Integrative multi-omics analysis reveals gut microbiota-derived metabolites and immune regulatory pathways in osteoarthritis pathogenesis

Интегративный мультиомный анализ выявляет метаболиты микробиоты кишечника и иммунорегуляторные пути в патогенезе остеоартрита
Weijiang Wang, Hongwei Liu, M. Zhang, Luodan Wang
2026-01-05

Mendelian randomizationgut microbiota-derived metabolitesgut-joint axisimmune regulatory pathwayssingle-cell transcriptomics
BACKGROUND: Osteoarthritis (OA) is a chronic degenerative joint disease characterized by cartilage degradation, synovial inflammation, and progressive joint dysfunction. Emerging evidence suggests that gut microbiota dysbiosis contributes to OA development through immune modulation and metabolite-mediated pathways. METHODS: We applied a comprehensive multi-omics strategy that integrated differential gene expression analysis, functional enrichment, machine learning (ML), SHapley Additive exPlanations (SHAP), Mendelian randomization (MR), and single-cell transcriptomics to identify key microbial metabolites and molecular targets involved in OA pathogenesis. RESULTS: We constructed a Microbiota-Metabolite-Target (M-M-T) network linking 34 gut microbial species, 19 metabolites, and the hub gene Arginase 1 (ARG1), thereby revealing potential regulatory mechanisms involved in immune cell communication. Functional enrichment analyses and cell-cell interaction profiling identified key roles for the Macrophage Migration Inhibitory Factor (MIF) and visfatin signaling pathways in modulating inflammatory responses and tissue metabolic processes. Seven gut microbiota-derived metabolites with favorable drug-like properties and minimal predicted toxicity were further identified, and molecular docking indicated that these metabolites form stable interactions with ARG1. CONCLUSIONS: These findings provide new insights into the gut-joint axis, suggesting that targeting microbial metabolites and immune regulatory pathways may offer potential therapeutic strategies for OA and pave the way for future in vitro and in vivo investigations.
1
An integrated multi-omics framework combining gene expression, enrichment analysis, machine learning, SHAP, Mendelian randomization, and single-cell transcriptomics investigated gut–joint mechanisms in osteoarthritis.
2
MIF and visfatin signaling pathways were implicated in immune-cell communication, inflammatory responses, and tissue metabolic processes in osteoarthritis.
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Seven gut microbiota-derived metabolites showed favorable predicted drug-like properties and minimal toxicity, while molecular docking indicated stable interactions with ARG1.
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The findings suggest that targeting microbial metabolites and immune regulatory pathways could provide therapeutic strategies for osteoarthritis, although validation in vitro and in vivo remains necessary.
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The study constructed a Microbiota-Metabolite-Target network linking 34 gut microbial species, 19 metabolites, and the hub gene ARG1.

Gut microbiota–derived metabolites and immune regulatory pathways involved in osteoarthritis pathogenesis

The gut–joint-axis mechanisms linking microbial dysbiosis and metabolites to immune-cell communication, inflammatory responses, and tissue metabolic regulation in osteoarthritis

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2026-01-05
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Weijiang Wang
Hongwei Liu
M. Zhang
Luodan Wang
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