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Satellite cells in human skeletal muscle plasticity

Tim Snijders, Joshua P. Nederveen, Bryon R. McKay, Sophie Joanisse, Lex B. Verdijk, Luc J. C. van Loon, Gianni Parise

Frontiers in Physiology · 2015 · ▲ 354 citations

Abstract

Skeletal muscle satellite cells are considered to play a crucial role in muscle fiber maintenance, repair and remodeling. Our knowledge of the role of satellite cells in muscle fiber adaptation has traditionally relied on in vitro cell and in vivo animal models. Over the past decade, a genuine effort has been made to translate these results to humans under physiological conditions. Findings from in vivo human studies suggest that satellite cells play a key role in skeletal muscle fiber repair/remodeling in response to exercise. Mounting evidence indicates that aging has a profound impact on the regulation of satellite cells in human skeletal muscle. Yet, the precise role of satellite cells in the development of muscle fiber atrophy with age remains unresolved. This review seeks to integrate recent results from in vivo human studies on satellite cell function in muscle fiber repair/remodeling in the wider context of satellite cell biology whose literature is largely based on animal and cell models.

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Provenance

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OpenAlex
DOI
10.3389/fphys.2015.00283
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2026-06-07 MST

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APA
Snijders, T., Nederveen, J.P., McKay, B.R., Joanisse, S., Verdijk, L.B., Loon, L.J.C.V., &amp; Parise, G. (2015). Satellite cells in human skeletal muscle plasticity. <em>Frontiers in Physiology</em>. https://doi.org/10.3389/fphys.2015.00283
Vancouver
Snijders T, Nederveen JP, McKay BR, Joanisse S, Verdijk LB, Loon LJCV, et al. Satellite cells in human skeletal muscle plasticity. Frontiers in Physiology. 2015. doi:10.3389/fphys.2015.00283.
BibTeX
@article{tim2015Satell, title = {Satellite cells in human skeletal muscle plasticity}, author = {Tim Snijders and Joshua P. Nederveen and Bryon R. McKay and Sophie Joanisse and Lex B. Verdijk and Luc J. C. van Loon and Gianni Parise}, journal = {Frontiers in Physiology}, year = {2015}, doi = {10.3389/fphys.2015.00283}, }

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