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Regional variations in action potentials and transient outward current in myocytes isolated from rabbit left ventricle.

机译:从兔左心室分离的心肌细胞中动作电位和瞬时外向电流的区域变化。

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摘要

1. Regional variations in the shape of early repolarization of the action potential have been correlated to differences in transient outward K+ current, I(t), in myocytes isolated from the epicardial surface, the endocardial trabeculae and the papillary muscles of rabbit left ventricles. Temperature was 35 degrees C during whole-cell, and 22-23 degrees C during cell-attached experiments. 2. Membrane resting potentials were very similar regionally. At 0.1 Hz stimulation the action potential plateau amplitude in papillary muscle cells was significantly higher (104.7 mV) than in epicardial cells (96.47 mV). Exposure to 4-aminopyridine or increases in the rate of stimulation from 0.1 Hz to 3.3 Hz increased plateau height and diminished the initial notch on repolarization. These effects were correlated to the magnitude of I(t) in these cells. At low rates of stimulation I(t) caused a 'spike and dome' morphology of the action potential. 3. Voltage clamp experiments confirmed a higher current density of I(t) in epicardial cells (7.66 pA/pF at +20 mV) than in endocardial (6.45 pA/pF) or papillary muscle cells (3.69 pA/pF). I(t) at 35 degrees C was faster and larger than previously reported and individual currents inactivated almost completely during 100 ms pulses to plateau potentials. No differences in the kinetics or voltage dependence of whole-cell currents were found. Thus, the half-inactivation potential was -37.8 mV in cells from all three regions. 4. Cell-attached recordings from endocardial and epicardial cells showed very similar single-channel amplitudes, burst open probabilities and ensemble averages. The peak channel open probability soon after the start of depolarizing voltage clamp pulses did not change between cell types (P approximately 0.8). The slope conductance of I(t) channels was 13.0 pS with an intercept near the resting potential of the cell. 5. We conclude that regional variations in the shape of initial repolarization in cells from rabbit left ventricle are caused by variations in the magnitude of the transient outward K+ current, I(t). Epicardial cells have the largest, and papillary muscle cells the smallest I(t). The differences are not explained by alterations in the whole-cell kinetics or single-channel kinetics and conductance. The most likely explanation for variations in whole-cell current density is therefore a decrease in channel density in endocardium and papillary muscle compared with epicardial tissue. We estimate the density of I(t) channels per cell to be 1495 (one per 3-4 micron2) in epicardium, 1175 (one per 4-5 micron2) in endocardium, and 875 (one per 6 micron2) in papillary muscle cells.
机译:1.动作电位的早期复极形状的区域变化与从兔子左心室的心外膜表面,心内膜小梁和乳头肌分离的心肌细胞的瞬时向外K +电流I(t)的差异相关。全细胞温度为35℃,细胞附着实验温度为22-23℃。 2.区域的膜静息潜力非常相似。在0.1 Hz刺激下,乳头肌细胞中的动作电位平台振幅(104.7 mV)明显高于心外膜细胞(96.47 mV)。暴露于4-氨基吡啶或刺激速率从0.1 Hz增加到3.3 Hz会增加平台高度并减少复极化时的初始切口。这些影响与这些细胞中I(t)的大小相关。在低刺激率下,I(t)导致动作电位呈“尖峰和圆顶”形态。 3.电压钳实验证实,心内膜细胞中I(t)的电流密度(+20 mV时为7.66 pA / pF)要比心内膜(6.45 pA / pF)或乳头肌细胞(3.69 pA / pF)更高。在35摄氏度时,I(t)比先前报道的速度更快且更大,并且在100 ms脉冲至平稳电位期间,单个电流几乎完全失活。没有发现全细胞电流的动力学或电压依赖性的差异。因此,来自所有三个区域的细胞的半灭活电位为-37.8 mV。 4.心内膜和心外膜细胞的细胞附着记录显示非常相似的单通道振幅,爆发概率和整体平均值。在去极化电压钳制脉冲开始后不久,峰值通道打开概率在两种电池类型之间没有变化(P约为0.8)。 I(t)通道的斜率电导为13.0 pS,在细胞的静息电位附近有一个截距。 5.我们得出结论,来自兔左心室的细胞中初始复极化形状的区域变化是由瞬时向外K +电流I(t)的大小变化引起的。心外膜细胞具有最大的I(t),乳头肌细胞具有最小的I(t)。不能通过改变全细胞动力学或单通道动力学和电导来解释差异。因此,全细胞电流密度变化的最可能解释是与心外膜组织相比,心内膜和乳头肌中的通道密度降低。我们估计心外膜中每个细胞的I(t)通道密度分别为心内膜为1495(每3-4微米2个),心内膜为1175(每4-5微米2个)和乳头肌细胞为875(每6微米2个)。 。

著录项

  • 作者

    Fedida, D; Giles, W R;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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