Background: The major thiol-disulfide couple of reduced glutathione (GSH) and oxidized glutathione is a key regulator of major transcriptional pathways regulating aseptic inflammation and recovery of skeletal muscle after aseptic injury. Antioxidant supplementation may hamper exercise-induced cellular adaptations. Objective: The objective was to examine how thiol-based antioxidant supplementation affects skeletal muscle's performance and redox-sensitive signaling during the inflammatory and repair phases associated with exercise-induced microtrauma. Design: In a double-blind, crossover design, 10 men received placebo or N-acetylcysteine (NAC; 20 mg . kg(-1) . d(-1)) after muscle-damaging exercise (300 eccentric contractions). In each trial,...
Includes bibliographical references (p. 131-139).The purpose of this study was the examine the effec...
Backgrounds: Glutathione is an endogenous redox couple in animal cells and plays important roles in ...
Recent research highlights the importance of redox signalling pathway activation by contraction-indu...
Background: The major thiol-disulfide couple of reduced glutathione (GSH) and oxidized glutathione i...
We used thiol-based antioxidant supplementation (n-acetylcysteine, NAC) to determine whether immune ...
Abstract Endurance athletes are susceptible to cellular damage initiated by excessive levels of aero...
Aim:  Production of reactive oxygen species (ROS) in skeletal muscle is markedly increased duri...
The inflammatory response to exercise-induced muscle damage has been extensively described. Exercise...
The inflammatory response to exercise-induced muscle damage has been extensively described. Exercise...
This study was designed to examine the potential involvement of reactive oxygen species in skeletal ...
Muscle fatigue is defined as a decrease in maximal force or power generated in response to contracti...
Eccentric muscle contractions induce ultrastructural disruption, prolonged loss of maximal strength ...
BACKGROUND: It is clear that reactive oxygen species (ROS) produced during skeletal muscle contracti...
PURPOSE: The purpose of this study was to investigate the effect of antioxidant supplementation on b...
The antioxidant homeostasis is determined by a wide array of interacting cellular antioxidants, as w...
Includes bibliographical references (p. 131-139).The purpose of this study was the examine the effec...
Backgrounds: Glutathione is an endogenous redox couple in animal cells and plays important roles in ...
Recent research highlights the importance of redox signalling pathway activation by contraction-indu...
Background: The major thiol-disulfide couple of reduced glutathione (GSH) and oxidized glutathione i...
We used thiol-based antioxidant supplementation (n-acetylcysteine, NAC) to determine whether immune ...
Abstract Endurance athletes are susceptible to cellular damage initiated by excessive levels of aero...
Aim:  Production of reactive oxygen species (ROS) in skeletal muscle is markedly increased duri...
The inflammatory response to exercise-induced muscle damage has been extensively described. Exercise...
The inflammatory response to exercise-induced muscle damage has been extensively described. Exercise...
This study was designed to examine the potential involvement of reactive oxygen species in skeletal ...
Muscle fatigue is defined as a decrease in maximal force or power generated in response to contracti...
Eccentric muscle contractions induce ultrastructural disruption, prolonged loss of maximal strength ...
BACKGROUND: It is clear that reactive oxygen species (ROS) produced during skeletal muscle contracti...
PURPOSE: The purpose of this study was to investigate the effect of antioxidant supplementation on b...
The antioxidant homeostasis is determined by a wide array of interacting cellular antioxidants, as w...
Includes bibliographical references (p. 131-139).The purpose of this study was the examine the effec...
Backgrounds: Glutathione is an endogenous redox couple in animal cells and plays important roles in ...
Recent research highlights the importance of redox signalling pathway activation by contraction-indu...