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Examination of gap junctional intercellular communication by in situ electroporation on two co‐planar indium‐tin oxide electrodes

机译:通过在两个共面的铟锡氧化物电极上进行原位电穿孔检查间隙连接细胞间通讯

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摘要

Gap junctions are plasma membrane channels between neighboring cells. We previously described a powerful technique where gap junctional, intercellular communication (GJIC) of adherent cells can be examined by in situ electroporation on a slide, part of which is coated with electrically conductive and transparent indium‐tin oxide. An electric pulse is applied through an electrode placed on the cells in the presence of the tracking dye, Lucifer yellow (LY). The pulse causes LY's penetration into the cells growing on the conductive part of the slide, and the subsequent migration of the dye to the non‐electroporated cells growing on the non‐conductive area is microscopically observed under fluorescence illumination. Although this technique is adequate for a number of cell lines, the turbulence generated as the electrode is removed can cause cell detachment, which makes GJIC examination problematic. In this communication, we describe a slide configuration where junctional communication can be examined in the absence of an upper electrode: Cells are grown on two co‐planar electrodes separated by a barrier which diverts the electric field, rendering it vertical to the cell layer. The elimination of an upper electrode is especially valuable for the electroporation of sensitive cells, such as terminally differentiated adipocytes. This technique can also be used for the introduction of other non‐permeant molecules such as peptides or siRNA, followed by examination of the cellular phenotype or gene expression levels in situ.
机译:间隙连接是相邻细胞之间的质膜通道。我们之前描述了一种强大的技术,可以通过在载玻片上进行原位电穿孔来检查粘附细胞的间隙连接,细胞间通讯(GJIC),该载玻片的一部分涂有导电且透明的氧化铟锡。在跟踪染料路西法黄(LYifer Yellow)存在的情况下,通过放置在细胞上的电极施加电脉冲。脉冲使LY穿透进入载玻片导电部分上生长的细胞,然后在荧光灯下用显微镜观察染料随后迁移到非导电区域上生长的非电穿孔细胞。尽管此技术适用于许多细胞系,但去除电极时产生的湍流会引起细胞脱离,这使GJIC检查成为问题。在本交流中,我们描述了一种滑动配置,其中可以在不存在上部电极的情况下检查接合点的交流:细胞生长在两个共面电极上,该电极被势垒分隔开,该势垒使电场转向,使其垂直于细胞层。消除上电极对于敏感细胞(如终末分化的脂肪细胞)的电穿孔特别有价值。该技术还可用于引入其他非渗透性分子,例如肽或siRNA,然后原位检查细胞表型或基因表达水平。

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