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Effects of electroporation on cellular responses to high-intensity electrical shocks

机译:电穿孔对高强度电冲击的细胞反应的影响

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The response of cardiac cells to the external electrical field is a crucial factor contributing to the success and failure of defibrillation. We aimed to determine a possible contribution of electroporation to optically recorded response during highintensity shocks. We applied 10 ms anodal and cathodal stimuli of different intensities to the rabbit heart epicardium during plateau phase of the action potential with 6-mm-diameter electrode. Transmembrane potential changes were monitored directly under the electrode by an optical technique using voltage-sensitive dye. As stimulus current was increased from 0 to 160 mA/cm{sup}2, the shock-induced transmembrane potential changes (△V{sub}m) also increased while the resting potential after the stimulation remains constant. At higher current densities (> 160 mA/cm{sup}2) effects of electroporation were observed: a) after the initial rapid change at the stimulus onset △V{sub}m quickly declined resulting in gradual decreasing of the final △V{sub}m with increasing of the stimulus strength; b) post-repolarization elevation of resting potential gradually increased as the stimulus strength increased. These results demonstrate that during strong electrical shocks electroporation changes in transmembrane potential traces are present for hyperpolarized as well as depolarized stimuli of a similar strength. This can explain the multiphasic nature of cellular responses reported for strong electric stimuli.
机译:心脏细胞对外部电场的反应是有助于除颤的成功和失败的关键因素。我们旨在确定电穿孔在高度冲击期间对光学记录响应的可能贡献。在具有6mm直径电极的动作电位的平台阶段,我们将10 ms anodal和阴极刺激到兔心外膜的不同强度。使用电压敏感染料通过光学技术直接在电极下直接监测跨膜电位变化。由于刺激电流从0到160 mA / cm {sup} 2增加,因此触发型跨膜电位变化(△V{sub} m)也增加,而刺激后静止潜力保持恒定。在较高的电流密度(> 160mA / cm {sup} 2)观察到电穿孔的效果:a)在刺激发作的初始快速变化之后,v {sub} m快速下降导致最终△v逐渐降低{次} m增加刺激力量; b)随着刺激强度的增加,恢复后恢复潜力的升高逐渐增加。这些结果表明,在强烈的电击期间,存在跨极化的跨扫描电位迹线的电穿孔变化以及类似强度的去极化刺激。这可以解释用于强电刺激的细胞应答的多相性质。

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