Muscle stem cells, or satellite cells, are a population of adult stem cells involved in muscle growth and indispensable for adult skeletal muscle regeneration. As the quiescent state is perturbed, satellite cells undergo profound metabolic changes, named metabolic reprogramming, driving cellular activation, commitment and differentiation. Thus, modulation of cellular metabolism, by altered nutrient availability or with aging, can impact satellite cell stemness and fate, as well as differentiation ability. Moreover, a direct link between cellular metabolism and chromatin dynamics is emerging. Indeed, metabolic intermediates act as cofactors for epigenetic modulators, thereby regulating their activity and influencing the epigenetic landscape....
Metabolic reprogramming of muscle stem cells modulates myogenic cell fate. In this issue of Cell Ste...
Muscle stem (satellite, MuSC) cells acquire different cell states as they need to pass from quiescen...
© 2018 Dr Chi Ly1. Skeletal muscle has an extensive capacity for regeneration, a property conferred...
The peculiar ability of skeletal muscle tissue to operate adaptive changes during post-natal de-velo...
Muscle regeneration in the adult occurs in response to damage at expenses of a population of adult s...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
Formation of skeletal muscle fibers (myogenesis) during development and after tissue injury in the a...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Formation of skeletal muscle fibers (myogenesis) during development and after tissue injury in the a...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
BACKGROUND: Age-related muscle loss leads to lack of muscle strength, resulting in reduced posture a...
BACKGROUND: Age-related muscle loss leads to lack of muscle strength, resulting in reduced posture a...
Muscle stem (satellite, MuSC) cells acquire different cell states as they need to pass from quiescen...
Metabolic reprogramming of muscle stem cells modulates myogenic cell fate. In this issue of Cell Ste...
Muscle stem (satellite, MuSC) cells acquire different cell states as they need to pass from quiescen...
© 2018 Dr Chi Ly1. Skeletal muscle has an extensive capacity for regeneration, a property conferred...
The peculiar ability of skeletal muscle tissue to operate adaptive changes during post-natal de-velo...
Muscle regeneration in the adult occurs in response to damage at expenses of a population of adult s...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
Formation of skeletal muscle fibers (myogenesis) during development and after tissue injury in the a...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Formation of skeletal muscle fibers (myogenesis) during development and after tissue injury in the a...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
BACKGROUND: Age-related muscle loss leads to lack of muscle strength, resulting in reduced posture a...
BACKGROUND: Age-related muscle loss leads to lack of muscle strength, resulting in reduced posture a...
Muscle stem (satellite, MuSC) cells acquire different cell states as they need to pass from quiescen...
Metabolic reprogramming of muscle stem cells modulates myogenic cell fate. In this issue of Cell Ste...
Muscle stem (satellite, MuSC) cells acquire different cell states as they need to pass from quiescen...
© 2018 Dr Chi Ly1. Skeletal muscle has an extensive capacity for regeneration, a property conferred...