Duchenne muscular dystrophy (DMD) is a fatal X-linked degenerative muscle disease caused by the absence of the microtubule-associated protein dystrophin, which results in a disorganized and denser microtubule cytoskeleton. In addition, mechanotransduction-dependent activation of calcium (Ca2+) and reactive oxygen species (ROS) signaling underpins muscle degeneration in DMD. We show that in muscle from adult mdx mice, a model of DMD, a brief physiologic stretch elicited microtubule-dependent activation of NADPH (reduced-form nicotinamide adenine dinucleotide phosphate) oxidase-dependent production of ROS, termed X-ROS. Further, X-ROS amplified Ca2+ influx through stretch-activated channels in mdx muscle. Consistent with the importance of the...
Altered myofibrillar structure is a consequence of dystrophic pathology that impairs skeletal muscle...
We recetly identified a signaling pathway that links the upregulation of miR-379 with a mitochondria...
International audienceBesides its role in calcium (Ca2+) homeostasis, the sarco-endoplamic reticulum...
In Duchenne muscular dystrophy, a lack of dystrophin leads to extensive muscle weakness and atrophy ...
In striated muscle, X-ROS is the mechanotransduction pathway by which mechanical stress transduced b...
Skeletal muscle from mdx mice is characterized by increased Nox2 ROS, altered microtubule network, i...
1. Duchenne muscular dystrophy (DMD) is a lethal, degenerative muscle disease caused by a genetic mu...
La dystrophie musculaire de Duchenne (DMD) est une maladie génétique due à une mutation du gène coda...
Recent studies have shown that oxidative stress contributes to the pathogenesis of muscle damage in ...
Recent studies have shown that oxidative stress contributes to the pathogenesis of muscle damage in ...
Oxidative stress, caused by reactive oxygen species (ROS), has been implicated on disease progressio...
Duchenne muscular dystrophy (DMD) is a degenerative skeletal muscle disease that makes walking and b...
Duchenne Muscular Dystrophy (DMD) is the most common and most severe myopathy. Currently, no cure ex...
AbstractDuchenne myopathy is a lethal disease due to the absence of dystrophin, a cytoskeletal prote...
Several studies documented the key role of oxidative stress and abnormal production of reactive oxyg...
Altered myofibrillar structure is a consequence of dystrophic pathology that impairs skeletal muscle...
We recetly identified a signaling pathway that links the upregulation of miR-379 with a mitochondria...
International audienceBesides its role in calcium (Ca2+) homeostasis, the sarco-endoplamic reticulum...
In Duchenne muscular dystrophy, a lack of dystrophin leads to extensive muscle weakness and atrophy ...
In striated muscle, X-ROS is the mechanotransduction pathway by which mechanical stress transduced b...
Skeletal muscle from mdx mice is characterized by increased Nox2 ROS, altered microtubule network, i...
1. Duchenne muscular dystrophy (DMD) is a lethal, degenerative muscle disease caused by a genetic mu...
La dystrophie musculaire de Duchenne (DMD) est une maladie génétique due à une mutation du gène coda...
Recent studies have shown that oxidative stress contributes to the pathogenesis of muscle damage in ...
Recent studies have shown that oxidative stress contributes to the pathogenesis of muscle damage in ...
Oxidative stress, caused by reactive oxygen species (ROS), has been implicated on disease progressio...
Duchenne muscular dystrophy (DMD) is a degenerative skeletal muscle disease that makes walking and b...
Duchenne Muscular Dystrophy (DMD) is the most common and most severe myopathy. Currently, no cure ex...
AbstractDuchenne myopathy is a lethal disease due to the absence of dystrophin, a cytoskeletal prote...
Several studies documented the key role of oxidative stress and abnormal production of reactive oxyg...
Altered myofibrillar structure is a consequence of dystrophic pathology that impairs skeletal muscle...
We recetly identified a signaling pathway that links the upregulation of miR-379 with a mitochondria...
International audienceBesides its role in calcium (Ca2+) homeostasis, the sarco-endoplamic reticulum...