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Relationship between L-type Ca2+ current and unitary sarcoplasmic reticulum Ca2+ release events in rat ventricular myocytes

机译:大鼠心室肌细胞L型Ca2 +电流与单个质浆网Ca2 +释放事件的关系

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摘要

The time courses of Ca2+ current and Ca2+ spark occurrence were determined in single rat ventricular myocytes voltage clamped with patch pipettes containing 0.1 μM fluo-3. Acquisition of line-scan images on a laser scanning confocal microscope was synchronized with measurement of Cd2+-sensitive Ca2+ currents. In most cells, individual Ca2+ sparks were observed by reducing Ca2+ current density with nifedipine (0.1-8 μM).Ca2+ sparks elicited by depolarizing voltage-clamp pulses had a peak [Ca2+] amplitude of 289 ± 3 nM with a decay half-time of 20.8 ± 0.2 ms and a full width at half-maximum of 1.40 ± 0.03 μm (mean ± s.e.m., n = 345), independent of the membrane potential.The time between the beginning of a depolarization and the initiation of each Ca2+ spark was calculated and data were pooled to construct waiting time histograms. Exponential functions were fitted to these histograms and to the decaying phase of the Ca2+ current. This analysis showed that the time constants describing Ca2+ current and Ca2+ spark occurrence at membrane potentials between -30 mV and +30 mV were not significantly different. At +50 mV, in the absence of nifedipine, the time constant describing Ca2+ spark occurrence was significantly larger than the time constant of the Ca2+ current.A simple model is developed using Poisson statistics to relate macroscopic Ca2+ current to the opening of single L-type Ca2+ channels at the dyad junction and to the time course of Ca2+ spark occurrence. The model suggests that the time courses of macroscopic Ca2+ current and Ca2+ spark occurrence should be closely related when opening of a single L-type Ca2+ channel initiates a Ca2+ spark. By comparison with the data, the model suggests that Ca2+ sparks are initiated by the opening of a single L-type Ca2+ channel at all membrane potentials encountered during an action potential.
机译:在用含0.1μMfluo-3的移液管钳住的单只大鼠心室肌细胞电压中确定了Ca2 +电流和Ca2 +火花发生的时间过程。在激光扫描共聚焦显微镜上采集线扫描图像与对Cd2 +敏感的Ca2 +电流的测量同步。在大多数电池中,硝苯地平(0.1-8μM)降低了Ca2 +的电流密度,从而观察到了单个Ca2 +火花。去极化电压钳制脉冲引起的Ca2 +火花的峰[Ca2 +]振幅为289±3 nM,衰减了一半。 20.8±0.2 ms,半峰全宽为1.40±0.03μm(平均值±sem,n = 345),与膜电位无关。从去极化开始到每个Ca2 +火花开始之间的时间为计算并汇总数据以构建等待时间直方图。将指数函数拟合到这些直方图以及Ca2 +电流的衰减相位。该分析表明,描述膜电势在-30 mV和+30 mV之间的Ca2 +电流和Ca2 +火花发生的时间常数没有显着差异。在+50 mV时,在没有硝苯地平的情况下,描述Ca2 +火花发生的时间常数明显大于Ca2 +电流的时间常数。使用泊松统计数据建立了一个简单的模型,将宏观的Ca2 +电流与单个L-的开度相关在二联结和Ca2 +火花发生的时间过程中键入Ca2 +通道。该模型表明,当单个L型Ca2 +通道的开启引发Ca2 +火花时,宏观Ca2 +电流和Ca2 +火花发生的时间进程应紧密相关。通过与数据比较,该模型表明,在动作电位期间遇到的所有膜电位下,通过打开单个L型Ca2 +通道可引发Ca2 +火花。

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