Satellite cells are the resident stem cells of adult skeletal muscle. To date though, there is a paucity of native markers that can be used to easily identify quiescent satellite cells, with Pax7 probably being the best that is currently available. Here we have further characterized a number of recently described satellite cell markers, and also describe novel ones. Caveolin-1, integrin alpha7 and the calcitonin receptor proved reliable markers for quiescent satellite cells, being expressed by all satellite cells identified with Pax7. These three markers remained expressed as satellite cells were activated and underwent proliferation. The nuclear envelope proteins lamin A/C and emerin, mutations in which underlie Emery-Dreifuss muscular dys...
Pax7 is a paired box transcription factor expressed by all satellite cells which are critically requ...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
Satellite cells are the resident stem cells of adult skeletal muscle. To date though, there is a pau...
Satellite cells are responsible for growth, maintenance and repair of postnatal skeletal muscle. On ...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
Repair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy muscle ...
AbstractRepair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy...
Repair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy muscle ...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
Pax7 is a paired box transcription factor expressed by all satellite cells which are critically requ...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
Satellite cells are the resident stem cells of adult skeletal muscle. To date though, there is a pau...
Satellite cells are responsible for growth, maintenance and repair of postnatal skeletal muscle. On ...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
Repair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy muscle ...
AbstractRepair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy...
Repair and regeneration of adult skeletal muscle are mediated by satellite cells. In healthy muscle ...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
Pax7 is a paired box transcription factor expressed by all satellite cells which are critically requ...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...