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Electrotonic suppression of early afterdepolarizations in the neonatal rat ventricular myocyte monolayer

机译:对新生大鼠心室肌细胞单层的早期除极后的电声抑制

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摘要

Pathologies that result in early afterdepolarizations (EADs) are a known trigger for tachyarrhythmias, but the conditions that cause surrounding tissue to conduct or suppress EADs are poorly understood. Here we introduce a cell culture model of EAD propagation consisting of monolayers of cultured neonatal rat ventricular myocytes treated with anthopleurin-A (AP-A). AP-A-treated monolayers display a cycle length dependent prolongation of action potential duration (245 ms untreated, vs. 610 ms at 1 Hz and 1200 ms at 0.5 Hz for AP-A-treated monolayers). In contrast, isolated single cells treated with AP-A develop prominent irregular oscillations with a frequency of 2.5 Hz, and a variable prolongation of the action potential duration of up to several seconds. To investigate whether electrotonic interactions between coupled cells modulates EAD formation, cell connectivity was reduced by RNA silencing gap junction Cx43. In contrast to well-connected monolayers, gap junction silenced monolayers display bradycardia-dependent plateau oscillations consistent with EADs. Further, simulations of a cell displaying EADs electrically connected to a cell with normal action potentials show a coupling strength-dependent suppression of EADs consistent with the experimental results. These results suggest that electrotonic effects may play a critical role in EAD-mediated arrhythmogenesis.
机译:导致早期除极后(EAD)的病理是快速性心律失常的已知触发因素,但导致周围组织传导或抑制EAD的病因知之甚少。在这里,我们介绍了一种EAD传播的细胞培养模型,该模型由单层培养的花椒素A(AP-A)处理的新生大鼠心室肌细胞组成。 AP-A处理的单层细胞显示出动作电位持续时间的周期长度依赖性延长(未经处理为245 ms,而AP-A处理的单层细胞在1 Hz时为610 ms,在0.5 Hz时为1200 ms)。相反,用AP-A处理的分离的单细胞会产生明显的不规则振荡,其频率为2.5 Hz,动作电位持续时间的可变延长时间可达几秒钟。为了研究耦合细胞之间的电渗相互作用是否能调节EAD的形成,RNA沉默间隙连接Cx43降低了细胞的连通性。与连接良好的单分子层相反,间隙连接沉默的单分子层显示出与EAD一致的心动过缓依赖性高原振荡。此外,对具有以正常动作电位电连接到单元的EAD进行显示的单元的仿真显示,与实验结果一致,EAD的耦合强度依赖性抑制作用。这些结果表明,电渗作用可能在EAD介导的心律失常中起关键作用。

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