Skeletal muscle stem cells, called satellite cells and defined by the transcription factor PAX7, are responsible for postnatal muscle growth, homeostasis and regeneration. Attempts to utilize the regenerative potential of muscle stem cells for therapeutic purposes so far failed. We previously established the existence of human PAX7-positive cell colonies with high regenerative potential. We now identified PAX7-negative human muscle-derived cell colonies also positive for the myogenic markers desmin and MYF5. These include cells from a patient with a homozygous PAX7 c.86-1G > A mutation (PAX7null). Single cell and bulk transcriptome analysis show high intra- and inter-donor heterogeneity and reveal the endothelial cell marker CLEC14A to be h...
Background: Satellite cells (SCs) are indispensable for muscle regeneration and repair; however, due...
Satellite cells are endogenous Pax7+ muscle stem cells (MuSC), localized between the basal lamina an...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
Stem cells for skeletal muscle originate from dermomyotome of the embryo. The early marker of these ...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
SummaryIdentification of human satellite cells that fulfill muscle stem cell criteria is an unmet ne...
Skeletal muscle growth and regeneration rely on muscle stem cells, called satellite cells. Specific ...
International audienceDistinct cell populations with regenerative capacity have been reported to con...
Identification of human satellite cells that fulfill muscle stem cell criteria is an unmet need in r...
Muscle regeneration occurs through activation of quiescent satellite cells whose progeny proliferate...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
Satellite cells (SC) are muscle stem cells that can regenerate adult muscles upon injury. Most SC or...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
AbstractSatellite cells are myogenic precursors responsible for skeletal muscle regeneration. Satell...
Background: Satellite cells (SCs) are indispensable for muscle regeneration and repair; however, due...
Satellite cells are endogenous Pax7+ muscle stem cells (MuSC), localized between the basal lamina an...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
AbstractThe paired box transcription factor Pax7 was isolated by representational difference analysi...
Stem cells for skeletal muscle originate from dermomyotome of the embryo. The early marker of these ...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
SummaryIdentification of human satellite cells that fulfill muscle stem cell criteria is an unmet ne...
Skeletal muscle growth and regeneration rely on muscle stem cells, called satellite cells. Specific ...
International audienceDistinct cell populations with regenerative capacity have been reported to con...
Identification of human satellite cells that fulfill muscle stem cell criteria is an unmet need in r...
Muscle regeneration occurs through activation of quiescent satellite cells whose progeny proliferate...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
Satellite cells (SC) are muscle stem cells that can regenerate adult muscles upon injury. Most SC or...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
AbstractSatellite cells are myogenic precursors responsible for skeletal muscle regeneration. Satell...
Background: Satellite cells (SCs) are indispensable for muscle regeneration and repair; however, due...
Satellite cells are endogenous Pax7+ muscle stem cells (MuSC), localized between the basal lamina an...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...