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Mechanisms of postischemic injury in skeletal muscle: intervention strategies
B B Rubin1, A Romaschin, P M Walker
1R. Fraser Elliott Vascular Research Laboratory, The Toronto Hospital, Ontario, Canada.
Abstract:
Reperfusion of ischemic skeletal muscle leads to adverse local and systemic effects. These detrimental effects may be attenuated by interfering with or modulating the pathophysiological processes that are set in motion during ischemia and/or reperfusion. The purpose of this paper is to review the different intervention strategies that have been employed in an attempt to elucidate the mechanisms involved in the pathogenesis of skeletal muscle ischemia-reperfusion injury. The results of these studies indicate that the postischemic injury processes that lead to cell dysfunction and death are multifactorial in nature and include oxidant generation, elaboration of proinflammatory mediators, infiltration of leukocytes, Ca2+ overload, phospholipid peroxidation and depletion, impaired nitric oxide metabolism, and reduced ATP production. Although the etiopathogenesis of skeletal muscle ischemia-reperfusion is complex, careful delineation of the mechanisms that contribute to postischemic microvascular dysfunction and muscle necrosis has progressed to the point where rational intervention strategies may be proposed and implemented as potential treatments for skeletal muscle dysfunction associated with ischemia-reperfusion.
Insights
Reperfusion of ischemic skeletal muscle causes injury through multiple pathways. Modulating these complex pathophysiological processes offers potential treatments for skeletal muscle ischemia-reperfusion injury.
Area of Science:
- Physiology
- Pathology
- Biochemistry
Background:
- Ischemia and reperfusion of skeletal muscle induce harmful local and systemic effects.
- These detrimental outcomes can potentially be mitigated by intervening in the pathological processes during ischemia or reperfusion.
Purpose of the Study:
- To review intervention strategies for skeletal muscle ischemia-reperfusion injury.
- To elucidate the mechanisms underlying the pathogenesis of this injury.
Main Methods:
- Literature review of studies on intervention strategies for skeletal muscle ischemia-reperfusion injury.
- Analysis of mechanisms contributing to postischemic microvascular dysfunction and muscle necrosis.
Main Results:
- Postischemic injury involves multiple factors: oxidant generation, inflammation, leukocyte infiltration, calcium overload, lipid peroxidation, impaired nitric oxide metabolism, and reduced ATP production.
- Mechanisms of postischemic microvascular dysfunction and muscle necrosis are complex but increasingly understood.
Conclusions:
- Skeletal muscle ischemia-reperfusion injury is multifactorial.
- Understanding these mechanisms allows for the development of rational therapeutic strategies to treat associated skeletal muscle dysfunction.