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钠钙交换在雪貂心室肌双脉冲增强中的作用。

The role of Na(+)-Ca2+ exchange in paired pulse potentiation of ferret ventricular muscle.

作者信息

Kirby M S, McCall E, Orchard C H, Boyett M R

机构信息

Department of Physiology, University of Leeds.

出版信息

J Physiol. 1993 Dec;472:415-42. doi: 10.1113/jphysiol.1993.sp019954.

Abstract
  1. Stimulation of cardiac muscle with pairs of stimuli ('paired pulse stimulation') results in a large inotropic effect and experiments have been carried out on ferret ventricular muscle to investigate the underlying mechanism. 2. Aequorin was used to measure sarcoplasmic Ca2+ in papillary muscles. During paired pulse stimulation the first aequorin light transient (i.e. Ca2+ transient) and contraction of the pair increased in amplitude, whereas the second aequorin light transient and contraction were small. When the interval between the pair was decreased, the second aequorin light transient and contraction of the pair were smaller, but the increase in the first aequorin light transient and contraction was greater. 3. The relationship between contraction and the aequorin light transient was the same during paired pulse stimulation and on raising the bathing Ca2+ concentration. It is concluded that there was no change in the myofilament sensitivity to Ca2+ during paired pulse stimulation. 4. The increase in the aequorin light transient and contraction during paired pulse stimulation was prevented by ryanodine, an inhibitor of the sarcoplasmic reticulum (SR). 5. During paired pulse stimulation of ventricular myocytes there was little change in the first action potential of the pair, but the second action potential was shorter than control when the interval between the pair was short. During paired pulse stimulation of ventricular myocytes under voltage clamp control there was little change in the first Ca2+ current (iCa) of the pair, but the second iCa was smaller than control when the interval between the pair was short. Because paired pulse potentiation was greatest when the interval between the pair was short, it is concluded that paired pulse potentiation was not the result of a prolongation of the action potential or increase in iCa. 6. During paired pulse stimulation of ventricular myocytes under voltage clamp control the increase in contraction was greater, the more positive the membrane potential during the second pulse of the pair. This voltage dependence is consistent with a role for the Na(+)-Ca2+ exchanger in paired pulse potentiation. 7. During paired pulse stimulation of ventricular myocytes under voltage clamp control, changes in putative Na(+)-Ca2+ exchange current were observed consistent with a decrease of Ca2+ efflux (or increase of Ca2+ influx) via the exchanger during the second pulse of the pair. 8. A computer model of excitation-contraction coupling (Harrison, McCall & Boyett, 1992) has been used to simulate paired pulse stimulation and the results described above.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 用成对刺激(“双脉冲刺激”)刺激心肌会产生较大的变力效应,并且已经在雪貂心室肌上进行了实验以研究其潜在机制。2. 水母发光蛋白用于测量乳头肌中的肌浆Ca2+。在双脉冲刺激期间,成对的第一个水母发光蛋白光瞬变(即Ca2+瞬变)和收缩幅度增加,而第二个水母发光蛋白光瞬变和收缩较小。当成对刺激之间的间隔缩短时,第二个水母发光蛋白光瞬变和成对收缩更小,但第一个水母发光蛋白光瞬变和收缩的增加更大。3. 在双脉冲刺激期间以及提高浴液Ca2+浓度时,收缩与水母发光蛋白光瞬变之间的关系是相同的。得出的结论是,在双脉冲刺激期间肌丝对Ca2+的敏感性没有变化。4. 双脉冲刺激期间水母发光蛋白光瞬变和收缩的增加被兰尼碱(一种肌浆网(SR)抑制剂)所阻止。5. 在心室肌细胞的双脉冲刺激期间,成对的第一个动作电位变化很小,但当成对刺激之间的间隔短时,第二个动作电位比对照短。在电压钳控制下对心室肌细胞进行双脉冲刺激期间,成对的第一个Ca2+电流(iCa)变化很小,但当成对刺激之间的间隔短时,第二个iCa比对照小。由于当成对刺激之间的间隔短时双脉冲增强最大,得出的结论是双脉冲增强不是动作电位延长或iCa增加的结果。6. 在电压钳控制下对心室肌细胞进行双脉冲刺激期间,成对的第二个脉冲期间膜电位越正,收缩增加越大。这种电压依赖性与Na(+)-Ca2+交换体在双脉冲增强中的作用一致。7. 在电压钳控制下对心室肌细胞进行双脉冲刺激期间,观察到假定的Na(+)-Ca2+交换电流的变化与成对的第二个脉冲期间通过交换体的Ca2+外流减少(或Ca2+内流增加)一致。8. 一个兴奋-收缩偶联的计算机模型(哈里森、麦考尔和博伊特,1992年)已被用于模拟双脉冲刺激以及上述结果。(摘要截断于400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3c/1160494/bb37fa718597/jphysiol00414-0418-a.jpg

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