首页> 外文期刊>The Journal of Physiology >Cellular electrophysiology of canine pulmonary vein cardiomyocytes: action potential and ionic current properties.
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Cellular electrophysiology of canine pulmonary vein cardiomyocytes: action potential and ionic current properties.

机译:犬肺静脉心肌细胞的细胞电生理:动作电位和离子电流特性。

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Pulmonary vein (PV) cardiomyocytes play an important role in atrial fibrillation; however, little is known about their specific cellular electrophysiological properties. We applied standard microelectrode recording and whole-cell patch-clamp to evaluate action potentials and ionic currents in canine PVs and left atrium (LA) free wall. Resting membrane potential (RMP) averaged -66 +/- 1 mV in PVs and -74 +/- 1 mV in LA (P < 0.0001) and action potential amplitude averaged 76 +/- 2 mV in PVs vs. 95 +/- 2 mV in LA (P < 0.0001). PVs had smaller maximum phase 0 upstroke velocity (Vmax: 98 +/- 9 vs. 259 +/- 16 V s-1, P < 0.0001) and action potential duration (APD): e.g. at 2 Hz, APD to 90 % repolarization in PVs was 84 % of LA (P < 0.05). Na+ current density under voltage-clamp conditions was similar in PV and LA, suggesting that smaller Vmax in PVs was due to reduced RMP. Inward rectifier current density in the PV cardiomyocytes was ~58 % that in the LA, potentially accounting for the less negative RMP in PVs. Slow and rapid delayed rectifier currents were greater in the PV (by ~60 and ~50 %, respectively), whereas transient outward K+ current and L-type Ca2+ current were significantly smaller (by ~25 and ~30 %, respectively). Na+-Ca2+-exchange (NCX) current and T-type Ca2+ current were not significantly different. In conclusion, PV cardiomyocytes have a discrete distribution of transmembrane ion currents associated with specific action potential properties, with potential implications for understanding PV electrical activity in cardiac arrhythmias.
机译:肺静脉(PV)心肌细胞在心房纤颤中起重要作用。然而,关于它们的特定细胞电生理特性知之甚少。我们应用标准的微电极记录和全细胞膜片钳来评估犬PV和左心房(LA)游离壁中的动作电位和离子电流。静息膜电位(RMP)在PV中平均为-66 +/- 1 mV在LA中为-74 +/- 1 mV(P <0.0001),而PV中的动作电位幅度平均为76 +/- 2 mV与95 +/- LA中为2 mV(P <0.0001)。 PV具有较小的最大0相上冲程速度(Vmax:98 +/- 9 vs. 259 +/- 16 V s-1,P <0.0001)和动作电位持续时间(APD):例如在2 Hz时,PV中APD至90%的复极化为LA的84%(P <0.05)。在电压钳制条件下,Na +电流密度在PV和LA中相似,这表明PV中较小的Vmax是由于RMP降低。 PV心肌细胞的内向整流器电流密度约为LA的58%,这可能是PV中负RMP较小的原因。 PV中的慢速整流器电流和快速延迟整流器电流较大(分别约为60%和50%),而瞬态向外K +电流和L型Ca2 +电流则要小得多(分别约为25%和30%)。 Na + -Ca2 +-交换(NCX)电流和T型Ca2 +电流无明显差异。总之,PV心肌细胞具有与特定动作电位特性相关的跨膜离子电流的离散分布,对理解心律不齐中的PV电活动具有潜在的意义。

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