: Several scientific evidence have shown that exposure to microgravity has a significant impact on the health of the musculoskeletal system by altering the expression of proteins and molecules involved in bone-muscle crosstalk, which is also observed in the research of microgravity effect simulation. Among these, the expression pattern of myostatin appears to play a key role in both load-free muscle damage and the progression of age-related musculoskeletal disorders, such as osteoporosis and sarcopenia. Based on this evidence, we here investigated the efficacy of treatment with anti-myostatin (anti-MSTN) antibodies on primary cultures of human satellite cells exposed to 72 h of random positioning machine (RPM). Cell cultures were obtained f...
International audienceSince its identification in 1997, myostatin has been considered as a novel and...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Exposure to microgravity induces skeletal muscle disorders including atrophy, muscle force decrease,...
: Several scientific evidence have shown that exposure to microgravity has a significant impact on t...
Background/aims The study of the effects of simulated microgravity on primary cultures of human sat...
The microgravity conditions of prolonged spaceflight are known to result in skeletal muscle atrophy ...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
Skeletal muscle is an extremely plastic tissue for its ability to respond to different stimuli such ...
The study of the effects of simulated microgravity on primary cultures of human satellite cells repr...
Thesis (Ph.D.)--Boston UniversityMyostatin (mstn) belongs to the TGF-β family and is best known as a...
Myostatin is a secreted growth and differentiating factor that belongs to TGF-bsuper-family. Myostat...
Among the physiological consequences of extended spaceflight are loss of skeletal muscle and bone ma...
Myostatin, a Transforming Growth Factor-beta (TGF-β) superfamily member, has been well characterised...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin, a TGF-β superfamily member, is a key negative regulator of embryonic and postnatal muscle...
International audienceSince its identification in 1997, myostatin has been considered as a novel and...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Exposure to microgravity induces skeletal muscle disorders including atrophy, muscle force decrease,...
: Several scientific evidence have shown that exposure to microgravity has a significant impact on t...
Background/aims The study of the effects of simulated microgravity on primary cultures of human sat...
The microgravity conditions of prolonged spaceflight are known to result in skeletal muscle atrophy ...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
Skeletal muscle is an extremely plastic tissue for its ability to respond to different stimuli such ...
The study of the effects of simulated microgravity on primary cultures of human satellite cells repr...
Thesis (Ph.D.)--Boston UniversityMyostatin (mstn) belongs to the TGF-β family and is best known as a...
Myostatin is a secreted growth and differentiating factor that belongs to TGF-bsuper-family. Myostat...
Among the physiological consequences of extended spaceflight are loss of skeletal muscle and bone ma...
Myostatin, a Transforming Growth Factor-beta (TGF-β) superfamily member, has been well characterised...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin, a TGF-β superfamily member, is a key negative regulator of embryonic and postnatal muscle...
International audienceSince its identification in 1997, myostatin has been considered as a novel and...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Exposure to microgravity induces skeletal muscle disorders including atrophy, muscle force decrease,...