Skeletal muscle aging is associated with a decreased regenerative potential due to the loss of function of endogenous stem cells or myogenic progenitor cells (MPCs). Aged skeletal muscle is characterized by the deposition of extracellular matrix (ECM), which in turn influences the biomechanical properties of myofibers by increasing their stiffness. Since the stiffness of the MPC microenvironment directly impacts MPC function, we hypothesized that the increase in muscle stiffness that occurs with aging impairs the behavior of MPCs, ultimately leading to a decrease in regenerative potential.We showed that freshly isolated individual myofibers from aged mouse muscles contain fewer MPCs overall than myofibers from adult muscles, with fewer quie...
Advanced glycation end-products (AGEs) accrue on skeletal muscle collagen in old age, stiffening the...
The intramuscular connective tissue plays a critical role in maintaining the structural integrity of...
Adult mammalian skeletal muscle tissue retains inherent regenerative capability in response to injur...
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)...
Aging is typically associated with decreased functional mobility, which can be caused by declines in...
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...
Age-related changes in the niche have long been postulated to impair the function of somatic stem ce...
The combination of age and disuse-related skeletal muscle atrophy predisposes older adults to reduce...
International audienceDuring aging, skeletal muscle tissue progressively declines in mass, strength,...
During aging, skeletal muscle tissue progressively declines in mass, strength, and regenerative capa...
<p><b>(A)</b> Representative images of Masson trichrome-stained TA sections from adult and aged male...
Advanced glycation end-products (AGEs) accrue on skeletal muscle collagen in old age, stiffening the...
The intramuscular connective tissue plays a critical role in maintaining the structural integrity of...
Adult mammalian skeletal muscle tissue retains inherent regenerative capability in response to injur...
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)...
Aging is typically associated with decreased functional mobility, which can be caused by declines in...
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...
Age-related changes in the niche have long been postulated to impair the function of somatic stem ce...
The combination of age and disuse-related skeletal muscle atrophy predisposes older adults to reduce...
International audienceDuring aging, skeletal muscle tissue progressively declines in mass, strength,...
During aging, skeletal muscle tissue progressively declines in mass, strength, and regenerative capa...
<p><b>(A)</b> Representative images of Masson trichrome-stained TA sections from adult and aged male...
Advanced glycation end-products (AGEs) accrue on skeletal muscle collagen in old age, stiffening the...
The intramuscular connective tissue plays a critical role in maintaining the structural integrity of...
Adult mammalian skeletal muscle tissue retains inherent regenerative capability in response to injur...