Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they proliferate as transient amplifying myoblasts, most of which fuse into regenerating myofibers. Despite their remarkable differentiation potential, these cells have limited migration capacity, which curtails clinical use for widespread forms of muscular dystrophy. Conversely, skeletal muscle perivascular cells have less myogenic potential but better migration capacity than satellite cells. Here we show that modulation of Notch and PDGF pathways, involved in developmental specification of pericytes, induces perivascular cell features in adult mouse and human satellite cell-derived myoblasts. DLL4 and PDGF-BB-treated cells express markers of periva...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Summary: The necessity of mesenchymal stromal cells, called fibroadipogenic progenitors (FAPs), in s...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they proliferate ...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Pericytes are vessel associated mural cells that form the smooth muscle layer of vessels. They are a...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Background: Satellite cells (SCs) are indispensable for muscle regeneration and repair; however, due...
Pericytes are endothelial-associated cells that contribute to vessel wall. Here, we report that peri...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
Skeletal muscle regeneration provides a powerful model to study the cellular and molecular mechanism...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Summary: The necessity of mesenchymal stromal cells, called fibroadipogenic progenitors (FAPs), in s...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they proliferate ...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Pericytes are vessel associated mural cells that form the smooth muscle layer of vessels. They are a...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Background: Satellite cells (SCs) are indispensable for muscle regeneration and repair; however, due...
Pericytes are endothelial-associated cells that contribute to vessel wall. Here, we report that peri...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
Skeletal muscle regeneration provides a powerful model to study the cellular and molecular mechanism...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Summary: The necessity of mesenchymal stromal cells, called fibroadipogenic progenitors (FAPs), in s...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...