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Oxalate in renal stone disease: the terminal metabolite that just won't go away.

机译:草酸在肾结石疾病中的作用:终末代谢物不会消失。

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The incidence of calcium oxalate nephrolithiasis in the US has been increasing throughout the past three decades. Biopsy studies show that both calcium oxalate nephrolithiasis and nephrocalcinosis probably occur by different mechanisms in different subsets of patients. Before more-effective medical therapies can be developed for these conditions, we must understand the mechanisms governing the transport and excretion of oxalate and the interactions of the ion in general and renal physiology. Blood oxalate derives from diet, degradation of ascorbate, and production by the liver and erythrocytes. In mammals, oxalate is a terminal metabolite that must be excreted or sequestered. The kidneys are the primary route of excretion and the site of oxalate's only known function. Oxalate stimulates the uptake of chloride, water, and sodium by the proximal tubule through the exchange of oxalate for sulfate or chloride via the solute carrier SLC26A6. Fecal excretion of oxalate is stimulated by hyperoxalemia in rodents, but no similar phenomenon has been observed in humans. Studies in which rats were treated with (14)C-oxalate have shown that less than 2% of a chronic oxalate load accumulates in the internal organs, plasma, and skeleton. These studies have also demonstrated that there is interindividual variability in the accumulation of oxalate, especially by the kidney. This Review summarizes the transport and function of oxalate in mammalian physiology and the ion's potential roles in nephrolithiasis and nephrocalcinosis.
机译:在过去的三十年中,美国草酸钙肾结石的发病率一直在上升。活检研究表明,草酸钙肾结石病和肾钙化病可能是通过不同的机制在不同的患者亚群中发生的。在针对这些情况开发出更有效的医学疗法之前,我们必须了解控制草酸的运输和排泄的机制以及离子在一般生理和肾脏生理中的相互作用。草酸血来源于饮食,抗坏血酸的降解以及肝脏和红血球的产生。在哺乳动物中,草酸盐是必须代谢或隔离的终产物。肾脏是排泄的主要途径,也是草酸盐唯一已知功能的部位。草酸盐可通过溶质载体SLC26A6将草酸盐交换为硫酸盐或氯化物,从而刺激近端小管吸收氯化物,水和钠。高草酸血症在啮齿动物中刺激草酸盐的粪便排泄,但是在人类中未观察到类似现象。用(14)​​C-草酸盐处理大鼠的研究表明,少于2%的慢性草酸盐负荷累积在内部器官,血浆和骨骼中。这些研究还表明,草酸盐,尤其是肾脏中草酸盐的积累存在个体差异。这篇综述总结了草酸盐在哺乳动物生理中的转运和功能,以及离子在肾结石和肾钙化中的潜在作用。

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