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Role of xanthine oxidase and granulocytes in ischemia-reperfusion injury

American Journal of Physiology-Heart and Circulatory Physiology · 1988 · Vol. 255(6) · pp. H1269–H1275
D. Neil Granger

Abstract

In this lecture, evidence is presented to support the following hypothesis regarding the roles of xanthine oxidase-derived oxidants and granulocytes in ischemia-reperfusion-induced microvascular injury. During the ischemic period, ATP is catabolized to yield hypoxanthine. The hypoxic stress also triggers the conversion of NAD-reducing xanthine dehydrogenase to the oxygen radical-producing xanthine oxidase. During reperfusion, molecular oxygen is reintroduced into the tissue where it reacts with hypoxanthine and xanthine oxidase to produce a burst of superoxide anion and hydrogen peroxide. In the presence of iron, superoxide anion and hydrogen peroxide react via the Haber-Weiss reaction to form hydroxyl radicals. This highly reactive and cytotoxic radical then initiates lipid peroxidation of cell membrane components and the subsequent release of substances that attract, activate, and promote the adherence of granulocytes to microvascular endothelium. The adherent granulocytes then cause further endothelial cell injury via the release of superoxide and various proteases.

Gout, Hyperuricemia, Uric AcidDiabetic Foot Ulcer Assessment and ManagementHeme Oxygenase-1 and Carbon MonoxideSuperoxideXanthine oxidaseHypoxanthineChemistryHydrogen peroxideXanthine dehydrogenaseBiochemistryReactive oxygen speciesReperfusion injuryXanthine

MeSH terms

AnimalsGranulocytesIntestinal MucosaIntestine, SmallIschemiaPerfusionXanthine Oxidase
Citations
813
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References
Contributions of ischemia and reperfusion to mucosal lesion formation
American Journal of Physiology-Gastrointestinal and Liver Physiology · 1986 · 469 citations
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American Journal of Physiology-Heart and Circulatory Physiology · 1987 · 701 citations
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