Biological progression from adult bone marrow to mononucleate muscle stem cell to multinucleate muscle fiber in response to injury.
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Summary
The results suggest that two temporally distinct injury-related signals first induce BMDC to occupy the muscle stem cell niche and then to help regenerate mature muscle fibers, due to developmental plasticity in response to environmental cues.
- Type
- article
- Published
- 2002-11-15
- Cited by
- 821
- References
- 52
- Access
- Open access
- OpenAlex
- https://openalex.org/W2013621644
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18097484
Keywords
Biology, Multinucleate, Stem cell, Cell biology, Myocyte
References
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- Purification of mouse primary myoblasts based on alpha 7 integrin expression.
Cited by
- Stem cells: Articles of faith adulterated
- Significant differences among skeletal muscles in the incorporation of bone marrow-derived cells.
- Stem Cell Plasticity in the Hematopoietic System
- Pax genes in myogenesis: alternate transcripts add complexity.
- Directed migration of neural stem cells to sites of CNS injury by the stromal cell-derived factor 1α/CXC chemokine receptor 4 pathway
- A population of very small embryonic-like (VSEL) CXCR4+SSEA-1+Oct-4+ stem cells identified in adult bone marrow
- Circulating haemopoietic and endothelial progenitor cells are decreased in COPD
- Asymmetric division and cosegregation of template DNA strands in adult muscle satellite cells
- CTACK/CCL27 Accelerates Skin Regeneration via Accumulation of Bone Marrow‐Derived Keratinocytes
- Lung‐specific nuclear reprogramming is accompanied by heterokaryon formation and Y chromosome loss following bone marrow transplantation and secondary inflammation
- Hepatic injury and the kinetics of bone marrow-derived hepatocyte transgene expression.
- Trichinella spiralis: nurse cell formation with emphasis on analogy to muscle cell repair
- Skeletal Myogenic Potential of Mouse Skin-Derived Precursors
- Regulation of muscle atrophy in aging and disease.
- Nuclear reprogramming by cell fusion.
- Cell fusion and tissue regeneration.
- Stem cell therapy in treatment of different diseases.
- Behavior of bone marrow-derived cells following in vivo transplantation: differentiation into stromal cells with roles in organ maintenance.
- The Effect of Myostatin-antagonist4 on a Severe Muscle Burn Injury
- DEVELOPING TISSUE ENGINEERING AND GENE THERAPY APPROACHES INVOLVING THE USE OF NERVE GROWTH FACTOR AND MUSCLE-DERIVED STEM CELLS TO IMPROVE THE REGENERATION OF DYSTROPHIC MUSCLE
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