Powers SK, Wiggs MP, Duarte JA, Zergeroglu AM, Demirel HA. Mitochondrial signaling contributes to disuse muscle atrophy. Am J Physiol Endocrinol Metab 303: E31-E39, 2012. First published March 6, 2012; doi: 10.1152/ajpendo.00609.2011.-It is well established that long durations of bed rest, limb immobilization, or reduced activity in respiratory muscles during mechanical ventilation results in skeletal muscle atrophy in humans and other animals. The idea that mitochondrial damage/dysfunction contributes to disuse muscle atrophy originated over 40 years ago. These early studies were largely descriptive and did not provide unequivocal evidence that mitochondria play a primary role in disuse muscle atrophy. However, recent experiments have prov...
The dynamic coordination of processes controlling the quality of the mitochondrial network is crucia...
Mitochondria form a dynamic network that rapidly adapts to cellular energy demand. This adaptation i...
Disuse atrophy is the loss of skeletal muscle mass due to inactivity or lower than ‘normal’ use. It ...
well established that long durations of bed rest, limb immobilization, or reduced activity in respir...
AbstractChronic muscle disuse, such as that resulting from immobilization, denervation, or prolonged...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Mitochondria are crucial organelles in the production of energy and in the control of signalling cas...
Chronic muscle disuse, such as that resulting from immobilization, denervation, or prolonged physica...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Muscle loss during aging and disuse is a highly prevalent and disabling condition, but knowledge abo...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
Skeletal muscle atrophy commonly occurs during prolonged periods of inactivity, however, the precise...
Introduction Physical inactivity significantly contributes to loss of muscle mass and performance in...
The dynamic coordination of processes controlling the quality of the mitochondrial network is crucia...
Mitochondria form a dynamic network that rapidly adapts to cellular energy demand. This adaptation i...
Disuse atrophy is the loss of skeletal muscle mass due to inactivity or lower than ‘normal’ use. It ...
well established that long durations of bed rest, limb immobilization, or reduced activity in respir...
AbstractChronic muscle disuse, such as that resulting from immobilization, denervation, or prolonged...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Mitochondria are crucial organelles in the production of energy and in the control of signalling cas...
Chronic muscle disuse, such as that resulting from immobilization, denervation, or prolonged physica...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Muscle loss during aging and disuse is a highly prevalent and disabling condition, but knowledge abo...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
Skeletal muscle atrophy commonly occurs during prolonged periods of inactivity, however, the precise...
Introduction Physical inactivity significantly contributes to loss of muscle mass and performance in...
The dynamic coordination of processes controlling the quality of the mitochondrial network is crucia...
Mitochondria form a dynamic network that rapidly adapts to cellular energy demand. This adaptation i...
Disuse atrophy is the loss of skeletal muscle mass due to inactivity or lower than ‘normal’ use. It ...