RRC ID 85976
Author Wu C, Tong Y, Huang J, Wang S, Kobori H, Zhang Z, Suzuki K.
Title Atrophic C2C12 Myotubes Activate Inflammatory Response of Macrophages In Vitro.
Journal Cells
Abstract BACKGROUND:Skeletal muscle wasting is commonly observed in aging, immobility, and chronic diseases. In pathological conditions, the impairment of skeletal muscle and immune system often occurs simultaneously. Recent studies have highlighted the initiative role of skeletal muscle in interactions with immune cells. However, the impact of skeletal muscle wasting on macrophage inflammatory responses remains poorly understood.
METHODS:To investigate the effect of atrophic myotubes on the inflammatory response of macrophages, we established two in vitro models to induce myotube atrophy: one induced by D-galactose and the other by starvation. Conditioned medium (CM) from normal and atrophic myotubes were collected and administered to bone marrow-derived macrophages (BMDMs) from mice. Subsequently, lipopolysaccharide (LPS) stimulation was applied, and the expression of inflammatory cytokines was measured via RT-qPCR.
RESULTS:Both D-galactose and starvation treatments reduced myotube diameter and upregulated muscle atrophy-related gene expression. CM from both atrophic myotubes models augmented the gene expression of pro-inflammatory factors in BMDMs following LPS stimulation, including Il6, Il1b, and Nfkb1. Notably, CM from starvation-induced atrophic myotubes also enhanced Il12b, Tnf, and Nos2 expression in BMDMs after stimulation, a response not observed in D-galactose-induced atrophic myotubes.
CONCLUSIONS:These findings suggest that CM from atrophic myotubes enhanced the expression of LPS-induced pro-inflammatory mediators in macrophages.
Volume 14(5)
Published 2025-2-20
DOI 10.3390/cells14050317
PII cells14050317
PMID 40072046
PMC PMC11899532
MeSH Animals Cell Line Culture Media, Conditioned / pharmacology Cytokines / metabolism Galactose / pharmacology Inflammation* / pathology Lipopolysaccharides / pharmacology Macrophages* / drug effects Macrophages* / metabolism Macrophages* / pathology Mice Mice, Inbred C57BL Muscle Fibers, Skeletal* / drug effects Muscle Fibers, Skeletal* / metabolism Muscle Fibers, Skeletal* / pathology Muscular Atrophy* / pathology
IF 4.366
Resource
Human and Animal Cells C2C12(RCB0987)