The role of free radicals in cold injuries
- 1 December 1995
- journal article
- review article
- Published by Springer Nature in International Journal of Biometeorology
- Vol. 38 (4), 171-175
- https://doi.org/10.1007/bf01245384
Abstract
Cold injury is a tissue trauma produced by exposure to freezing temperatures and even brief exposure to a severely cold and windy environment. Rewarming of frozen tissue is associated with blood reperfusion and the simultaneous generation of free oxygen radicals. In this review is discussed the current understanding of the mechanism of action of free oxygen radicals as related to cold injury during rewarming. Decreased energy stores during ischaemia lead to the accumulation of adenine nucleotides and liberation of free fatty acids due to the breakdown of lipid membranes. On rewarming, free fatty acids are metabolized via cyclo-oxygenase and adenine nucleotides are metabolized via the xanthine oxidase pathway. These may be the source of free oxygen radicals. Leukocytes may also play a major role in the pathogenesis of cold injury. Oxygen radical scavengers, such as superoxide dismutase and catalase, may help to reduce the cold induced injury but their action is limited due to the inability readily to cross the plasma membrane. Lipid soluble antioxidants are likely to be more effective scavengers because of their presence in membranes where peroxidative reactions can be arrested.Keywords
This publication has 46 references indexed in Scilit:
- Reduction of Cold Injury by Superoxide Dismutase and CatalaseFree Radical Research Communications, 1991
- Evidence for an early free radical-mediated reperfusion injury in frostbite☆Free Radical Biology & Medicine, 1991
- Generation of Free Radicals During Cold Injury and RewarmingVascular Surgery, 1990
- Superoxide anion release by human endothelial cells: Synergism between a phorbol ester and a calcium ionophoreJournal of Cellular Physiology, 1986
- Oxygen-Derived Free Radicals in Postischemic Tissue InjuryNew England Journal of Medicine, 1985
- A possible role of lipid peroxidation in cellular damages caused by cerebral ischemia and the protective effect of alpha-tocopherol administration.Stroke, 1983
- The effect of chronic marginal vitamin C deficiency on the α-tocopherol content of the organs and plasma of guinea-pigsCellular and Molecular Life Sciences, 1982
- Endogenous phospholipid metabolism in stimulated neutrophils differential activation by FMLP and PMABiochemical and Biophysical Research Communications, 1982
- VITAMIN E AND FREE RADICAL PEROXIDATION OF LIPIDS*Annals of the New York Academy of Sciences, 1972
- Vascular Reactions After Experimental Cold InjuryAngiology, 1956