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首页> 外文期刊>American Journal of Physiology >Transmural heterogeneity of action potentials and Ito1 in myocytes isolated from the human right ventricle.
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Transmural heterogeneity of action potentials and Ito1 in myocytes isolated from the human right ventricle.

机译:从人右心室分离的肌细胞中动作电位和Ito1的跨壁异质性。

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Limited information is available about transmural heterogeneity in cardiac electrophysiology in man. The present study was designed to evaluate heterogeneity of cardiac action potential (AP), transient outward K+ current (Ito1) and inwardly rectifying K+ current (IK1) in human right ventricle. AP and membrane currents were recorded using whole cell current- and voltage-clamp techniques in myocytes isolated from subepicardial, midmyocardial, and subendocardial layers of the right ventricle of explanted failing human hearts. AP morphology differed among the regional cell types. AP duration (APD) at 0.5-2 Hz was longer in midmyocardial cells (M cells) than in subepicardial and subendocardial cells. At room temperature, observed Ito1, on step to +60 mV, was significantly greater in subepicardial (6.9 +/- 0.8 pA/pF) and M cells (6.0 +/- 1.1 pA/pF) than in subendocardial cells (2.2 +/- 0.7 pA/pF, P < 0.01). Slower recovery of Ito1 was observed in subendocardial cells. The half-inactivation voltage of Ito1 was more negative in subendocardial cells than in M and subepicardial cells. At 36 degrees C, the density of Ito1 increased, the time-dependent inactivation and reactivation accelerated, and the frequency-dependent reduction attenuated in all regional cell types. No significant difference was observed in IK1 density among the regional cell types. The results indicate that M cells in humans, as in canines, show the greatest APD and that a gradient of Ito1 density is present in the transmural ventricular wall. Therefore, the human right ventricle shows significant transmural heterogeneity in AP morphology and Ito1 properties.
机译:关于人心脏电生理学中透壁异质性的信息有限。本研究旨在评估心脏运动电位(AP),瞬时向外K +电流(Ito1)和向内整流K +电流(IK1)在人右心室中的异质性。使用全细胞电流钳位和电压钳技术在分离自已衰竭的人心脏右心室的心外膜下层,心肌中层和心内膜下层的心肌细胞中记录AP和膜电流。 AP形态在区域细胞类型之间有所不同。心肌中层细胞(M细胞)在0.5-2 Hz的AP持续时间(APD)比心外膜下和心内膜下细胞更长。在室温下,心外膜下(6.9 +/- 0.8 pA / pF)和M细胞(6.0 +/- 1.1 pA / pF)观察到的Ito1在上升至+60 mV时显着大于心内膜下细胞(2.2 + / -0.7 pA / pF,P <0.01)。在心内膜下细胞中观察到Ito1的恢复较慢。 Ito1的半灭活电压在心内膜下细胞中比在M和心外膜下细胞中更负。在36摄氏度时,在所有区域细胞类型中,Ito1的密度增加,与时间有关的失活和重新激活加速,与频率有关的减少减弱。在区域细胞类型之间,未观察到IK1密度的显着差异。结果表明,人的M细胞与犬类一样,显示出最大的APD,并且透壁心室壁中存在Ito1密度梯度。因此,右心室在AP形态和Ito1特性方面表现出明显的跨壁异质性。

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