首页> 美国卫生研究院文献>The Journal of Physiology >The role of Na(+)-Ca2+ exchange in activation of excitation-contraction coupling in rat ventricular myocytes.
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The role of Na(+)-Ca2+ exchange in activation of excitation-contraction coupling in rat ventricular myocytes.

机译:Na(+)-Ca2 +交换在激活大鼠心室肌细胞中的兴奋-收缩偶联中的作用。

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摘要

1. The purpose of this study was to determine whether mechanisms other than Ca2+ influx via L-type Ca2+ current (ICa) might contribute to activation of contraction in rat ventricular myocytes. The whole-cell voltage-clamp technique was used with normal transmembrane K+ and Na+ gradients at 34 degrees C. The sarcoplasmic reticulum (SR) was conditioned with one to three prepulses to +100 mV for 100 ms. 2. Cell shortening (delta L) increased with test voltage up to a plateau level at about +20 mV, beyond which cell shortening remained fairly constant, thus describing a sigmoidal voltage dependence. This relationship was obtained when holding potential (Vh) was either -40 or -70 mV; however, greater shortening was obtained at the more negative Vh. 3. The sigmoidal V-delta L relationship was converted to a bell shape following the magnitude of ICa when internal Cs+ was substituted for K+ and when the temperature was reduced to 22 degrees C. 4. At 34 degrees C, block of ICa with nifedipine (10 microM) decreased shortening by about 50% but did not alter the voltage dependence of delta L when Vh was either -40 or -70 mV. Addition of Ni2+ (4-5 mM) blocked all remaining contractions. 5. When cell shortening was triggered by an action potential voltage clamp, there was again about 50% of the contraction that was insensitive to nifedipine but was blocked by Ni2+. 6. Our results demonstrate that there is a significant contribution of a nifedipine-insensitive mechanism to the activation of contraction. This mechanism is likely to be reverse mode Na(+)-Ca2+ exchange since it appears to be sensitive to both voltage and Ni2+. We conclude that a contribution of reverse Na(+)-Ca2+ exchange to activation of excitation-contraction coupling occurs in rat heart at near-physiological conditions which include warm temperatures, normal transmembrane Na+ and K+ gradients and activation in response to an action potential.
机译:1.这项研究的目的是确定除通过L型Ca2 +电流(ICa)流入Ca2 +之外的其他机制是否可能有助于激活大鼠心室肌细胞的收缩。使用全细胞电压钳技术,在34摄氏度下使用正常的跨膜K +和Na +梯度。将肌浆网(SR)用一到三个预脉冲调节至+100 mV,持续100 ms。 2.随着测试电压的增加,电池缩短(增量L)增加到大约+20 mV的平稳水平,超过此电压,电池缩短保持相当恒定,因此描述了S型电压依赖性。当保持电势(Vh)为-40或-70 mV时,可以得到这种关系。但是,在负Vh更大的情况下获得了更大的缩短。 3.当内部Cs +代替K +且温度降低至22°C时,S型V-delta L关系随着ICa的大小转换为钟形。4.在34°C下,硝苯地平阻滞ICa当Vh为-40或-70 mV时(10 microM),缩短缩短了约50%,但没有改变delta L的电压依赖性。 Ni2 +(4-5 mM)的添加阻止了所有剩余的收缩。 5.当通过动作电位钳位触发细胞缩短时,又有约50%的收缩对硝苯地平不敏感,但被Ni2 +阻断。 6.我们的结果表明,硝苯地平不敏感机制对收缩的激活有重要贡献。该机制可能是反向模式Na(+)-Ca2 +交换,因为它似乎对电压和Ni2 +都敏感。我们得出的结论是,Na(+)-Ca2 +反向交换对激活兴奋-收缩偶联的作用发生在大鼠心脏附近的生理条件下,包括温暖的温度,正常的跨膜Na +和K +梯度以及响应动作电位的激活。

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