The skeletal fibers have different embryological origin; the extraocular and jaw-closer muscles develop from prechordal mesoderm while the limb and trunk muscles from somites. These different origins characterize also the adult muscle stem cells, known as satellite cells (SCs) and responsible for the fiber growth and regeneration. The physiological properties of presomitic SCs and their epigenetics are poorly studied despite their peculiar characteristics to preserve muscle integrity during chronic muscle degeneration. Here, we isolated SCs from canine somitic [somite-derived muscle (SDM): vastus lateralis, rectus abdominis, gluteus superficialis, biceps femoris, psoas] and presomitic [pre-somite-derived muscle (PSDM): lateral rectus, tempo...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Duchenne Muscular Dystrophy (DMD), the most common form of inherited neuromuscular disorder, is caus...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
The skeletal fibers have different embryological origin; the extraocular and jaw-closer muscles deve...
The skeletal fibers have different embryological origin; the extraocular and jaw-closer muscles deve...
The skeletal muscle adult stem cells (satellite cells SCs) are resident beneath basal lamina during ...
Satellite cells, originating in the embryonic dermamyotome, reside beneath the myofibre of mature ad...
Several adult stem cell populations exhibit myogenic regenerative potential, thus representing attra...
AbstractExtraocular muscles (EOMs) are highly specialized skeletal muscles that originate from the h...
Several adult stem cell populations exhibit myogenic regenerative potential, thus representing attra...
Background: Duchenne muscular dystrophy (DMD) is an X-linked muscle disease that leads to fibre necr...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Muscle Stem = MuStemInternational audienceDuchenne muscular dystrophy (DMD) is a genetic progressive...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
Satellite cells are the resident stem cells found in adult skeletal muscle. These tissue-specific st...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Duchenne Muscular Dystrophy (DMD), the most common form of inherited neuromuscular disorder, is caus...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
The skeletal fibers have different embryological origin; the extraocular and jaw-closer muscles deve...
The skeletal fibers have different embryological origin; the extraocular and jaw-closer muscles deve...
The skeletal muscle adult stem cells (satellite cells SCs) are resident beneath basal lamina during ...
Satellite cells, originating in the embryonic dermamyotome, reside beneath the myofibre of mature ad...
Several adult stem cell populations exhibit myogenic regenerative potential, thus representing attra...
AbstractExtraocular muscles (EOMs) are highly specialized skeletal muscles that originate from the h...
Several adult stem cell populations exhibit myogenic regenerative potential, thus representing attra...
Background: Duchenne muscular dystrophy (DMD) is an X-linked muscle disease that leads to fibre necr...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Muscle Stem = MuStemInternational audienceDuchenne muscular dystrophy (DMD) is a genetic progressive...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
Satellite cells are the resident stem cells found in adult skeletal muscle. These tissue-specific st...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Duchenne Muscular Dystrophy (DMD), the most common form of inherited neuromuscular disorder, is caus...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...