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延长去极化对绵羊心脏浦肯野纤维收缩张力和细胞内钠活性的影响。

Effect of prolonged depolarizations on twitch tension and intracellular sodium activity in sheep cardiac Purkinje fibres.

作者信息

Brill D M, Fozzard H A, Makielski J C, Wasserstrom J A

机构信息

Department of Medicine, University of Chicago Pritzker School of Medicine, IL 60637.

出版信息

J Physiol. 1987 Mar;384:355-75. doi: 10.1113/jphysiol.1987.sp016459.

Abstract
  1. Twitch tension and intracellular Na+ activity (aiNa) were measured in voltage-clamped sheep cardiac Purkinje fibres. aiNa was measured using Na+-sensitive micro-electrodes filled with the liquid ion exchange resin. ETH 227. The stimulus for contraction was a constant 200 ms depolarizing pulse to 0 mV from a holding potential of -80 mV delivered at 0.25 Hz. Prolonged test pulses for 1.8 s (post-pulses) were applied at the end of the stimulus pulse. The effects of post-pulses on twitch tension and aiNa were examined. 2. Post-pulses in the range of -40 mV reduced twitch tension below control force produced without post-pulse. Progressively more positive post-pulses to levels above 0 mV profoundly increased twitch tension, with a greater than 400% rise in tension at +50 to +60 mV compared to control tension. aiNa declined at positive post-pulse potentials by more than 2 mM at +30 to +40 mV. 3. Tetrodotoxin (100 microM) did not affect the post-pulse voltage-tension or voltage-aiNa relation. Ca2+ channel modulation with nitrendipine (1 microM) similarly did not alter the post-pulse voltage-tension relation. 4. Removal of extracellular Na+ eliminated the nadir in tension at post-pulses to -40 mV and the augmentation of tension at post-pulses above 0 mV. 5. We interpret these findings as evidence of voltage-sensitive Na-Ca exchange promoting net Ca2+ influx and net Na+ efflux during positive post-pulses. The unusual shape of the post-pulse voltage-tension relation curve can be accounted for by a charged-carrier model of electrogenic Na-Ca exchange. The inverse relation between aiNa and twitch tension probably reflects the combined effects of reduced aiNa leak and changes in Na+ and Ca2+ flux via voltage-sensitive Na-Ca exchange.
摘要
  1. 在电压钳制的绵羊心脏浦肯野纤维中测量了抽搐张力和细胞内钠离子活性(aiNa)。使用填充有液态离子交换树脂的钠敏感微电极测量aiNa。ETH 227。收缩刺激是从 -80 mV的 holding 电位以0.25 Hz的频率施加到0 mV的持续200 ms去极化脉冲。在刺激脉冲结束时施加持续1.8 s的延长测试脉冲(后脉冲)。检查了后脉冲对抽搐张力和aiNa的影响。2. -40 mV范围内的后脉冲使抽搐张力降低到无后脉冲时产生的对照力以下。向高于0 mV的水平逐渐增加正向的后脉冲会显著增加抽搐张力,与对照张力相比,在 +50至 +60 mV时张力增加超过400%。在正向的后脉冲电位下,aiNa在 +30至 +40 mV时下降超过2 mM。3. 河豚毒素(100 microM)不影响后脉冲电压 - 张力或电压 - aiNa关系。用尼群地平(1 microM)进行钙通道调制同样不会改变后脉冲电压 - 张力关系。4. 去除细胞外钠离子消除了后脉冲至 -40 mV时的张力最低点以及后脉冲高于0 mV时的张力增强。5. 我们将这些发现解释为电压敏感型钠 - 钙交换在正向的后脉冲期间促进净钙离子内流和净钠离子外流的证据。后脉冲电压 - 张力关系曲线的异常形状可以用电源性钠 - 钙交换的带电载体模型来解释。aiNa与抽搐张力之间的反比关系可能反映了aiNa泄漏减少以及通过电压敏感型钠 - 钙交换的钠离子和钙离子通量变化的综合影响。

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