Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the population aged 80 or greater. Here we tested the effects of increased mitochondrial antioxidant activity on age-dependent skeletal muscle dysfunction using transgenic mice with targeted overexpression of the human catalase gene to mitochondria (MCat mice). Aged MCat mice exhibited improved voluntary exercise, increased skeletal muscle specific force and tetanic Ca(2+) transients, decreased intracellular Ca(2+) leak and increased sarcoplasmic reticulum (SR) Ca(2+) load compared with age-matched wild type (WT) littermates. Furthermore, ryanodine receptor 1 (the sarcoplasmic reticulum Ca(2+) release channel required for skeletal muscle contract...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
Mitochondrial DNA (mtDNA) mutations lead to decrements in mitochondrial function and accelerated rat...
Aging skeletal muscles are characterized by a progressive decline in muscle mass and muscular streng...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Aging-associated muscle insulin resistance has been hypothesized to be due to decreased mitochondria...
Sarcopenia, which is characterized by reduction in muscle mass and strength, contributes to several ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Insulin resistance and lipid accumulation occur with aging, perhaps due to mitochondrial dysfunction...
International audienceMyostatin (mstn) blockade, resulting in muscle hypertrophy, is a promising the...
Sarcopenia, the age-related loss of muscle mass and function, imposes a dramatic burden on individua...
Mitochondrial DNA (mtDNA) mutations lead to decrements in mitochondrial function and accelerated rat...
Skeletal muscle is a major site of metabolic activity and is the most abundant tissue in the human b...
International audienceWhile myostatin gene deletion is a promising therapy to fight muscle loss duri...
Genetic mutations that affect mitochondrial function often cause skeletal muscle dysfunction. Here, ...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
Mitochondrial DNA (mtDNA) mutations lead to decrements in mitochondrial function and accelerated rat...
Aging skeletal muscles are characterized by a progressive decline in muscle mass and muscular streng...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Aging-associated muscle insulin resistance has been hypothesized to be due to decreased mitochondria...
Sarcopenia, which is characterized by reduction in muscle mass and strength, contributes to several ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Insulin resistance and lipid accumulation occur with aging, perhaps due to mitochondrial dysfunction...
International audienceMyostatin (mstn) blockade, resulting in muscle hypertrophy, is a promising the...
Sarcopenia, the age-related loss of muscle mass and function, imposes a dramatic burden on individua...
Mitochondrial DNA (mtDNA) mutations lead to decrements in mitochondrial function and accelerated rat...
Skeletal muscle is a major site of metabolic activity and is the most abundant tissue in the human b...
International audienceWhile myostatin gene deletion is a promising therapy to fight muscle loss duri...
Genetic mutations that affect mitochondrial function often cause skeletal muscle dysfunction. Here, ...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
Mitochondrial DNA (mtDNA) mutations lead to decrements in mitochondrial function and accelerated rat...
Aging skeletal muscles are characterized by a progressive decline in muscle mass and muscular streng...