Understanding the signaling pathways that regulate the final differentiation of human myoblasts is essential for successful cell transplantation and drug screening for the treatment of muscular dystrophy. In an effort to improve myotube formation from hiPSC-derived myoblasts, we validated a collection of 13 small molecules in a newly established in vitro screening platform for the assessment of myotube formation. The analysis of myotube formation as measured by the fusion index showed that the combinational inhibition of the TGFβ signaling with NOTCH signaling enhances the ability of multi-nucleated myotube production. Combinational treatment of inhibitors for TGFβ and NOTCH signaling pathways improved myotube formation in a dose-dependent ...
International audienceInduced pluripotent stem cells (iPSCs) obtained by reprogramming primary somat...
Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they pro...
Research has indicated a crucial role for autophagy during skeletal muscle differentiation. More so,...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
International audienceFusion of muscle progenitor cells is necessary for skeletal muscle development...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
: Induced pluripotent stem cells (iPSCs) offer an unlimited resource of cells to be used for the stu...
Abstract Muscular dystrophies are debilitating neuromuscular disorders for which no cure exists. As ...
Muscular dystrophies are a group of neuromuscular disorders primarily characterized by progressive m...
SummaryMuscle regeneration declines with aging and myopathies, and reprogramming of differentiated m...
Skeletal myogenesis is a tightly coordinated process resulting from the temporal expression of signa...
Muscle regeneration relies on a pool of muscle-resident stem cells called satellite cells (MuSCs). M...
Skeletal muscle is one of the most important and plastic tissues of our body. Damaged or stressed sk...
Muscle stem cells (MuSCs) are key contributors to the repair of skeletal muscle. In response to acut...
International audienceInduced pluripotent stem cells (iPSCs) obtained by reprogramming primary somat...
Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they pro...
Research has indicated a crucial role for autophagy during skeletal muscle differentiation. More so,...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
International audienceFusion of muscle progenitor cells is necessary for skeletal muscle development...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
: Induced pluripotent stem cells (iPSCs) offer an unlimited resource of cells to be used for the stu...
Abstract Muscular dystrophies are debilitating neuromuscular disorders for which no cure exists. As ...
Muscular dystrophies are a group of neuromuscular disorders primarily characterized by progressive m...
SummaryMuscle regeneration declines with aging and myopathies, and reprogramming of differentiated m...
Skeletal myogenesis is a tightly coordinated process resulting from the temporal expression of signa...
Muscle regeneration relies on a pool of muscle-resident stem cells called satellite cells (MuSCs). M...
Skeletal muscle is one of the most important and plastic tissues of our body. Damaged or stressed sk...
Muscle stem cells (MuSCs) are key contributors to the repair of skeletal muscle. In response to acut...
International audienceInduced pluripotent stem cells (iPSCs) obtained by reprogramming primary somat...
Summary: Satellite cells are responsible for skeletal muscle regeneration. Upon activation, they pro...
Research has indicated a crucial role for autophagy during skeletal muscle differentiation. More so,...