Glucocorticoid Receptor Signaling in Myeloid Cells Orchestrates Inflammation Resolution and Muscle Repair
Souali-Crespo, S.; RIZK, J. G.; Calvano, E.; Sahu, R.; Colovic, E.; Chabba, I.; Gilbart, V.; Grandgirard, E.; Morlet, B.; Cai, Q.; Metzger, D.; Duteil, D.
Show abstract
Glucocorticoids are key regulators of inflammation and tissue repair, yet their precise role in muscle regeneration remains incompletely understood. Here, we investigate the impact of myeloid-specific glucocorticoid receptor (GR) invalidation on macrophage dynamics and muscle stem cell function following acute injury. We demonstrate that the loss of GR in myeloid cells leads to increased macrophage accumulation, driven by altered proliferation and recruitment, without affecting fibro-adipogenic progenitor differentiation or satellite cell proliferation and differentiation under steady-state conditions. Transcriptomic and CUT&RUN analyses at early regeneration stages reveal that GR directly regulates gene networks involved in efferocytosis and cell cycle control in myeloid cells. Importantly, administration of dexamethasone during the pro-inflammatory phase markedly delays muscle regeneration by impairing monocyte-to-macrophage transition and promoting macrophage proliferation in a myeloid-GR dependent manner, ultimately reducing satellite cell proliferation and myogenesis. In contrast, dexamethasone treatment during the anti-inflammatory phase exerts limited effects on muscle recovery. Together, our findings uncover a critical temporal role of GR signaling in myeloid cells in coordinating inflammatory resolution and stem cell function during muscle repair, and highlight the complexity of glucocorticoid actions in regenerative contexts.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hedgehog signaling via its ligand DHH acts as cell fate determinant during skeletal muscle regeneration 97%
- In vivo self-renewal and expansion of quiescent stem cells from a non-human primate 96%
- Single-nucleus transcriptomics reveals functional compartmentalization in syncytial skeletal muscle cells 96%
Similar papers in this journal
- SWELL1-LRRC8 complex regulates skeletal muscle cell size, intracellular signalling, adiposity and glucose metabolism 95%
- Re-programming of GM-CSF-dependent alveolar macrophages through GSK3 activity modulation 95%
- Single Cell Deconstruction of Muscle Stem Cell Heterogeneity During Aging Reveals Sensitivity to the Neuromuscular Junction 95%
Similar papers in this journal
- Immunomodulatory Role of the Stem Cell Circadian Clock in Muscle Repair 97%
- Intravital microscopy of satellite cell dynamics and their interaction with myeloid cells during skeletal muscle regeneration 96%
- Type I interferon potentiates metabolic dysfunction, inflammation, and accelerated aging in mtDNA mutator mice 95%
Similar papers in this journal
- Regeneration-specific promoter switching facilitates Mest expression in the mouse digit tip to modulate neutrophil response 95%
- Effects of injury size on local and systemic immune cell dynamics in volumetric muscle loss 95%
- A quiescent resident progenitor pool is the central organizer of tendon healing 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.