Aging affects the metabolic capacity of skeletal muscle, in particular the glycolytic and respiratory capacities. The purpose of this study was to quantify biochemical alterations due to aging in muscular metabolic capacity in human skeletal muscles in sedentary subjects. The activities of various marker enzymes and metabolites related to glycolysis, Krebs' cycle and the electron transfer chain and high energy phosphate compounds were measured in muscle biopsies from the rectus abdominis, vastus lateralis, and gluteus maximus muscles of 76 sedentary subjects (32 males and 44 females) between 15 and 91 yr. No significant differences between males and females were found, but changes related to age were: a decrease in hexokinase and lactate de...
Background: Due to the interaction between skeletal muscle ageing and lifestyle factors, it is often...
Aging is an inevitable biological process that is characterized by a general decline in the physiolo...
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...
Aging affects the metabolic capacity of skeletal muscle, in particular the glycolytic and respirator...
The effect of aging on metabolic enzyme activity remains controversial, possibly due to physical act...
muscle oxidative capacity in young and older women and men. J Appl Physiol 89: 1072–1078, 2000. — It...
We have investigated structural and functional properties of skeletal muscle mitochondria obtained f...
In humans, decreases in cardiac output play an important role in the age-relatedAbstract decrease in...
Phosphorous magnetic resonance spectroscopy was used to study the bioenergetics of skeletal muscle, ...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Literature has shown that children have lower anaerobic capacity and oxidize more lipids during aero...
Populations around the world are aging rapidly. Age-related loss of physiological functions negative...
Populations around the world are aging rapidly. Age-related loss of physiological functions negative...
Despite intensive efforts to understand the extent to which skeletal muscle mitochondrial capacity c...
Skeletal muscle mitochondria are implicated with age-related loss of function and insulin resistance...
Background: Due to the interaction between skeletal muscle ageing and lifestyle factors, it is often...
Aging is an inevitable biological process that is characterized by a general decline in the physiolo...
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...
Aging affects the metabolic capacity of skeletal muscle, in particular the glycolytic and respirator...
The effect of aging on metabolic enzyme activity remains controversial, possibly due to physical act...
muscle oxidative capacity in young and older women and men. J Appl Physiol 89: 1072–1078, 2000. — It...
We have investigated structural and functional properties of skeletal muscle mitochondria obtained f...
In humans, decreases in cardiac output play an important role in the age-relatedAbstract decrease in...
Phosphorous magnetic resonance spectroscopy was used to study the bioenergetics of skeletal muscle, ...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Literature has shown that children have lower anaerobic capacity and oxidize more lipids during aero...
Populations around the world are aging rapidly. Age-related loss of physiological functions negative...
Populations around the world are aging rapidly. Age-related loss of physiological functions negative...
Despite intensive efforts to understand the extent to which skeletal muscle mitochondrial capacity c...
Skeletal muscle mitochondria are implicated with age-related loss of function and insulin resistance...
Background: Due to the interaction between skeletal muscle ageing and lifestyle factors, it is often...
Aging is an inevitable biological process that is characterized by a general decline in the physiolo...
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...