首页> 外文OA文献 >Fundamental importance of Na+-Ca2+ exchange for the pacemaking mechanism in guinea-pig sino-atrial node.
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Fundamental importance of Na+-Ca2+ exchange for the pacemaking mechanism in guinea-pig sino-atrial node.

机译:Na + -Ca2 +交换对于豚鼠窦房结的起搏机制的根本重要性。

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摘要

Na+-Ca2+ exchange (NCX) current has been suggested to play a role in cardiac pacemaking, particularly in association with Ca2+ release from the sarcoplasmic reticulum (SR) that occurs just before the action potential upstroke. The present experiments explore in more detail the contribution of NCX to pacemaking. Na+-Ca2+ exchange current was inhibited by rapid switch to low-Na+ solution (with Li+ replacing Na+) within the time course of a single cardiac cycle to avoid slow secondary effects. Rapid switch to low-Na+ solution caused immediate cessation of spontaneous action potentials. ZD7288 (3 microM), to block I(f) (funny current) channels, slowed but did not stop the spontaneous activity, and tetrodotoxin (10 microM), to block Na+ channels, had little effect, but in the presence of either of these agents, rapid switch to low-Na+ solution again caused immediate cessation of spontaneous action potentials. Spontaneous electrical activity was also stopped following loading of the cells with the Ca2+ chelators BAPTA and EGTA, and by exposure to the NCX inhibitor KB-R7943 (5 microM). When rapid switch to low-Na+ solution caused cessation of spontaneous activity, this was found (using confocal microscopy, with fluo-4 as the Ca2+ probe) to be accompanied by an initial fall in cytosolic [Ca2+], with subsequent appearance of Ca2+ waves. Inhibition of SR Ca2+ uptake with cyclopiazonic acid (CPA, 30 microM) slowed but did not stop spontaneous activity. Rapid switch to low-Na+ solution in the presence of CPA caused abolition of spontaneous Ca2+ transients and a progressive rise in cytosolic [Ca2+]. With ratiometric fluorescence methods (indo-5F as the Ca2+ probe), the minimum level of [Ca2+] between beats was found to be approximately 225 nM, and abolition of beating with nifedipine, acetylcholine or adenosine caused a fall in cytosolic [Ca2+] below this level. These observations support the hypothesis that NCX current is essential for normal pacemaker activity under the conditions of our experiments. A continuous depolarizing influence of current through the NCX protein might result from maintained electrogenic NCX (with 3:1 stoichiometry, supported by a cytosolic [Ca2+] that normally does not fall below 225 nM between beats) and/or from a novel, recently suggested role of the NCX protein to allow a Na+ leak pathway.
机译:已建议Na + -Ca2 +交换(NCX)电流在心脏起搏中起一定作用,尤其是与动作电位上扬之前发生的肌浆网(SR)中的Ca2 +释放有关。本实验更详细地探讨了NCX对起搏的贡献。 Na + -Ca2 +交换电流通过在单个心动周期内快速切换到低Na +溶液(用Li +替代Na +)来抑制,以避免缓慢的继发作用。快速切换到低Na +溶液会导致自发动作电位立即停止。 ZD7288(3 microM)(用于阻断I(f)(不寻常的电流)通道)减慢但并未阻止自发活动,而河豚毒素(10 microM)(用于阻断Na +通道)作用不大,但存在以下两种情况之一这些试剂迅速转换为低Na +溶液再次导致自发动作电位立即停止。用Ca2 +螯合剂BAPTA和EGTA加载细胞后,并通过暴露于NCX抑制剂KB-R7943(5 microM),也会停止自发电活动。当快速切换到低Na +溶液导致自发活性停止时,发现这种现象(使用共聚焦显微镜,以fluo-4作为Ca2 +探针)伴随着细胞质[Ca2 +]的最初下降,随后出现Ca2 +波。 。环吡嗪酸(CPA,30 microM)对SR Ca2 +吸收的抑制作用减慢,但并未停止自发活性。在CPA存在下快速切换到低Na +溶液会导致自发的Ca2 +瞬变消失,胞质[Ca2 +]逐渐升高。使用比率荧光法(用indo-5F作为Ca2 +探针),发现两次搏动之间的[Ca2 +]最低水平约为225 nM,废除硝苯地平,乙酰胆碱或腺苷的跳动导致以下胞质[Ca2 +]下降这个水平。这些观察结果支持以下假设:在我们的实验条件下,NCX电流对于正常的起搏器活动至关重要。电流的持续去极化影响可能来自维持电源性NCX(化学计量比为3:1,并在搏动之间通常不低于225 nM的胞质[Ca2 +]的支持下)和/或新近提出NCX蛋白在Na +泄漏途径中的作用。

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