SummaryAdult skeletal muscle possesses a remarkable regenerative capacity, due to the presence of satellite cells, adult muscle stem cells. We used fate-mapping techniques in avian and mouse models to show that trunk (Pax3+) and cranial (MesP1+) skeletal muscle and satellite cells derive from separate genetic lineages. Similar lineage heterogeneity is seen within the head musculature and satellite cells, due to their shared, heterogenic embryonic origins. Lineage tracing experiments with Isl1Cre mice demonstrated the robust contribution of Isl1+ cells to distinct jaw muscle-derived satellite cells. Transplantation of myofiber-associated, Isl1-derived satellite cells into damaged limb muscle contributed to muscle regeneration. In vitro exper...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Stem cells for skeletal muscle originate from dermomyotome of the embryo. The early marker of these ...
AbstractSatellite cells are committed myogenic progenitors that give rise to proliferating myoblasts...
SummaryAdult skeletal muscle possesses a remarkable regenerative capacity, due to the presence of sa...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Two complementary studies by Harel et al. and Sambasivan et al. published in this issue of Developme...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
AbstractSkeletal muscles of body and limb are derived from somites, but most head muscles originate ...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
Muscle satellite cells have been shown to be a heterogeneous population of committed myogenic progen...
<div><p>Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The st...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Skeletal muscles are found throughout the body and they display a surprising level of heterogeneity ...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Stem cells for skeletal muscle originate from dermomyotome of the embryo. The early marker of these ...
AbstractSatellite cells are committed myogenic progenitors that give rise to proliferating myoblasts...
SummaryAdult skeletal muscle possesses a remarkable regenerative capacity, due to the presence of sa...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Two complementary studies by Harel et al. and Sambasivan et al. published in this issue of Developme...
SummarySatellite cells play a central role in mediating the growth and regeneration of skeletal musc...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
AbstractSkeletal muscles of body and limb are derived from somites, but most head muscles originate ...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
Muscle satellite cells have been shown to be a heterogeneous population of committed myogenic progen...
<div><p>Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The st...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Skeletal muscles are found throughout the body and they display a surprising level of heterogeneity ...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Stem cells for skeletal muscle originate from dermomyotome of the embryo. The early marker of these ...
AbstractSatellite cells are committed myogenic progenitors that give rise to proliferating myoblasts...