Use of Spin Traps in Intact Animals Undergoing Myocardial Ischemia/Reperfusion: A New Approach to Assessing the Role of Oxygen Radicals in Myocardial “Stunning”
- 1 January 1990
- journal article
- Published by Taylor & Francis in Free Radical Research Communications
- Vol. 9 (3-6) , 169-180
- https://doi.org/10.3109/10715769009145674
Abstract
Numerous studies have indirectly suggested that oxygen-derived free radicals play an important pathogenetic role in the prolonged depression of contractile function observed in myocardium reperfused after reversible ischemia (myocardial "stunning"). In order to provide direct evidence for the oxy-radical hypothesis of stunning, we administered the spin trap, alpha-phenyl N-tert-butyl nitrone (PBN), to open-chest dogs undergoing a 15-min coronary artery occlusion followed by reperfusion. Plasma of local coronary venous blood was analyzed by electron paramagnetic resonance (EPR) spectroscopy. EPR signals characteristic of radical adducts of PBN appeared during ischemia and increased dramatically in the first few minutes after reperfusion. After this initial burst, the production of adducts abated but did not cease, persisting up to 3 h after reflow. The production of PBN adducts after reperfusion was inversely related to collateral flow during ischemia. PBN itself enhanced recovery of contractile function, indicating that the radicals trapped may play a pathogenetic role in myocardial stunning. Superoxide dismutase plus catalase attenuated PBN adduct production and, at the same time, improved recovery of contractile function. Antioxidant therapy given 1 min before reperfusion suppressed PBN adduct production and improved contractile recovery; however, the same therapy given 1 min after reperfusion did not suppress early radical production and did not attenuate contractile dysfunction. After i.v. administration, the elimination half-life of PBN was estimated to be approximately 4-5 h. The results demonstrate that 1) free radicals are produced in the stunned myocardium in intact animals; 2) inhibition of free radical production results in improved contractile recovery; and 3) the free radicals important in causing dysfunction are produced in the first few minutes of reperfusion. Taken together, these studies provide cogent evidence supporting the oxy-radical hypothesis of stunning in open-chest dogs. It is now critical to determine whether these results can be reproduced in conscious animal preparations.Keywords
This publication has 16 references indexed in Scilit:
- Prolonged abnormalities of left ventricular diastolic wall thinning in the “stunned” myocardium in conscious dogs: Time course and relation to systolic functionJournal of the American College of Cardiology, 1989
- Demonstration of free radical generation in "stunned" myocardium of intact dogs with the use of the spin trap alpha-phenyl N-tert-butyl nitrone.Journal of Clinical Investigation, 1988
- Oxygen-derived free radicals and postischemic myocardial dysfunction (“stunned myocardium”)Journal of the American College of Cardiology, 1988
- Direct detection of free radicals in the reperfused rat heart using electron spin resonance spectroscopy.Circulation Research, 1987
- Spin-trapping evidence that graded myocardial ischemia alters post-ischemic superoxide productionFree Radical Biology & Medicine, 1987
- N-2-Mercaptopropionylglycine improves recovery of myocardial function after reversible regional ischemiaJournal of the American College of Cardiology, 1986
- Enhancement of recovery of myocardial function by oxygen free-radical scavengers after reversible regional ischemia.Circulation, 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
- The stunned myocardium: prolonged, postischemic ventricular dysfunction.Circulation, 1982
- Regional myocardial functional and electrophysiological alterations after brief coronary artery occlusion in conscious dogs.Journal of Clinical Investigation, 1975