Abstract Background Previous studies in patients with limb-girdle muscular dystrophy type 2A (LGMD2A) have suggested that calpain-3 (CAPN3) mutations result in aberrant regeneration in muscle. Methods To gain insight into pathogenesis of aberrant muscle regeneration in LGMD2A, we used a paradigm of cardiotoxin (CTX)-induced cycles of muscle necrosis and regeneration in the CAPN3-KO mice to simulate the early features of the dystrophic process in LGMD2A. The temporal evolution of the regeneration process was followed by assessing the oxidative state, size, and the number of metabolic fiber types at 4 and 12 weeks after last CTX injection. Muscles isolated at these time points were further investigated for the key regulators of the pathways i...
Smad3 is a key intracellular signaling mediator for both transforming growth factor-β and myostatin,...
Defects in human calpain 3 are responsible for limb-girdle muscular dystrophy type 2A, an autosomal-...
Skeletal muscle plays fundamental roles for locomotion, posture maintenance and breathing and to pre...
Abstract Background Limb girdle muscular dystrophy (LGMD) type 2A is caused by mutations in the CAPN...
Limb girdle muscular dystrophy 2A is due to loss-of-function mutations in the Calpain 3 (CAPN3) gene...
International audienceBackground Genetic defects in calpain3 (CAPN3) lead to limb-girdle muscular dy...
Introduction—Recent in vitro studies suggest that CAPN3 deficiency leads initially to accelerated my...
Calpain 3 is known as the skeletal muscle-specific member of the calpains, a family of intracellular...
Limb-girdle muscular dystrophy, type 2A (LGMD 2A), is an autosomal recessive disorder that causes la...
Calpain-3 deficiency causes oxidative and nitrosative stress-induced damage in skeletal muscle of LG...
Mutations in CAPN3 cause limb girdle muscular dystrophy R1 (LGMDR1, formerly LGMD2A) and lead to pro...
Limb-Girdle Muscular Dystrophy Type R1 (LGMDR1; formerly LGMD2A), characterized by progressive hip a...
Mutations in CAPN3 cause autosomal recessive limb girdle muscular dystrophy 2A. Calpain 3 (CAPN3) is...
Calpain 3 (CAPN3), also known as p94, is a skeletal muscle-specific member of the calpain family tha...
Smad3 is a key intracellular signaling mediator for both transforming growth factor-β and myostatin,...
Smad3 is a key intracellular signaling mediator for both transforming growth factor-β and myostatin,...
Defects in human calpain 3 are responsible for limb-girdle muscular dystrophy type 2A, an autosomal-...
Skeletal muscle plays fundamental roles for locomotion, posture maintenance and breathing and to pre...
Abstract Background Limb girdle muscular dystrophy (LGMD) type 2A is caused by mutations in the CAPN...
Limb girdle muscular dystrophy 2A is due to loss-of-function mutations in the Calpain 3 (CAPN3) gene...
International audienceBackground Genetic defects in calpain3 (CAPN3) lead to limb-girdle muscular dy...
Introduction—Recent in vitro studies suggest that CAPN3 deficiency leads initially to accelerated my...
Calpain 3 is known as the skeletal muscle-specific member of the calpains, a family of intracellular...
Limb-girdle muscular dystrophy, type 2A (LGMD 2A), is an autosomal recessive disorder that causes la...
Calpain-3 deficiency causes oxidative and nitrosative stress-induced damage in skeletal muscle of LG...
Mutations in CAPN3 cause limb girdle muscular dystrophy R1 (LGMDR1, formerly LGMD2A) and lead to pro...
Limb-Girdle Muscular Dystrophy Type R1 (LGMDR1; formerly LGMD2A), characterized by progressive hip a...
Mutations in CAPN3 cause autosomal recessive limb girdle muscular dystrophy 2A. Calpain 3 (CAPN3) is...
Calpain 3 (CAPN3), also known as p94, is a skeletal muscle-specific member of the calpain family tha...
Smad3 is a key intracellular signaling mediator for both transforming growth factor-β and myostatin,...
Smad3 is a key intracellular signaling mediator for both transforming growth factor-β and myostatin,...
Defects in human calpain 3 are responsible for limb-girdle muscular dystrophy type 2A, an autosomal-...
Skeletal muscle plays fundamental roles for locomotion, posture maintenance and breathing and to pre...