Control of quiescence and activation of human muscle stem cells by cytokines

K Katharine Striedinger E Emilie Barruet E Elena Atamaniauc K Karla Linquist C Chris Knott A Andrew Brack J Jason H. Pomerantz

Abstract

Skeletal muscle homeostasis and repair depend on the activation of tissue resident stem cells called satellite cells. To understand the early molecular basis of human satellite cell activation, epigenomics, transcriptomics and protein analysis were performed in quiescent and experimentally activated human satellite cells. Cytokine signaling pathways were enriched in activated human satellite cells revealing high cytokine enrichment, including CCL2, CCL20, CXCL8, IL-6, TNFRSF12A, ILR1, CSF-1 and FGF2. Functional roles of these observed changes are supported by in vivo experiments showing that chemokine inhibitors increase engraftment and regeneration capacity of human satellite cells xenotransplants. Cytokines, chemokines and associated signaling pathways in the early stages of human satellite cell activation may underlie disparate muscle responses in neuromuscular inflammatory and degenerative disorders and consequently are potential entry points for clinical applications towards muscle repair.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 12
Published December 05, 2025
Pages e0327701
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (7)

K

Katharine Striedinger

E

Emilie Barruet

E

Elena Atamaniauc

K

Karla Linquist

C

Chris Knott

A

Andrew Brack

J

Jason H. Pomerantz