HYDROGEN-PEROXIDE AND ISCHEMIC RENAL INJURY - EFFECT OF CATALASE INHIBITION

被引:29
作者
PALLER, MS
PATTEN, M
机构
[1] Department of Medicine, University of Minnesota, Minneapolis, MN 55455, Box 736 UMHC
关键词
REACTIVE OXYGEN SPECIES; AMINOTRIAZOLE; REPERFUSION; ISOLATED PROXIMAL TUBULES; RAT; FREE RADICALS;
D O I
10.1016/0891-5849(91)90018-X
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Although reactive oxygen species are believed to participate in postischemic renal injury, the actual chemical species involved and the role of endogenous scavenging systems in protecting against injury requires additional study. Hydrogen peroxide, which derives from superoxide radical, is toxic and also yields toxic hydroxyl radical. 3-amino-1,2,4-triazole reacts with catalase to form irreversibly inactivated catalase only in the presence of hydrogen peroxide. We made use of this chemical reaction both to determine whether inhibition of the hydrogen peroxide-scavenging enzyme catalase would influence ischemic renal injury and to measure hydrogen peroxide production rates after ischemia. Sprague-Dawley rats were given aminotriazole (100 mg/kg) one hour before 40 min of renal ischemia. Twenty-four h after ischemia GFR had decreased to 300-mu-L/min in control animals and to 50-mu-L/min in aminotriazole-treated animals. Histologic evidence of injury was also worse in catalase-inhibited animals. To measure hydrogen peroxide production rates aminotriazole was given 60 min before measurement of renal catalase activity. In control animals, aminotriazole caused a 53.4% decrease in catalase activity. In animals subjected to 40 min of ischemia plus either 10 or 60 min of reflow catalase activity decreased by 33.9 and 49.5% (not significantly different from control). Thus, when measured by this method total renal hydrogen peroxide production was considerable but was not increased by ischemia. However, in isolated proximal tubule segments 60 min of anoxia and 30 min of reoxygenation caused a 42% increase in H2O2 released into the incubation medium. In summary, inhibition of catalase before ischemia led to exacerbation of ischemic injury. Hydrogen peroxide production occurs in normal as well as ischemic kidneys although the intracellular sites and rates of production are probably different. Catalase is an essential protective enzyme since its inhibition led to exaggerated postischemic dysfunction of the kidney.
引用
收藏
页码:29 / 34
页数:6
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  • [11] Hansson, Jonsson, Lundstam, Pettersson, Schersten, Waldenstrom, Effect of free radical scavengers on renal circulation ischemia in the rabbit, Clin. Sci., 65, pp. 605-610, (1983)
  • [12] Kriesberg, Matthys, Venkatachalam, Morphologic, Acute renal failure, pp. 21-46, (1983)
  • [13] Linas, Wgittenburg, Repine, O<sub>2</sub> metabolites cause reperfusion injury after short but not prolonged renal ischemia, Am. J. Physiol., 253, pp. F685-F691, (1987)
  • [14] Marholiash, Novogrodsky, Schejter, Irreversible reaction of 3-amino-1:2:4-triazole and related inhibitors with the protein of catalase, J. Pharmacol. Exp. Med., 74, pp. 339-348, (1960)
  • [15] McCoy, Hill, Ayon, Stein, Burk, Oxidant stress following renal ischemia: changes in the glutathione redox ratio, Kidney Int., 33, pp. 812-817, (1988)
  • [16] Messana, Cieslinski, O'Connor, Humes, Glutathione protects against exogenous oxidant injury to rabbit renal proximal tubules, Am J Physiol, pp. F874-F884, (1988)
  • [17] Nath, Paller, Dietary deficiency of antioxidants exacerbates ischemic injury in the rat kidney, Kidney Int., 38, pp. 1109-1117, (1990)
  • [18] Ouriel, Smedica, Ricotta, Protection of the kidney after temporary ischenmia: free radical scavengers, J. Vasc. Surg., 2, pp. 49-53, (1985)
  • [19] Paller, Hoidal, Ferris, Oxygen free radicals in ischemic acute renal failure in the rat, J. Clin. Invest., 74, pp. 1156-1164, (1984)
  • [20] Paller, Hedlund, Role of iron in postischemic renal injury in the rat, Kidney Int., 34, pp. 474-480, (1988)