Muscle loss during aging and disuse is a highly prevalent and disabling condition, but knowledge about cellular pathways mediating muscle atrophy is still limited. Given the postmitotic nature of skeletal myocytes, the maintenance of cellular homeostasis relies on the efficiency of cellular quality control mechanisms. In this scenario, alterations in mitochondrial function are considered a major factor underlying sarcopenia and muscle atrophy. Damaged mitochondria are not only less bioenergetically efficient, but also generate increased amounts of reactive oxygen species, interfere with cellular quality control mechanisms, and display a greater propensity to trigger apoptosis. Thus, mitochondria stand at the crossroad of signaling pathways ...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Abstract Sarcopenia, the age‐related loss of muscle mass and strength, is linked to a range of adver...
Sarcopenia, which is characterized by reduction in muscle mass and strength, contributes to several ...
Muscle loss during aging and disuse is a highly prevalent and disabling condition, but knowledge abo...
Sarcopenia, the age-related loss of muscle mass and function, imposes a dramatic burden on individua...
Sarcopenia is defined by the age-related loss of skeletal muscle quality, which relies on mitochondr...
The maintenance of mitochondrial integrity is critical for muscle health. Mitochondria, indeed, play...
The maintenance of mitochondrial integrity is critical for muscle health. Mitochondria, indeed, play...
Skeletal muscle aging is associated with a significant loss of skeletal muscle strength and power (i...
Sarcopenia is a chronic disease characterized by the progressive loss of skeletal muscle mass, force...
The abundance, morphology, and functional properties of mitochondria decay in skeletal muscle during...
Skeletal muscle is the most abudant tissue of the human body, making up to 40 to 50% of the human bo...
Powers SK, Wiggs MP, Duarte JA, Zergeroglu AM, Demirel HA. Mitochondrial signaling contributes to di...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Sarcopenia is the loss of muscle mass accompanied by a decrease in muscle strength and resistance an...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Abstract Sarcopenia, the age‐related loss of muscle mass and strength, is linked to a range of adver...
Sarcopenia, which is characterized by reduction in muscle mass and strength, contributes to several ...
Muscle loss during aging and disuse is a highly prevalent and disabling condition, but knowledge abo...
Sarcopenia, the age-related loss of muscle mass and function, imposes a dramatic burden on individua...
Sarcopenia is defined by the age-related loss of skeletal muscle quality, which relies on mitochondr...
The maintenance of mitochondrial integrity is critical for muscle health. Mitochondria, indeed, play...
The maintenance of mitochondrial integrity is critical for muscle health. Mitochondria, indeed, play...
Skeletal muscle aging is associated with a significant loss of skeletal muscle strength and power (i...
Sarcopenia is a chronic disease characterized by the progressive loss of skeletal muscle mass, force...
The abundance, morphology, and functional properties of mitochondria decay in skeletal muscle during...
Skeletal muscle is the most abudant tissue of the human body, making up to 40 to 50% of the human bo...
Powers SK, Wiggs MP, Duarte JA, Zergeroglu AM, Demirel HA. Mitochondrial signaling contributes to di...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Sarcopenia is the loss of muscle mass accompanied by a decrease in muscle strength and resistance an...
Atrophy is a defining feature of aging skeletal muscle that contributes to progressive weakness and ...
Abstract Sarcopenia, the age‐related loss of muscle mass and strength, is linked to a range of adver...
Sarcopenia, which is characterized by reduction in muscle mass and strength, contributes to several ...