SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem cells of postnatal muscle. Elimination of Notch signals during mouse development results in premature differentiation of myogenic progenitors and formation of very small muscle groups. Here we show that this drastic effect is rescued by mutation of the muscle differentiation factor MyoD. However, rescued myogenic progenitors do not assume a satellite cell position and contribute poorly to myofiber growth. The disrupted homing is due to a deficit in basal lamina assembly around emerging satellite cells and to their impaired adhesion to myofibers. On a molecular level, emerging satellite cells deregulate the expression of basal lamina comp...
Satellite cells provide skeletal muscle with a remarkable capacity for repeated repair and regenerat...
Duchenne muscular dystrophy (DMD) is a devastating disease characterized by muscle wasting, loss of ...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Recently in Developmental Cell, Bröhl et al. (2012) reported that Notch regulates muscle stem cell h...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
AbstractSatellite cells from adult rat muscle coexpress proliferating cell nuclear antigen and MyoD ...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
Adult skeletal muscles can regenerate after repeated trauma, yet our understanding of how adult musc...
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...
Skeletal muscle fibres are unique cells in large animals, often composed of thousands of post-mitoti...
Satellite cells provide skeletal muscle with a remarkable capacity for repeated repair and regenerat...
Duchenne muscular dystrophy (DMD) is a devastating disease characterized by muscle wasting, loss of ...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Recently in Developmental Cell, Bröhl et al. (2012) reported that Notch regulates muscle stem cell h...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
AbstractSatellite cells from adult rat muscle coexpress proliferating cell nuclear antigen and MyoD ...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
Adult skeletal muscles can regenerate after repeated trauma, yet our understanding of how adult musc...
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...
Skeletal muscle fibres are unique cells in large animals, often composed of thousands of post-mitoti...
Satellite cells provide skeletal muscle with a remarkable capacity for repeated repair and regenerat...
Duchenne muscular dystrophy (DMD) is a devastating disease characterized by muscle wasting, loss of ...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...