Exhaustive Exercise-Induced Neutrophil-Associated Tissue Damage and Possibility of its Prevention
نویسندگان
چکیده
منابع مشابه
Protective effects of tea polyphenols on exhaustive exercise-induced fatigue, inflammation and tissue damage
Background: The beneficial properties of tea polyphenols have been extensively studied; however, less attention has been paid to their effects, especially anti-inflammatory effect during exhaustive exercise. Objective: The present study assessed the potential protective effects of tea polyphenols against the fatigue, inflammation and tissue injury caused by an exhaustive exercise bout in rats. ...
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Exhaustive exercise results in inflammation and oxidative stress, which can damage tissue. Previous studies have shown that vitamin D has both anti-inflammatory and antiperoxidative activity. Therefore, we aimed to test if vitamin D could reduce the damage caused by exhaustive exercise. Rats were randomized to one of four groups: control, vitamin D, exercise, and vitamin D+exercise. Exercised r...
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Although moderate physical exercise is considered an essential component of a healthy lifestyle that leads the organism to adapt itself to different stresses, exercise, especially when exhaustive, is also known to induce oxidative stress, inflammation, and muscle damage. Many efforts have been carried out to identify dietary strategies or micronutrients able to prevent or at least attenuate the...
متن کاملSulforaphane treatment protects skeletal muscle against damage induced by exhaustive exercise in rats.
Sulforaphane (SF), one of the most important isothiocyanates in the human diet, present in cruciferous vegetables, is known to have chemopreventive activities in different tissues. No data are available on its effects in the prevention of skeletal muscle damage. In this study, we investigated the potential protective effects of SF treatment on muscle damage and oxidative stress induced by an ac...
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ژورنال
عنوان ژورنال: Journal of Nanomedicine & Biotherapeutic Discovery
سال: 2017
ISSN: 2155-983X
DOI: 10.4172/2155-983x.1000156