Xanthine Oxidase is Not Responsible for Reoxygenation Injury in Isolated-Perfused Rat Heart
- 1 January 1987
- journal article
- research article
- Published by Taylor & Francis in Free Radical Research Communications
- Vol. 3 (1-5) , 69-78
- https://doi.org/10.3109/10715768709069771
Abstract
The massive leakage of intracellular enzymes which occurs during reoxygenation of heart tissue after hypoxic or ischemic episodes has been suggested to result from the formation of oxygen radicals. One purported source of such radicals is the xanthine oxidase-mediated metabolism of hypoxanthine and xanthine. Xanthine oxidase (O form) has been suggested to be formed in vivo by limited proteolysis of xanthine dehydrogenase (D form) during the hypoxic period (Granger et al., Gastroenterology, 81, 22 (1981)). We measured the activities of xanthine oxidase in both fresh and isolated-perfused (Langendorff) rat heart tissue. Approximately 32% of the total xanthine oxidase was in the O form in fresh and isolated-perfused rat heart. This value was unchanged following 60 min of hypoxia and 30 minutes of reoxygenation. The infusion of 250 microM allopurinol throughout the perfusion completely inhibited xanthine oxidase activity but had no effect on the massive release of lactate dehydrogenase (LDH) into the coronary effluent upon reoxygenation of heart tissue subjected to 30 or 60 min of hypoxia. Protection from 30 min of hypoxia was also not obtained when rats were pretreated for 48 h with allopurinol at a dose of 30 mg/kg/day and perfused with allopurinol containing medium. Superoxide dismutase (50 units/ml), catalase (200 units/ml), or the antioxidant cyanidanol (100 microM) also had no effect on LDH release upon reoxygenation after 60 min of hypoxia. Xanthine oxidase activity was detected in a preparation enriched in cardiac endothelial cells while no allopurinol-inhibitable activity could be measured in purified isolated cardiomyocytes. It is concluded that xanthine dehydrogenase is not converted to xanthine oxidase in hypoxic tissue of the isolated perfused rat heart, and that the release of intracellular enzymes upon reoxygenation in this experimental model is mediated by factors other than reactive oxygen generated by xanthine oxidase.Keywords
This publication has 22 references indexed in Scilit:
- Xanthine oxidase as a source of free radical damage in myocardial ischemiaJournal of Molecular and Cellular Cardiology, 1985
- Molecular oxygen: Friend and foe: The role of the oxygen free radical system in the calcium paradox, the oxygen paradox and ischemia/reperfusion injuryJournal of Molecular and Cellular Cardiology, 1984
- Culturing of calcium stable adult cardiac myocytesJournal of Molecular and Cellular Cardiology, 1982
- Localization of xanthine oxidase in mammary-gland epithelium and capillary endotheliumCell, 1981
- The oxygen paradox and the calcium paradox: Two facets of the same problem?Journal of Molecular and Cellular Cardiology, 1978
- Statistics for disinterested scientistsLife Sciences, 1976
- Abrupt reoxygenation of the anoxic potassium-arrested perfused rat heart: A study of myocardial enzyme releaseJournal of Molecular and Cellular Cardiology, 1973
- The regulation of rat liver xanthine oxidase. Involvement of thiol groups in the conversion of the enzyme activity from dehydrogenase (type D) into oxidase (type O) and purification of the enzymeBiochemical Journal, 1972
- A micro-biuret method for estimating proteinsAnalytical Biochemistry, 1964
- Untersuchungen am überlebenden SäugethierherzenPflügers Archiv - European Journal of Physiology, 1895