Acute skeletal muscle injury is followed by satellite cell activation, proliferation, and differentiation to replace damaged fibers with newly regenerated muscle fibers, processes that involve satellite cell interactions with various niche signals. Here we show that satellite cell specific deletion of the chemokine receptor CXCR4, followed by suppression of recombination escapers, leads to defects in regeneration and satellite cell pool repopulation in both the transplantation and in situ injury contexts. Mechanistically, we show that endothelial cells and FAPs express the gene for the ligand, SDF1α, and that CXCR4 is principally required for proper activation and for transit through the first cell division, and to a lesser extent the later...
Satellite cells are skeletal muscle stem cells capable of self-renewal and differentiation after tra...
Skeletal muscle is essential for respiration, mobility, reproduction and metabolism. Deficits in mus...
The stromal cell-derived factor (SDF)-1/CXC receptor 4 (CXCR4) axis has been shown to play a role in...
Acute skeletal muscle injury is followed by satellite cell activation, proliferation, and differenti...
Acute skeletal muscle injury is followed by satellite cell activation, proliferation, and differenti...
OBJECTIVE: To observe the expressions of CXC chemokine receptor 4 (CXCR4) in muscle satellite cells ...
Mature skeletal muscle has a uniquely robust capacity for regeneration. This ability is due in large...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Summary: Skeletal muscle regeneration requires resident muscle stem cells, termed satellite cells (S...
Abstract Background Postnatal growth and repair of sk...
Summary Regeneration of skeletal muscle requires resident stem cells called satellite cells. Here, ...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
Skeletal muscle has an innate ability to self-regenerate in response to certain stimuli. In the case...
Satellite cells are skeletal muscle stem cells capable of self-renewal and differentiation after tra...
Skeletal muscle is essential for respiration, mobility, reproduction and metabolism. Deficits in mus...
The stromal cell-derived factor (SDF)-1/CXC receptor 4 (CXCR4) axis has been shown to play a role in...
Acute skeletal muscle injury is followed by satellite cell activation, proliferation, and differenti...
Acute skeletal muscle injury is followed by satellite cell activation, proliferation, and differenti...
OBJECTIVE: To observe the expressions of CXC chemokine receptor 4 (CXCR4) in muscle satellite cells ...
Mature skeletal muscle has a uniquely robust capacity for regeneration. This ability is due in large...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
Summary: Skeletal muscle regeneration requires resident muscle stem cells, termed satellite cells (S...
Abstract Background Postnatal growth and repair of sk...
Summary Regeneration of skeletal muscle requires resident stem cells called satellite cells. Here, ...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
International audienceThe satellite cell of skeletal muscle provides a paradigm for quiescent and ac...
International audienceThe muscle satellite cell is essential for skeletal muscle regeneration. It is...
Skeletal muscle has an innate ability to self-regenerate in response to certain stimuli. In the case...
Satellite cells are skeletal muscle stem cells capable of self-renewal and differentiation after tra...
Skeletal muscle is essential for respiration, mobility, reproduction and metabolism. Deficits in mus...
The stromal cell-derived factor (SDF)-1/CXC receptor 4 (CXCR4) axis has been shown to play a role in...