Integrated Transcriptomic Analysis Identifies a Candidate INHBA/Activin A-Associated Macrophage–MuSC Communication Axis in Human Skeletal Muscle Ageing

Skeletal muscle ageing is accompanied by impaired regeneration and remodelling of the multicellular niche, yet how age-related immune changes relate to altered muscle stem cell (MuSC) states in humans remains unclear. Here, we integrated bulk RNA-sequencing, scRNA-seq and an independent older adult cohort analysis to characterize age-associated changes in human skeletal muscle and identify candidate macrophage–MuSC signalling interactions. Bulk transcriptomic analysis revealed inflammatory activation, reduced mitochondrial and metabolic programmes, and increased macrophage-associated signatures in aged muscle. Single-cell analysis resolved distinct myeloid and MuSC states. Among aged myeloid populations, inflammatory macrophages exhibited the highest SenMayo score, whereas donor-level pseudobulk analysis identified age-related early-primed MuSCs (epMuSC) remodelling involving inflammatory, interferon-related, and extracellular matrix-associated programmes. Ligand–target modelling prioritized inhibin subunit beta A (INHBA)/Activin A as a candidate signal linking inflammatory macrophages to the aged epMuSC programme. This prediction was further supported by an independent older adult human muscle scRNA-seq cohort showing concordant INHBA expression in inflammatory macrophages and Activin receptor expression in epMuSCs. In primary human MuSCs, Activin A induced Activin-responsive genes and suppressed myogenic regulators, and these effects were attenuated by SB431542, a small-molecule inhibitor of ALK4/5/7 signalling. Together, these findings support a candidate INHBA-associated, cell state-resolved communication framework between inflammatory macrophages and epMuSC remodelling in aged human muscle, providing a potential link between immune remodelling and altered regenerative cell states.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-17
DOI
https://doi.org/10.3390/ijms27188283
Primary Topic
Muscle Physiology and Disorders
Type
article
Field-Weighted Citation Impact
0.00

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article

Integrated Transcriptomic Analysis Identifies a Candidate INHBA/Activin A-Associated Macrophage–MuSC Communication Axis in Human Skeletal Muscle Ageing

Yutong Yuan, Xuanchen Liu, Ningbei Yin, Nuo Si et al.
International Journal of Molecular Sciences
Muscle Physiology and Disorders
article

Integrated Transcriptomic Analysis Identifies a Candidate INHBA/Activin A-Associated Macrophage–MuSC Communication Axis in Human Skeletal Muscle Ageing

Yutong Yuan, Xuanchen Liu, Ningbei Yin, Nuo Si, Zehui Li
article en

Abstract

Skeletal muscle ageing is accompanied by impaired regeneration and remodelling of the multicellular niche, yet how age-related immune changes relate to altered muscle stem cell (MuSC) states in humans remains unclear. Here, we integrated bulk RNA-sequencing, scRNA-seq and an independent older adult cohort analysis to characterize age-associated changes in human skeletal muscle and identify candidate macrophage–MuSC signalling interactions. Bulk transcriptomic analysis revealed inflammatory activation, reduced mitochondrial and metabolic programmes, and increased macrophage-associated signatures in aged muscle. Single-cell analysis resolved distinct myeloid and MuSC states. Among aged myeloid populations, inflammatory macrophages exhibited the highest SenMayo score, whereas donor-level pseudobulk analysis identified age-related early-primed MuSCs (epMuSC) remodelling involving inflammatory, interferon-related, and extracellular matrix-associated programmes. Ligand–target modelling prioritized inhibin subunit beta A (INHBA)/Activin A as a candidate signal linking inflammatory macrophages to the aged epMuSC programme. This prediction was further supported by an independent older adult human muscle scRNA-seq cohort showing concordant INHBA expression in inflammatory macrophages and Activin receptor expression in epMuSCs. In primary human MuSCs, Activin A induced Activin-responsive genes and suppressed myogenic regulators, and these effects were attenuated by SB431542, a small-molecule inhibitor of ALK4/5/7 signalling. Together, these findings support a candidate INHBA-associated, cell state-resolved communication framework between inflammatory macrophages and epMuSC remodelling in aged human muscle, providing a potential link between immune remodelling and altered regenerative cell states.

International Journal of Molecular SciencesVol. 27(18)
Chinese Academy of Medical Sciences & Peking Union Medical College (CN), Peking Union Medical College Hospital (CN)
Chinese Academy of Medical Sciences Initiative for Innovative Medicine
Openalex Percentile: Top 18%
Muscle Physiology and Disorders
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