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Nav1.8 channels in ganglionated plexi modulate atrial fibrillation inducibility

机译:神经节丛中的Nav1.8通道调节心房纤颤的诱导性

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AimsEmerging evidences indicate that SCN10A/NaV1.8 is associated with cardiac conduction and atrial fibrillation, but the exact role of Na V1.8 in cardiac electrophysiology remains poorly understood. The present study was designed to investigate the effects of blocking Na V1.8 channels in cardiac ganglionated plexi (GP) on modulating cardiac conduction and atrial fibrillation inducibility in the canine model.Methods and resultsThirteen mongrel dogs were randomly enrolled. Right cervical vagus nerve stimulation (VNS) was applied to determine its effects on the sinus rate, ventricular rate during atrial fibrillation, PR interval, atrial effective refractory period, and the cumulative window of vulnerability. The NaV1.8 blocker A-803467 (1 μmol/0.5 mL per GP, n 7) or 5 DMSO/95 polyethylene glycol (0.5 mL per GP, n 6, control) was injected into the anterior right GP and the inferior right GP. The effects of VNS on the sinus rate, ventricular rate, PR interval, atrial effective refractory period, and the cumulative window of vulnerability were significantly eliminated at 10, 35, and 90 min after A-803467 injection. In separate experiments (n 8), A-803467 blunted the slowing of sinus rate with increasing stimulation voltage of the anterior right GP at 10 min after local injection.ConclusionsBlockade of Na V1.8 channels suppresses the effects of VNS on cardiac conduction and atrial fibrillation inducibility, most likely by inhibiting the neural activity of the cardiac GP.
机译:新兴证据表明,SCN10A / NaV1.8与心脏传导和心房颤动有关,但Na V1.8在心脏电生理中的确切作用仍知之甚少。本研究旨在探讨在犬神经节神经丛(GP)中阻断Na V1.8通道对调节心脏传导和心房纤颤诱导性的影响。方法和结果随机招募了13只杂种犬。应用右颈迷走神经刺激(VNS)来确定其对窦率,心房纤颤期间的心室率,PR间隔,心房有效不应期以及累积的脆弱期的影响。将NaV1.8阻滞剂A-803467(每个GP 1μmol/ 0.5 mL,n 7)或5 DMSO / 95聚乙二醇(每个GP 0.5 mL,n 6,对照)注入右前GP和右下GP 。 VNS对A-803467注射后10、35和90分钟时对窦率,心室率,PR间隔,心房有效不应期和易损性累积窗的影响已被明显消除。在单独的实验中(n 8),A-803467在局部注射后10分钟通过增加右前GP的刺激电压抑制了窦速度的减慢。结论Na V1.8通道的阻滞抑制了VNS对心脏传导和心房的影响。诱发纤维化,最有可能是通过抑制心脏GP的神经活动。

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