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对电刺激兔心脏细胞中快速阻断Ca2+通道的fura-2瞬变的影响。

Effect on the fura-2 transient of rapidly blocking the Ca2+ channel in electrically stimulated rabbit heart cells.

作者信息

Levi A J, Issberner J

机构信息

Department of Physiology, School of Medical Sciences, University of Bristol, UK.

出版信息

J Physiol. 1996 May 15;493 ( Pt 1)(Pt 1):19-37. doi: 10.1113/jphysiol.1996.sp021362.

Abstract
  1. We used a rapid solution switcher technique to investigate mechanisms that might trigger intracellular Ca2+ release in rabbit ventricular myocytes. The study was carried out at 36 degrees C, intracellular Ca2+ (Ca2+i) was monitored with fura-2, and myocytes were electrically stimulated. 2. In patch-clamped cells, using the switcher to apply 20 microM nifedipine (an L-type Ca2+ current (ICa,L) blocker) 4 s before a depolarization to +10 mV reduced the amplitude of ICa,L to 10.25 +/- 2.25% of control (mean +/- S.E.M., n = 7 cells). 3. In externally stimulated cells, a rapid switch to 20 microM nifedipine 4 s before a stimulus reduced the amplitude of the fura-2 transient to 64.01 +/- 2.09% of control (mean +/- S.E.M., n = 19 cells). Using an in vivo calibration curve for fura-2, this was equivalent to a reduction in the Ca2+ transient to 50% during nifedipine application. Since an identical nifedipine switch reduced ICa,L to 10.25%, it would seem that blocking a large fraction of ICa,L inhibited only half the Ca2+ transient. 4. The Na(+)-Ca2+ exchanger is inhibited by 5 mM nickel. Switching to 20 microM nifedipine +5 mM nickel 4 s before a stimulus abolished the fura-2 transient completely, consistent with the hypothesis that Ca2+ entry via reverse Na(+)-Ca2+ exchange might trigger a fraction of the fura-2 transient that remained during nifedipine. 5. After the Na(+)-K+ pump was inhibited by strophanthidin to increase intracellular Na+ (Na+i), a switch to 20 microM nifedipine became progressively less effective in reducing the fura-2 transient. This suggests that as Na+i rose, other mechanisms (perhaps reverse Na(+)-Ca2+ exchange) appeared able to substitute for ICa,L in triggering the Ca2+ transient. 6. In cells depleted of Nai+ to inhibit the triggering of sarcoplasmic reticulum (SR) Ca2+ release by reverse Na(+)-Ca2+ exchange, a nifedipine switch reduced the fura-2 transient to 10.9 +/- 4.19% (mean +/- S.E.M., n = 7; equivalent to 6.5% of the Ca2+ transient). 7. A switch to Na(+)-free (Li+) solution 100 ms before an electrical stimulus caused an increase in the fura-2 transient of 12.2 +/- 1.5% (mean +/- S.E.M., n = 7; equivalent to a 22% increase in the Ca2+ transient). 8. The results confirm that ICa,L is an important trigger for SR Ca2+ release and the resulting Ca2+ transient. However, since 50% of the Ca2+ transient remained when ICa,L was largely inhibited, it would seem likely that other SR trigger mechanisms might exist in addition. These data are consistent with the idea that Ca2+ entry via reverse Na(+)-Ca2+ exchange during the upstroke of the normal cardiac action potential might trigger a fraction of SR Ca2+ release and the resulting Ca2+ transient.
摘要
  1. 我们采用快速溶液切换技术来研究可能触发兔心室肌细胞内钙离子(Ca2+)释放的机制。实验在36摄氏度下进行,使用fura-2监测细胞内钙离子(Ca2+i),并对肌细胞进行电刺激。2. 在膜片钳记录的细胞中,在去极化至+10 mV前4秒,使用切换器施加20微摩尔硝苯地平(一种L型钙电流(ICa,L)阻滞剂),可将ICa,L的幅度降低至对照值的10.25±2.25%(平均值±标准误,n = 7个细胞)。3. 在外部刺激的细胞中,在刺激前4秒快速切换至20微摩尔硝苯地平,可将fura-2荧光瞬变幅度降低至对照值的64.01±2.09%(平均值±标准误,n = 19个细胞)。利用fura-2的体内校准曲线,这相当于在应用硝苯地平期间钙离子瞬变降低至50%。由于相同的硝苯地平切换将ICa,L降低至10.25%,似乎阻断大部分ICa,L仅抑制了一半的钙离子瞬变。4. 5毫摩尔镍可抑制钠钙交换体。在刺激前4秒切换至20微摩尔硝苯地平 + 5毫摩尔镍可完全消除fura-2荧光瞬变,这与以下假设一致:通过反向钠钙交换进入的钙离子可能触发了硝苯地平作用期间剩余的一部分fura-2荧光瞬变。5. 在毒毛花苷抑制钠钾泵以增加细胞内钠离子(Na+i)后,切换至20微摩尔硝苯地平在降低fura-2荧光瞬变方面逐渐变得效果不佳。这表明随着Na+i升高,其他机制(可能是反向钠钙交换)似乎能够替代ICa,L来触发钙离子瞬变。6. 在耗尽细胞内钠离子(Nai+)以抑制反向钠钙交换触发肌浆网(SR)钙离子释放的细胞中,硝苯地平切换将fura-2荧光瞬变降低至10.9±4.19%(平均值±标准误,n = 7;相当于钙离子瞬变的6.5%)。7. 在电刺激前100毫秒切换至无钠(锂)溶液,可使fura-2荧光瞬变增加12.2±1.5%(平均值±标准误,n = 7;相当于钙离子瞬变增加22%)。8. 结果证实ICa,L是SR钙离子释放及由此产生的钙离子瞬变的重要触发因素。然而,由于当ICa,L被大量抑制时仍有50%的钙离子瞬变存在,似乎可能还存在其他SR触发机制。这些数据与以下观点一致:在正常心脏动作电位上升支期间,通过反向钠钙交换进入的钙离子可能触发一部分SR钙离子释放及由此产生的钙离子瞬变。

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