Time course of responses of human skeletal muscle to oxidative stress induced by nondamaging exercise.
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Summary
It is indicated that human skeletal muscle responds to a single bout of nondamaging exercise by increasing superoxide dismutase activity and the first evidence of an increase in HSP content of human skeletal Muscle after a submaximal exercise bout is provided.
- Type
- article
- Published
- 2001-03-01
- Cited by
- 242
- References
- 39
- OpenAlex
- https://openalex.org/W1753521056
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25968520
Keywords
Skeletal muscle, Superoxide dismutase, Catalase, Internal medicine, Endocrinology
References
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- The Relationship of Oxygen Uptake to Superoxide Dismutase and Catalase Activity in Human Skeletal Muscle
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- Electron spin resonance studies of intact mammalian skeletal muscle.
- Spectrophotometric assay of superoxide dismutase activity based on the activated autoxidation of a tetracyclic catechol.
Cited by
- Contractile activity-induced oxidative stress: cellular origin and adaptive responses.
- Different skeletal muscle HSP70 responses to high-intensity strength training and low-intensity endurance training
- Time course and differential responses of the major heat shock protein families in human skeletal muscle following acute nondamaging treadmill exercise.
- Age and natural metabolically-intensive behavior affect oxidative stress and antioxidant mechanisms.
- Heat shock response and exercise-induced muscle damage: effects of 17-AAG and glutamine as pharmaceutical inducers of HSPs
- The stress response of the liver to physical exercise.
- Exploring changes in markers of oxidative stress and inflammation in response to exercise
- Influence of hypoxic preconditioning in-vivo to 30 minutes knee surgery specific tourniquet application
- The Role of Heat Shock Protein 70 in Protecting Muscle Mechanical Function & SERCA Function in Human Skeletal Muscle
- Radical Oxygen Species, Exercise and Aging: An Update
- Is a High Core Temperature during Exercise Associated with Greater Post-exercise Muscle Damage?
- Mechanisms of hypertrophy after 12 weeks of aerobic training in elderly women
- Monocarboxylate transporters and heat shock proteins in domestic pigs in relation to stress and meat quality
- Antioxidants in Athlete's Basic Nutrition: Considerations towards a Guideline for the Intake of Vitamin C and Vitamin E
- Age‐related changes in skeletal muscle reactive oxygen species generation and adaptive responses to reactive oxygen species
- The age-related failure of adaptive responses to contractile activity in skeletal muscle is mimicked in young mice by deletion of Cu,Zn superoxide dismutase
- Increased Temperature and Protein Oxidation Signal HSP72 mRNA and Protein Accumulation in the In Vivo Exercised Rat Heart
- Proteínas de estrés: respuestas y funciones de HSP70 en el músculo esquelético durante el ejercicio físico
- Preconditioning of skeletal muscle against contraction‐induced damage: the role of adaptations to oxidants in mice
- Induction, modification and accumulation of HSP70s in the rat liver after acute exercise: early and late responses
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