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pH对离体大鼠肾细胞钙代谢的影响。

Effect of pH on the calcium metabolism of isolated rat kidney cells.

作者信息

Studer R K, Borle A B

出版信息

J Membr Biol. 1979 Aug;48(4):325-41. doi: 10.1007/BF01869444.

Abstract

The effects of metabolic and respiratory acidosis and alkalosis on cellular calcium metabolism were studied in rat kidney cells dispersed with collagenase. In both types of acidosis, the intracellular pH, total cell calcium, and the cell relative radioactivity after 60 min of labeling are significantly depressed. Kinetic analysis of 45-ca desaturation curves shows that acidosis decreases all three cellular calcium pools and depresses calcium fluxes between the superficial and cytosolic pools and between the cytosolic and mitochondrial pools. In alkalosis the intracellular pH, the total cell calcium, and the cell relative radioactivity are significantly increased. Kinetic studies show that in alkalosis, only the mitochondrial pool is consistently increased. Calcium exchange between the mitochondrial and cytosolic pool is increased in metabolic alkalosis only. These results suggest that hydrogen ion is an important modulator of calcium metabolism, and that the intracellular pH rather than extracellular pH is the critical factor in determining the calcium status of cells during altered acid-base conditions.

摘要

用胶原酶分散的大鼠肾细胞研究了代谢性和呼吸性酸中毒及碱中毒对细胞钙代谢的影响。在两种酸中毒类型中,细胞内pH值、细胞总钙含量以及标记60分钟后的细胞相对放射性均显著降低。对45Ca去饱和曲线的动力学分析表明,酸中毒会减少所有三个细胞钙库,并抑制表层和胞质钙库之间以及胞质和线粒体钙库之间的钙通量。在碱中毒时,细胞内pH值、细胞总钙含量和细胞相对放射性显著增加。动力学研究表明,在碱中毒时,只有线粒体钙库持续增加。仅在代谢性碱中毒时,线粒体和胞质钙库之间的钙交换增加。这些结果表明,氢离子是钙代谢的重要调节因子,并且在酸碱条件改变期间,决定细胞钙状态的关键因素是细胞内pH值而非细胞外pH值。

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