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柠檬酸盐排泄:了解肾脏代谢的窗口。

Citrate excretion: a window on renal metabolism.

作者信息

Simpson D P

出版信息

Am J Physiol. 1983 Mar;244(3):F223-34. doi: 10.1152/ajprenal.1983.244.3.F223.

Abstract

The rate of intracellular metabolism of citrate plays a major role in determining the amount of citrate excreted in the urine. Fractional excretion of citrate can be increased either by increasing intracellular citrate synthesis from precursors or by inhibiting mitochondrial citrate metabolism. Increased excretion secondary to increased synthesis of citrate occurs when citric acid cycle precursors such as malate or succinate are infused. Increased excretion resulting from inhibition of citrate metabolism occurs when malonate, maleate, or fluorocitrate is administered. Systemic acid-base changes cause striking changes in citrate clearance and metabolism. Recent evidence suggests that the effects of acid-base changes are mediated by alteration in the pH gradient across the inner mitochondrial membrane. Metabolic alkalosis causes cytoplasmic pH and bicarbonate to increase, resulting in a decrease in the mitochondrial pH gradient. This change inhibits the tricarboxylate carrier, slowing entry of citrate into the mitochondrial matrix compartment. The level of citrate in the cytoplasm increases, tubular and peritubular citrate uptake are reduced, and citrate clearance increases. Opposite changes occur in acidosis. Change in the mitochondrial pH gradient provides a sensitive mechanism for regulating renal substrate metabolism.

摘要

柠檬酸的细胞内代谢速率在决定尿中柠檬酸排泄量方面起着主要作用。柠檬酸的分数排泄可通过增加前体物质合成细胞内柠檬酸或抑制线粒体柠檬酸代谢来提高。当输注苹果酸或琥珀酸等柠檬酸循环前体物质时,会因柠檬酸合成增加而导致排泄增加。当给予丙二酸、马来酸或氟柠檬酸时,会因柠檬酸代谢受抑制而导致排泄增加。全身酸碱变化会引起柠檬酸清除率和代谢的显著变化。最近的证据表明,酸碱变化的影响是由线粒体内膜跨膜pH梯度的改变介导的。代谢性碱中毒导致细胞质pH和碳酸氢盐增加,导致线粒体pH梯度降低。这种变化会抑制三羧酸载体,减缓柠檬酸进入线粒体基质区室的速度。细胞质中柠檬酸水平升高,肾小管和肾小管周围对柠檬酸的摄取减少,柠檬酸清除率增加。酸中毒时会出现相反的变化。线粒体pH梯度的变化为调节肾脏底物代谢提供了一种敏感机制。

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