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与兔心房刺激后增强相关的细胞外钙瞬变和动作电位构型变化。

Extracellular calcium transients and action potential configuration changes related to post-stimulatory potentiation in rabbit atrium.

作者信息

Hilgemann D W

出版信息

J Gen Physiol. 1986 May;87(5):675-706. doi: 10.1085/jgp.87.5.675.

Abstract

Extracellular calcium transients were monitored with 2 mM tetramethylmurexide at low calcium (250 microM total, 130 microM free), and action potentials were monitored together with developed tension at normal calcium (1.3 mM) during the production and decay of post-stimulatory potentiation in rabbit left atrial strips. At normal calcium, the contractile potentiation produced by a brief burst of 4 Hz stimulation is lost in three to five post-stimulatory excitations, which correlate with a negative staircase of the late action potential. At low calcium, stimulation at 4 Hz for 3-8 s results in a net extracellular calcium depletion of 5-15 microM. At the subsequent potentiated contraction (1-45 s rest), total extracellular calcium increases by 4-8 microM. The contractile response at a second excitation is greatly suppressed and results in little or no further calcium shift; the sequence can be repeated immediately thereafter. Reducing external sodium to 60 mM (sucrose replacement) enhances post-rest contractions, suppresses the late action potential, nearly eliminates loss of contractility and net calcium efflux at post-rest excitations, and markedly reduces extracellular calcium depletion during rapid stimulation. 4-Aminopyridine (1 mM) markedly suppresses the rapid early repolarization of this preparation at post-rest excitations and the loss of contractility at post-rest stimulation from the rested state; during a post-stimulatory potentiation sequence at low calcium, replenishment of extracellular calcium takes several post-stimulatory excitations. Ryanodine (10 nM to 5 microM) abolishes the post-stimulatory contraction at rest periods of greater than 5 s. If the initial repolarization is rapid, ryanodine suppresses the late action potential, calcium efflux during quiescence is greatly accelerated, and subsequent excitations do not result in an accumulation of extracellular calcium. A positive staircase of the early action potential correlates with the magnitude of net extracellular calcium depletion. These findings demonstrate that negative contractile staircases at post-rest stimulation correspond closely to an accumulation of extracellular calcium at activation and a negative staircase of the late action potential; the correlation of these three events suggests that electrogenic sodium-calcium exchange is the common underlying mechanism.

摘要

在低钙(总钙250微摩尔/升,游离钙130微摩尔/升)条件下,用2毫摩尔/升的四甲基紫脲酸监测细胞外钙瞬变;在兔左心房条带产生和衰减刺激后增强的过程中,在正常钙(1.3毫摩尔/升)条件下监测动作电位和已产生的张力。在正常钙条件下,由4赫兹短暂刺激爆发产生的收缩增强在刺激后的三到五次兴奋中消失,这与晚期动作电位的负阶梯相关。在低钙条件下,4赫兹刺激3 - 8秒导致细胞外钙净消耗5 - 15微摩尔。在随后的增强收缩(休息1 - 45秒)时,细胞外总钙增加4 - 8微摩尔。第二次兴奋时的收缩反应被大大抑制,几乎没有或没有进一步的钙转移;此后可立即重复该序列。将细胞外钠降至60毫摩尔/升(用蔗糖替代)可增强休息后的收缩,抑制晚期动作电位,几乎消除休息后兴奋时的收缩力丧失和钙净流出,并显著减少快速刺激期间的细胞外钙消耗。4 - 氨基吡啶(1毫摩尔/升)在休息后兴奋时显著抑制该标本的快速早期复极化以及从静息状态开始休息后刺激时的收缩力丧失;在低钙条件下的刺激后增强序列中,细胞外钙的补充需要几次刺激后兴奋。Ryanodine(10纳摩尔/升至5微摩尔/升)在休息时间大于5秒时消除刺激后的收缩。如果初始复极化很快,ryanodine会抑制晚期动作电位,静息时的钙流出会大大加速,随后的兴奋不会导致细胞外钙的积累。早期动作电位的正阶梯与细胞外钙净消耗的幅度相关。这些发现表明,休息后刺激时的负收缩阶梯与激活时细胞外钙的积累以及晚期动作电位的负阶梯密切相关;这三个事件的相关性表明,电致钠钙交换是共同的潜在机制。

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