Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to muscle wasting via proteolysis activation. This study aimed to test two hypotheses in rats. First, supplementation of the antioxidant vitamin E, prior and during the phase of unloading, would partly counteract unloading-induced soleus muscle atrophy. Secondly, vitamin E supplementation would decrease the rate of muscle proteolysis by reducing expression of calpains, caspases-3, -9, and -12, and E3 ubiquitin ligases (MuRF1 and MAFbx). Soleus muscle atrophy (-49%) induced by 14 days of hindlimb unloading was reduced to only 32% under vitamin E. Vitamin E partly prevented the decrease in type I and IIa fiber size. Supplementation increased HSP72 ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Previous studies have increased antioxidant capacity in skeletal muscle to attenuate oxidative stres...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Free radicals and oxidative damage have been increasingly implicated in a wide range of human diseas...
Reactive oxygen species and free radicals generated in oxidative stress, during conditions of metabo...
Radical-mediated oxidative damage of skeletal muscle membranes has been implicated in the fatigue pr...
AbstractSingle ankle joints of male Wistar rats (15-week-old) were immobilized in the extended posit...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Previous studies have increased antioxidant capacity in skeletal muscle to attenuate oxidative stres...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Exposure to reduced activity induces skeletal muscle atrophy. Oxidative stress might contribute to m...
Free radicals and oxidative damage have been increasingly implicated in a wide range of human diseas...
Reactive oxygen species and free radicals generated in oxidative stress, during conditions of metabo...
Radical-mediated oxidative damage of skeletal muscle membranes has been implicated in the fatigue pr...
AbstractSingle ankle joints of male Wistar rats (15-week-old) were immobilized in the extended posit...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Abstract Aim of the present study was to test, by vitamin E treatment, the hypothesis that muscle ad...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Purpose: Exercise increases the production of reactive oxygen species (ROS) in skeletal muscle, and ...
Previous studies have increased antioxidant capacity in skeletal muscle to attenuate oxidative stres...