Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated muscle stem cells have a remarkable engraftment ability in vivo, but their cell number is limited. Current conventional culture conditions do not allow muscle stem cells to expand in vitro with their bona fide engraftment efficiency, requiring the improvement of culture procedures for achieving successful cell-therapy for muscle disorders. Here we expanded mouse muscle stem cells and human myoblasts with Notch ligands, DLL1, DLL4, and JAG1 to activate Notch signaling in vitro and to investigate whether these cells could retain their engraftment efficiency. Notch signaling promotes the expansion of Pax7+MyoD- mouse muscle stem-like cells and ...
The balance between proliferation and differentiation of muscle stem cells is tightly controlled, en...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
Understanding the signaling pathways that regulate the final differentiation of human myoblasts is e...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Muscle stem cell transplantation possesses great potential for long-term repair of dys-trophic muscl...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
Adult skeletal muscle contains a population of tissue~specific stem cells (satellite cells) that are...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Skeletal muscle regeneration provides a powerful model to study the cellular and molecular mechanism...
New Findings What is the central question of this study? The Notch signalling pathway plays an impor...
International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoa...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they pro...
The balance between proliferation and differentiation of muscle stem cells is tightly controlled, en...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
Understanding the signaling pathways that regulate the final differentiation of human myoblasts is e...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Muscle stem cell transplantation possesses great potential for long-term repair of dys-trophic muscl...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
Adult skeletal muscle contains a population of tissue~specific stem cells (satellite cells) that are...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Skeletal muscle regeneration provides a powerful model to study the cellular and molecular mechanism...
New Findings What is the central question of this study? The Notch signalling pathway plays an impor...
International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoa...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they pro...
The balance between proliferation and differentiation of muscle stem cells is tightly controlled, en...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
Understanding the signaling pathways that regulate the final differentiation of human myoblasts is e...