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通过31P核磁共振测定,缺血后输注ATP - MgCl2可增强肾脏ATP的恢复。

Enhanced recovery of renal ATP with postischemic infusion of ATP-MgCl2 determined by 31P-NMR.

作者信息

Siegel N J, Avison M J, Reilly H F, Alger J R, Shulman R G

出版信息

Am J Physiol. 1983 Oct;245(4):F530-4. doi: 10.1152/ajprenal.1983.245.4.F530.

Abstract

The postischemic infusion of ATP-MgCl2 will enhance the recovery of both glomerular and tubular function. To assess the effect of ATP-MgCl2 on tissue nucleotides, 31P nuclear magnetic resonance (31P-NMR) spectra were obtained continuously in vivo from the left kidney of rats that had been subjected to 45 min of renal ischemia and then infused with either normal saline or ATP-MgCl2. 31P-NMR spectra with distinct peaks for alpha-, beta-, and gamma-phosphate of ATP, sugar phosphate, and inorganic phosphate were collected every 7 min before, during, and after renal artery occlusion. During ischemia, the ATP beta-peak (the only peak unique to ATP) fell rapidly to 10% of control values in both groups of animals. By 120 min after the ischemic insult, the animals treated with ATP-MgCl2 had recovery of renal ATP to 89 +/- 2.6%, which is significantly greater (P less than 0.001) than 65.2 +/- 1.8% found in rats given normal saline. These data indicate that 1) 31P-NMR can be used to assess renal ATP levels continuously in vivo; 2) during renal ischemia ATP levels fall quickly to less than 10% of control values; 3) tissue ATP returns relatively slowly to control values in rats given normal saline, whereas postischemic treatment with ATP-MgCl2 results in an accelerated recovery of tissue ATP levels. These findings provide a biochemical correlate to the improvement in renal function previously described.

摘要

缺血后输注ATP-MgCl2可促进肾小球和肾小管功能的恢复。为了评估ATP-MgCl2对组织核苷酸的影响,对经历45分钟肾缺血后分别输注生理盐水或ATP-MgCl2的大鼠左肾进行了连续的活体31P核磁共振(31P-NMR)光谱测定。在肾动脉闭塞前、闭塞期间和闭塞后,每7分钟收集一次具有ATP的α-、β-和γ-磷酸、磷酸糖和无机磷酸的明显峰的31P-NMR光谱。在缺血期间,两组动物的ATPβ峰(ATP特有的唯一峰)迅速降至对照值的10%。在缺血损伤后120分钟,用ATP-MgCl2治疗的动物肾ATP恢复至89±2.6%,显著高于给予生理盐水的大鼠的65.2±1.8%(P<0.001)。这些数据表明:1)31P-NMR可用于在活体中连续评估肾ATP水平;2)在肾缺血期间,ATP水平迅速降至对照值的10%以下;3)给予生理盐水的大鼠组织ATP恢复至对照值相对较慢,但缺血后用ATP-MgCl2治疗可加速组织ATP水平的恢复。这些发现为先前描述的肾功能改善提供了生化关联。

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