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钠钙交换体在豚鼠心室肌细胞收缩速率依赖性增加中的作用。

The role of the Na(+)-Ca2+ exchanger in the rate-dependent increase in contraction in guinea-pig ventricular myocytes.

作者信息

Harrison S M, Boyett M R

机构信息

Department of Physiology, University of Leeds, UK.

出版信息

J Physiol. 1995 Feb 1;482 ( Pt 3)(Pt 3):555-66. doi: 10.1113/jphysiol.1995.sp020539.

Abstract
  1. The intracellular sodium activity (alpha Na1), contraction and membrane current were recorded simultaneously in voltage-clamped guinea-pig ventricular myocytes. 2. Increasing the frequency (from 0.5 to 3 Hz) of voltage clamp pulses to 0 mV from a holding potential of -80 mV led to an increase in both alpha Na1 and contraction. The rate-dependent increase in contraction was reduced by 25 microM tetrodotoxin (TTX) and abolished with a holding potential of -40 mV. There was no rate-dependent rise in alpha Na1 with a holding potential of -40 mV. These results suggest an important role for alpha Na1 and in particular Na+ influx via Na+ channels during rate-dependent changes in contraction. 3. After an increase in frequency from 0.5 to 3 Hz, membrane current at the end of voltage clamp pulses became progressively more outward and the tail current upon at repolarization became progressively more inward compared with those recorded at 0.5 Hz. TTX reduced the magnitude of both the outward and inward rate-dependent shifts of current. 4. The addition of extracellular CsCl blocked the inward rectifier potassium current (IK.1) and the delayed rectifier (IK), but did not change the rate-dependent shift in current. 5. The difference between current-voltage relationships at 0.5 and 3 Hz showed that the rate-dependent outward shift of current at the end of voltage clamp pulses was small at potentials negative to -20 mV, was larger at more positive potentials and was reduced by TTX at most potentials. The TTX-sensitive component reversed at -47 mV. 6. These results are consistent with a net increase in outward Na(+)-Ca2+ exchange current during a voltage clamp pulse in response to the rise of alpha Na1. The increase in outward current (resulting from either enhanced Ca2+ influx or reduced Ca2+ efflux) will augment the Ca2+ load of the cell and contribute to the rate-dependent increase in contraction.
摘要
  1. 在电压钳制的豚鼠心室肌细胞中同时记录细胞内钠活性(αNa1)、收缩和膜电流。2. 将电压钳制脉冲的频率(从0.5 Hz增加到3 Hz)从 -80 mV的钳制电位升至0 mV,导致αNa1和收缩均增加。收缩的频率依赖性增加被25 μM河豚毒素(TTX)降低,并在 -40 mV的钳制电位时消失。在 -40 mV的钳制电位下,αNa1没有频率依赖性升高。这些结果表明αNa1,特别是通过钠通道的Na+内流在收缩的频率依赖性变化中起重要作用。3. 在频率从0.5 Hz增加到3 Hz后,与在0.5 Hz记录的相比,电压钳制脉冲结束时的膜电流逐渐向外,复极化时的尾电流逐渐向内。TTX降低了电流的外向和内向频率依赖性变化的幅度。4. 加入细胞外CsCl阻断内向整流钾电流(IK.1)和延迟整流电流(IK),但不改变电流的频率依赖性变化。5. 0.5 Hz和3 Hz时电流 - 电压关系的差异表明,电压钳制脉冲结束时电流的频率依赖性外向变化在负于 -20 mV的电位时较小,在更正的电位时较大,并且在大多数电位下被TTX降低。TTX敏感成分在 -47 mV时反转。6. 这些结果与电压钳制脉冲期间由于αNa1升高导致外向Na(+)-Ca2+交换电流净增加一致。外向电流的增加(由增强的Ca2+内流或减少的Ca2+外流引起)将增加细胞的Ca2+负荷,并有助于收缩的频率依赖性增加。

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