The activity of cytochrome-c oxidase [E.C. 1.9.3.1] and b-c(1) complex [E.C. 1.10.2.2.] and the content of cytochromes 6, c + c(1) and a + a(3) in human skeletal muscle mitochondria from orthopaedic patients (108 women and 68 males), of age ranging between 10 and 90 years, have been analyzed. The activity of cytochrome c-oxidase declines with age both in females and males, The activity of b-c(1) complex, which in young females is significantly higher than in young malts, declines sharply in females, but not in males, with ageing. These results reveal that the content of active b-c(1) complex in muscle mitochondria is specifically controlled by female sex hormones
Mitochondria are no longer solely regarded as the cellular powerhouse; instead, they are now implica...
The incidence of cardiac disease is age and sex dependent, but the mechanisms governing these associ...
The age-associated reduction in muscle mass is well characterized; however, less is known regarding ...
AbstractThe activity of cytochrome-c oxidase [E.C. 1.9.3.11 and b-c1 complex [E.C. 1.10.2.2.] and th...
The activity of cytochrome-c oxidase [E.C. 1.9.3.1] and b-c(1) complex [E.C. 1.10.2.2.] and the cont...
Mitochondrial respiratory systems have been screened in 63 othopaedic patients of age ranging betwee...
Aging affects the metabolic capacity of skeletal muscle, in particular the glycolytic and respirator...
Introduction: The loss of mitochondrial function and content have been implicated in sarcopenia alth...
We have investigated structural and functional properties of skeletal muscle mitochondria obtained f...
The etiology of mammalian senescence is suggested to involve the progressive impairment of mitochond...
Age-related loss of muscle mass and strength (sarcopenia) leads to a decline in physical function an...
Skeletal muscle mitochondria are implicated with age-related loss of function and insulin resistance...
Ageing is a complex process that in muscle is usually associated with a decrease in mass, strength, ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Age-related skeletal muscle dysfunction is the underlying cause of morbidity that affects up to half...
Mitochondria are no longer solely regarded as the cellular powerhouse; instead, they are now implica...
The incidence of cardiac disease is age and sex dependent, but the mechanisms governing these associ...
The age-associated reduction in muscle mass is well characterized; however, less is known regarding ...
AbstractThe activity of cytochrome-c oxidase [E.C. 1.9.3.11 and b-c1 complex [E.C. 1.10.2.2.] and th...
The activity of cytochrome-c oxidase [E.C. 1.9.3.1] and b-c(1) complex [E.C. 1.10.2.2.] and the cont...
Mitochondrial respiratory systems have been screened in 63 othopaedic patients of age ranging betwee...
Aging affects the metabolic capacity of skeletal muscle, in particular the glycolytic and respirator...
Introduction: The loss of mitochondrial function and content have been implicated in sarcopenia alth...
We have investigated structural and functional properties of skeletal muscle mitochondria obtained f...
The etiology of mammalian senescence is suggested to involve the progressive impairment of mitochond...
Age-related loss of muscle mass and strength (sarcopenia) leads to a decline in physical function an...
Skeletal muscle mitochondria are implicated with age-related loss of function and insulin resistance...
Ageing is a complex process that in muscle is usually associated with a decrease in mass, strength, ...
Age-related loss of skeletal muscle mass and function is a major contributor to morbidity and has a ...
Age-related skeletal muscle dysfunction is the underlying cause of morbidity that affects up to half...
Mitochondria are no longer solely regarded as the cellular powerhouse; instead, they are now implica...
The incidence of cardiac disease is age and sex dependent, but the mechanisms governing these associ...
The age-associated reduction in muscle mass is well characterized; however, less is known regarding ...