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TRPM4 Participates in Aldosterone-Salt-Induced Electrical Atrial Remodeling in Mice

机译:TRPM4参与小鼠中醛酮盐诱导的电风肠脏重塑

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摘要

Aldosterone plays a major role in atrial structural and electrical remodeling, in particular through Ca2+-transient perturbations and shortening of the action potential. The Ca2+-activated non-selective cation channel Transient Receptor Potential Melastatin 4 (TRPM4) participates in atrial action potential. The aim of our study was to elucidate the interactions between aldosterone and TRPM4 in atrial remodeling and arrhythmias susceptibility. Hyperaldosteronemia, combined with a high salt diet, was induced in mice by subcutaneously implanted osmotic pumps during 4 weeks, delivering aldosterone or physiological serum for control animals. The experiments were conducted in wild type animals (Trpm4+/+) as well as Trpm4 knock-out animals (Trpm4-/-). The atrial diameter measured by echocardiography was higher in Trpm4-/- compared to Trpm4+/+ animals, and hyperaldosteronemia-salt produced a dilatation in both groups. Action potentials duration and triggered arrhythmias were measured using intracellular microelectrodes on the isolated left atrium. Hyperaldosteronemia-salt prolong action potential in Trpm4-/- mice but had no effect on Trpm4+/+ mice. In the control group (no aldosterone-salt treatment), no triggered arrythmias were recorded in Trpm4+/+ mice, but a high level was detected in Trpm4-/- mice. Hyperaldosteronemia-salt enhanced the occurrence of arrhythmias (early as well as delayed-afterdepolarization) in Trpm4+/+ mice but decreased it in Trpm4-/- animals. Atrial connexin43 immunolabelling indicated their disorganization at the intercalated disks and a redistribution at the lateral side induced by hyperaldosteronemia-salt but also by Trpm4 disruption. In addition, hyperaldosteronemia-salt produced pronounced atrial endothelial thickening in both groups. Altogether, our results indicated that hyperaldosteronemia-salt and TRPM4 participate in atrial electrical and structural remodeling. It appears that TRPM4 is involved in aldosterone-induced atrial action potential shortening. In addition, TRPM4 may promote aldosterone-induced atrial arrhythmias, however, the underlying mechanisms remain to be explored.
机译:醛固酮在心房结构和电气重塑中发挥着重要作用,特别是通过CA2 + -Transient扰动和缩短动作潜力。 Ca2 +活化的非选择性阳离子通道瞬态受体潜在素母素蛋白4(TRPM4)参与心房作用潜力。我们研究的目的是阐明醛固酮和TRPM4在心房重塑和心律失常易感性之间的相互作用。在4周内通过皮下植入渗透泵诱导小鼠的甲蛋白酶血症,结合高盐饮食,为对照动物提供醛固酮或生理血清。实验在野生型动物(TRPM4 + / +)以及TRPM4敲除动物(TRPM4 - / - )进行。通过超声心动图测量的心房直径在TRPM4 - / - 与TRPM4 + / +动物相比,并且甲状腺肿血症血症症两组产生膨胀。使用分离的左心房上的细胞内微电极测量动作电位持续时间和触发的心律失常。 TRPM4 - / - 小鼠中甲状腺肿血症血症延长动作电位,但对TRPM4 + / +小鼠没有影响。在对照组(无醛甾酮盐处理)中,在TRPM4 + / +小鼠中记录触发的酸酐,但在TRPM4 - / - 小鼠中检测到高水平。甲蛋白酶血症血症增强了TRPM4 + / +小鼠中的心律失常(早期以及延迟后的延迟),但在TRPM4 - / - 动物中降低了它。 Atrial Connexin43免疫标签表明其在插层圆盘上的紊乱和由甲状腺表血症症症诱导的侧面的再分布,还通过TRPM4破坏。此外,甲蛋白酶血症症在两组中产生明显的心房内皮增稠。完全,我们的结果表明,甲蛋白酶血症和TRPM4参与心房电气和结构重塑。似乎TRPM4涉及醛固酮诱导的心房动作电位缩短。此外,TRPM4可以促进醛固酮诱导的心理性心律失常,但仍有待探索的潜在机制。

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