Control of satellite cell function in muscle regeneration and its disruption in ageing
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Molecular Biology
Link
https://www.nature.com/articles/s41580-021-00421-2.pdf
Reference294 articles.
1. Fuchs, E. & Blau, H. M. Tissue stem cells: architects of their niches. Cell Stem Cell 27, 532–556 (2020).
2. Mauro, A. Satellite cell of skeletal muscle fibers. J. Biophys. Biochem. Cytol. 9, 493–495 (1961).
3. Evano, B., Khalilian, S., Le Carrou, G., Almouzni, G. & Tajbakhsh, S. Dynamics of asymmetric and symmetric divisions of muscle stem cells in vivo and on artificial niches. Cell Rep. 30, 3195–3206.e7 (2020). This study shows that satellite cells divide symmetrically and asymmetrically in vivo, and that these cells can switch from asymmetric to symmetric cell division ex vivo.
4. Robinson, D. C. L. et al. Negative elongation factor regulates muscle progenitor expansion for efficient myofiber repair and stem cell pool repopulation. Dev. Cell 56, 1014–1029.e7 (2021). This work demonstrates that proliferating satellite cells are required for stem cell replenishment on regenerated myofibres, with the negative elongation factor playing a major role.
5. Pawlikowski, B., Dalla Betta, N., Antwine, T. & Olwin, B. B. Skeletal muscle stem cell self-renewal and differentiation kinetics revealed by EdU lineage tracing during regeneration. Preprint at biorXiv https://doi.org/10.1101/627851 (2019).
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