Satellite cells are myogenic precursors that proliferate, activate, and differentiate on muscle injury to sustain the regenerative capacity of adult skeletal muscle; in this process, they self-renew through the return to quiescence of the cycling progeny. This mechanism, while efficient in physiological conditions does not prevent exhaustion of satellite cells in pathologies such as muscular dystrophy where numerous rounds of damage occur. Here, we describe a key role of nitric oxide, an important signaling molecule in adult skeletal muscle, on satellite cells maintenance, studied ex vivo on isolated myofibers and in vivo using the a-sarcoglycan null mouse model of dystrophy and a cardiotoxin-induced model of repetitive damage. Nitric oxide...
AbstractNitric oxide (NO) is synthesized in skeletal muscle by neuronal-type NO synthase (nNOS), whi...
International audienceSkeletal muscle regeneration depends on satellite cells. After injury these mu...
Nitric oxide (NO) production is implicated in muscle contraction, growth and atrophy, and in the ons...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Nitric oxide (NO) is a free radical synthesized in various cells from L-arginine by a family of enzy...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Nitric oxide is a short-lived intracellular and intercellular messenger. The first realisation that ...
AbstractSkeletal muscle repair can be understood as a balance between fibrosis and regeneration, the...
Adult skeletal muscle possesses a remarkable regenerative ability, which largely depends on satellit...
Dystrophin-deficient muscles experience large reductions in expression of nitric oxide synthase (NOS...
Adult skeletal muscle possesses a remarkable regenerative ability, which largely depends on satellit...
Dystrophin-deficient muscles experience large reductions in expression of nitric oxide synthase (NOS...
Nitric oxide (NO) is an important signaling molecule produced in skeletal muscle primarily via the n...
AbstractNitric oxide (NO) is synthesized in skeletal muscle by neuronal-type NO synthase (nNOS), whi...
International audienceSkeletal muscle regeneration depends on satellite cells. After injury these mu...
Nitric oxide (NO) production is implicated in muscle contraction, growth and atrophy, and in the ons...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Muscular dystrophies are characterized by primary wasting of skeletal muscle for which no satisfacto...
Nitric oxide (NO) is a free radical synthesized in various cells from L-arginine by a family of enzy...
Homeostatic and regenerative replacement of skeletal muscle fibers requires the activity of a dedica...
Nitric oxide is a short-lived intracellular and intercellular messenger. The first realisation that ...
AbstractSkeletal muscle repair can be understood as a balance between fibrosis and regeneration, the...
Adult skeletal muscle possesses a remarkable regenerative ability, which largely depends on satellit...
Dystrophin-deficient muscles experience large reductions in expression of nitric oxide synthase (NOS...
Adult skeletal muscle possesses a remarkable regenerative ability, which largely depends on satellit...
Dystrophin-deficient muscles experience large reductions in expression of nitric oxide synthase (NOS...
Nitric oxide (NO) is an important signaling molecule produced in skeletal muscle primarily via the n...
AbstractNitric oxide (NO) is synthesized in skeletal muscle by neuronal-type NO synthase (nNOS), whi...
International audienceSkeletal muscle regeneration depends on satellite cells. After injury these mu...
Nitric oxide (NO) production is implicated in muscle contraction, growth and atrophy, and in the ons...