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细胞内酸中毒会降低豚鼠心室肌细胞外向钠钙交换电流。

Intracellular acidosis decreases the outward Na(+)-Ca2+ exchange current in guinea pig ventricular myocytes.

作者信息

Lee E H, Park S R, Paik K S, Suh C K

机构信息

Department of Physiology, Inha University College of Medicine, Inchon, Korea.

出版信息

Yonsei Med J. 1995 May;36(2):146-52. doi: 10.3349/ymj.1995.36.2.146.

Abstract

The Na(+)-Ca2+ exchange transport operating in outward mode has been suggested to cause Ca2+ entry during reperfusion or reoxygenation, exchanging extracellular Ca2+ for intracellular Na+ that has accumulated during ischemia or cardioplegia. During cardioplegia, however, an increase in Ca2+ entry via this mechanism can be decreased due to increased intracellular H+ activity and a decrease in cellular ATP content. In this study giant excised cardiac sarcolemmal membrane patch clamp technique was employed to investigate the effect of cytosolic pH change on the Na(+)-Ca2+ exchanger, excluding the effect of ATP, in guinea pig cardiac myocytes. The outward Na(+)-dependent current, which has a characteristics of Hill equation, was decreased as pH was decreased in the range of 7.5-6.5. The current density generated by the Na(+)-Ca2+ exchange transport was 56.6 +/- 4.4 pA/pF (Mean +/- S.E.M.) at pH 7.2 and decreased to 42.9 +/- 3.0 pA/pF at pH 6.9. These results imply that Na(+)-Ca2+ exchange transport, operating in a reverse mode during cardioplegia, decreases due to increased intracellular H+, and further suggest that consequent intracellular Na+ accumulation is one of aggravating factors for Ca2+ influx during reoxygenation or reperfusion.

摘要

有研究表明,外向模式下运行的钠钙交换转运在再灌注或复氧过程中会导致钙离子内流,即细胞外钙离子与缺血或心脏停搏期间积累的细胞内钠离子进行交换。然而,在心脏停搏期间,由于细胞内氢离子活性增加和细胞内ATP含量降低,通过这种机制的钙离子内流增加的情况会减少。在本研究中,采用豚鼠心肌细胞的巨膜片钳技术,在排除ATP影响的情况下,研究胞质pH变化对钠钙交换体的影响。在7.5至6.5范围内,随着pH值降低,具有希尔方程特征的外向钠依赖性电流减小。在pH 7.2时,钠钙交换转运产生的电流密度为56.6±4.4 pA/pF(平均值±标准误),在pH 6.9时降至42.9±3.0 pA/pF。这些结果表明,在心脏停搏期间以反向模式运行的钠钙交换转运因细胞内氢离子增加而减少,进一步表明随后的细胞内钠离子积累是复氧或再灌注期间钙离子内流的加重因素之一。

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