Corresponding author; fax: +33 4 6754 5694. E-mail address: bonnieu@supagro.inra.frInternational audienceMyostatin and hypoxia signalling pathways are able to induce skeletal muscle atrophy, but whether a relationship between these two pathways exists is currently unknown. Here, we tested the hypothesis that a potential mechanism for hypoxia effect on skeletal muscle may be through regulation of myostatin. We reported an induction of myostatin expression in muscles of rats exposed to chronic hypoxia. Interestingly, we also demonstrated increased skeletal muscle myostatin protein expression in skeletal muscle of hypoxemic patients with severe chronic obstructive pulmonary disease (COPD). Parallel studies in human skeletal muscle cell culture...
Skeletal muscle is an extremely plastic tissue for its ability to respond to different stimuli such ...
Abnormal levels of reactive oxygen species (ROS) and inflammatory cytokines have been observed in th...
AbstractSince hypoxia might contribute to the development of muscle atrophy, we wished to provide di...
Myostatin and hypoxia signalling pathways are able to induce skeletal muscle atrophy, but whether a ...
When exposed to chronic hypoxia by pathophysiological or environmental causes humans show muscle atr...
Background: Muscle atrophy is seen ~ 25 % of patients with cardiopulmonary disorders, such as chroni...
Hypoxia is the result of a decrease in arterial O2 availability and maybe induced by pathological or...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Background : Skeletal muscle atrophy is an important feature of chronic obstructive pulmonary diseas...
UNLABELLED: Hypoxia-induced muscle wasting has been observed in several environmental and pathologic...
Hypoxia is the result of a decrease in arterial O2 availability and maybe induced by pathological or...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
International audienceIn skeletal muscle, chronic oxygen depletion induces a disturbance leading to ...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin, a member of TGF-β superfamily, is a potent negative regulator of skeletal muscle growth a...
Skeletal muscle is an extremely plastic tissue for its ability to respond to different stimuli such ...
Abnormal levels of reactive oxygen species (ROS) and inflammatory cytokines have been observed in th...
AbstractSince hypoxia might contribute to the development of muscle atrophy, we wished to provide di...
Myostatin and hypoxia signalling pathways are able to induce skeletal muscle atrophy, but whether a ...
When exposed to chronic hypoxia by pathophysiological or environmental causes humans show muscle atr...
Background: Muscle atrophy is seen ~ 25 % of patients with cardiopulmonary disorders, such as chroni...
Hypoxia is the result of a decrease in arterial O2 availability and maybe induced by pathological or...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Background : Skeletal muscle atrophy is an important feature of chronic obstructive pulmonary diseas...
UNLABELLED: Hypoxia-induced muscle wasting has been observed in several environmental and pathologic...
Hypoxia is the result of a decrease in arterial O2 availability and maybe induced by pathological or...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
International audienceIn skeletal muscle, chronic oxygen depletion induces a disturbance leading to ...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin, a member of TGF-β superfamily, is a potent negative regulator of skeletal muscle growth a...
Skeletal muscle is an extremely plastic tissue for its ability to respond to different stimuli such ...
Abnormal levels of reactive oxygen species (ROS) and inflammatory cytokines have been observed in th...
AbstractSince hypoxia might contribute to the development of muscle atrophy, we wished to provide di...