Aging-associated muscle insulin resistance has been hypothesized to be due to decreased mitochondrial function, secondary to cumulative free radical damage, leading to increased intramyocellular lipid content. To directly test this hypothesis, we examined both in vivo and in vitro mitochondrial function, intramyocellular lipid content, and insulin action in lean healthy mice with targeted overexpression of the human catalase gene to mitochondria (MCAT mice). Here, we show that MCAT mice are protected from age-induced decrease in muscle mitochondrial function (∼30%), energy metabolism (∼7%), and lipid-induced muscle insulin resistance. This protection from age-induced reduction in mitochondrial function was associated with reduced mitochondr...
SummaryPrevious studies have suggested that insulin resistance develops secondary to diminished fat ...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
[[abstract]]Mitochondrial dysfunction in skeletal muscle has been implicated in the development of i...
Insulin resistance and lipid accumulation occur with aging, perhaps due to mitochondrial dysfunction...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Mitochondrial dysfunction is frequently associated with impairment in metabolic homeostasis and insu...
Abstract Background The skeletal muscle plays a central role in glucose homeostasis through the upta...
High dietary fat intake leads to insulin resistance in skeletal muscle, and this represents a major ...
High dietary fat intake leads to insulin resistance in skeletal muscle, and this represents a major ...
In both rodents and humans, aging-associated reductions in skeletal muscle AMP-activated protein kin...
While myostatin gene deletion is a promising therapy to fight muscle loss during aging, this approac...
SummaryMitochondrial dysfunction is usually associated with aging. To systematically characterize th...
Whereas reactive oxygen species (ROS) can have opposite impacts on insulin signaling, they have main...
SummaryPrevious studies have suggested that insulin resistance develops secondary to diminished fat ...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
[[abstract]]Mitochondrial dysfunction in skeletal muscle has been implicated in the development of i...
Insulin resistance and lipid accumulation occur with aging, perhaps due to mitochondrial dysfunction...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Mitochondrial dysfunction is frequently associated with impairment in metabolic homeostasis and insu...
Abstract Background The skeletal muscle plays a central role in glucose homeostasis through the upta...
High dietary fat intake leads to insulin resistance in skeletal muscle, and this represents a major ...
High dietary fat intake leads to insulin resistance in skeletal muscle, and this represents a major ...
In both rodents and humans, aging-associated reductions in skeletal muscle AMP-activated protein kin...
While myostatin gene deletion is a promising therapy to fight muscle loss during aging, this approac...
SummaryMitochondrial dysfunction is usually associated with aging. To systematically characterize th...
Whereas reactive oxygen species (ROS) can have opposite impacts on insulin signaling, they have main...
SummaryPrevious studies have suggested that insulin resistance develops secondary to diminished fat ...
Sarcopenia is the degenerative loss of muscle mass and strength with aging. Although a role of mitoc...
[[abstract]]Mitochondrial dysfunction in skeletal muscle has been implicated in the development of i...