Protection of satellite cells from cytotoxic damages is crucial to ensure efficient adult skeletal muscle regeneration and to improve therapeutic efficacy of cell transplantation in degenerative skeletal muscle diseases. It is therefore important to identify and characterize molecules and their target genes that control the viability of muscle stem cells. Recently, we demonstrated that high aldehyde dehydrogenase activity is associated with increased viability of human myoblasts. In addition to its detoxifying activity, aldehyde dehydrogenase can also catalyze the irreversible oxidation of vitamin A to retinoic acid; therefore, we examined whether retinoic acid is important for myoblast viability. We showed that when exposed to oxidative st...
Background: Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchen...
AbstractMutations in human Retinol Dehydrogenase 12 (RDH12) are known to cause photoreceptor cell de...
Background: Understanding stem cell differentiation is essential for the future design of cell thera...
Muscle satellite cells are resistant to cytotoxic agents, and they express several genes that confer...
BACKGROUND: Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchen...
Aldehyde dehydrogenases (ALDH) are a family of enzymes that efficiently detoxify aldehydic products ...
International audienceSkeletal muscle contains cell populations displaying aldehyde dehydrogenase (A...
Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchenne muscular ...
Stem cells are classically defined by their multipotent, long-term proliferation, and self-renewal c...
International audienceSkeletal muscle shows high plasticity in response to external demand. Moreover...
During physical exercise skeletal muscle cells are continuosly exposed to oxidative stress. Thus, th...
Vitamin E (VE) deficiency results in pronounced muscle weakness and atrophy but the cell biological ...
Oxidative stress has been implicated in the pathogenesis of numerous late-onset diseases as well as ...
For the past hundred years since the discovery of vitamin A, the field of research associated with r...
Background/Aims: All-trans retinoic acid (ATRA) has protective effects against obesity and metabolic...
Background: Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchen...
AbstractMutations in human Retinol Dehydrogenase 12 (RDH12) are known to cause photoreceptor cell de...
Background: Understanding stem cell differentiation is essential for the future design of cell thera...
Muscle satellite cells are resistant to cytotoxic agents, and they express several genes that confer...
BACKGROUND: Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchen...
Aldehyde dehydrogenases (ALDH) are a family of enzymes that efficiently detoxify aldehydic products ...
International audienceSkeletal muscle contains cell populations displaying aldehyde dehydrogenase (A...
Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchenne muscular ...
Stem cells are classically defined by their multipotent, long-term proliferation, and self-renewal c...
International audienceSkeletal muscle shows high plasticity in response to external demand. Moreover...
During physical exercise skeletal muscle cells are continuosly exposed to oxidative stress. Thus, th...
Vitamin E (VE) deficiency results in pronounced muscle weakness and atrophy but the cell biological ...
Oxidative stress has been implicated in the pathogenesis of numerous late-onset diseases as well as ...
For the past hundred years since the discovery of vitamin A, the field of research associated with r...
Background/Aims: All-trans retinoic acid (ATRA) has protective effects against obesity and metabolic...
Background: Despite the initial promise of myoblast transfer therapy to restore dystrophin in Duchen...
AbstractMutations in human Retinol Dehydrogenase 12 (RDH12) are known to cause photoreceptor cell de...
Background: Understanding stem cell differentiation is essential for the future design of cell thera...