During aging, skeletal muscle tissue progressively declines in mass, strength, and regenerative capacity. Decreased muscle stem cell (MuSC) number and impaired function might underlie the aging-related muscle wasting and impaired regenerative capacity. As yet, the search for factors that regulate MuSC fate and function has revealed several biochemical factors within the MuSC niche that may be responsible for the decline in MuSC regenerative capacity. This decline cannot be explained by environmental factors solely, as the MuSC potential to regenerate muscle tissue is not reversed by changing the biochemical MuSC niche composition. Here we discuss the likeliness that during physical exercise, MuSCs within their niche are subjected to mechani...
In spite of decades of research, no feasible method for obtaining sufficient numbers of uncommitted ...
Perivascular stromal cells, including mesenchymal stem/stromal cells (MSCs), secrete paracrine facto...
Age-related changes in the niche have long been postulated to impair the function of somatic stem ce...
During aging, skeletal muscle tissue progressively declines in mass, strength, and regenerative capa...
International audienceDuring aging, skeletal muscle tissue progressively declines in mass, strength,...
Aging-associated muscle wasting and impaired regeneration are caused by deficiencies in muscle stem ...
International audienceAging-associated muscle wasting and impaired regeneration are caused by defici...
Aging is typically associated with decreased functional mobility, which can be caused by declines in...
International audienceMuscle stem cells (MuSCs) are requisite for skeletal muscle regeneration and h...
Skeletal muscle aging is associated with a decreased regenerative potential due to the loss of funct...
Skeletal muscle aging is associated with a decreased regenerative potential due to the loss of funct...
Age-related declines in skeletal muscle regeneration have been attributed to muscle stem cell (MuSC)...
International audienceSkeletal muscle regeneration is a coordinate process in which several factors ...
In spite of decades of research, no feasible method for obtaining sufficient numbers of uncommitted ...
Perivascular stromal cells, including mesenchymal stem/stromal cells (MSCs), secrete paracrine facto...
Age-related changes in the niche have long been postulated to impair the function of somatic stem ce...
During aging, skeletal muscle tissue progressively declines in mass, strength, and regenerative capa...
International audienceDuring aging, skeletal muscle tissue progressively declines in mass, strength,...
Aging-associated muscle wasting and impaired regeneration are caused by deficiencies in muscle stem ...
International audienceAging-associated muscle wasting and impaired regeneration are caused by defici...
Aging is typically associated with decreased functional mobility, which can be caused by declines in...
International audienceMuscle stem cells (MuSCs) are requisite for skeletal muscle regeneration and h...
Skeletal muscle aging is associated with a decreased regenerative potential due to the loss of funct...
Skeletal muscle aging is associated with a decreased regenerative potential due to the loss of funct...
Age-related declines in skeletal muscle regeneration have been attributed to muscle stem cell (MuSC)...
International audienceSkeletal muscle regeneration is a coordinate process in which several factors ...
In spite of decades of research, no feasible method for obtaining sufficient numbers of uncommitted ...
Perivascular stromal cells, including mesenchymal stem/stromal cells (MSCs), secrete paracrine facto...
Age-related changes in the niche have long been postulated to impair the function of somatic stem ce...