擦负载是用于染料偶联研究的一种广泛使用的方法。我们得出的结论是,电穿孔加载和染料转移是研究间隙连接连接的可靠技术,该连接结合了最小的细胞损伤和对细胞间通讯程度的精确探测。

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