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大鼠尿酸合成变化期间的肾脏尿酸转运

Renal urate transport during variations in urate synthesis in the rat.

作者信息

Steele T H, Underwood J L

出版信息

Pflugers Arch. 1976 Dec 28;367(2):183-8. doi: 10.1007/BF00585156.

Abstract

In order to determine the effect of intrarenal synthesis of urate upon the urinary urate excretion in the rat, we effected large changes in urate synthesis by increasing it with allopurinol. Hypoxanthine infusion increased plasma urate rapidly and also increased the urinary urate excretion and its renal clearance. However, when the plasma urate was maintained constant, hypoxanthine had no effect upon renal urate transport. Conversely, allpurinol infusion rapidly diminished the plasma urate, urinary urate excretion and its renal clearance. Again, the maintenance of a constant plasma urate concentration prevented any change in urate transport during allopurinol. The urinary degradative purine metabolic pattern was altered predictably by hypoxanthine and allopurinol. Assuming than any putative intrarenal component of urate synthesis would be affected predictably and consistently by hypoxanthine and allopurinol, these results suggest that changes in intrarenal urate synthesis are not an important determinant of urate excretion in the rat.

摘要

为了确定大鼠肾内尿酸合成对尿尿酸排泄的影响,我们通过用别嘌呤醇增加尿酸合成来实现尿酸合成的大幅变化。输注次黄嘌呤可迅速升高血浆尿酸水平,同时也增加尿尿酸排泄及其肾清除率。然而,当血浆尿酸水平保持恒定时,次黄嘌呤对肾脏尿酸转运没有影响。相反,输注别嘌呤醇可迅速降低血浆尿酸水平、尿尿酸排泄及其肾清除率。同样,维持恒定的血浆尿酸浓度可防止在使用别嘌呤醇期间尿酸转运发生任何变化。次黄嘌呤和别嘌呤醇可预测地改变了尿中降解性嘌呤代谢模式。假设肾内尿酸合成的任何假定成分会受到次黄嘌呤和别嘌呤醇的可预测且一致的影响,这些结果表明肾内尿酸合成的变化不是大鼠尿酸排泄的重要决定因素。

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