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Updated: Jan 29, 2026

Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
Polarization of Rheumatoid Macrophages by TNF Targeting Through an IL-10/STAT3 Mechanism
Yannick Degboé1,2,3, Benjamin Rauwel1, Michel Baron1
1Centre de Physiopathologie Toulouse Purpan, INSERM UMR 1043, Toulouse, France.
Abstract:
Macrophages contribute to the pathogenesis of rheumatoid arthritis (RA). They can display different states of activation or "polarization," notably the so-called inflammatory "M1" and the various alternative "M2" polarizations, characterized by distinct functions. Data regarding the effects of RA anti-cytokine biological disease-modifying anti-rheumatic drugs (bDMARDs) on macrophage polarization are scarce. We aimed to assess in vitro modulation of macrophage polarization by bDMARDs targeting pro-inflammatory cytokines in RA. We generated monocyte derived macrophages using blood samples from 20 RA patients with active RA and 30 healthy controls. We evaluated in vitro the impact on M1 inflammatory macrophages of: etanercept (ETA), adalimumab (ADA), certolizumab (CZP), tocilizumab (TCZ), and rituximab (RTX). We assessed the impact on macrophage polarization using flow cytometry and RTqPCR to study the expression of surface markers and perform functional studies of cytokine production, phagocytosis, and negative feedback control of inflammation. Among evaluated bDMARDs, anti-TNF agents modulated the polarization of inflammatory macrophages by decreasing inflammatory surface markers (CD40, CD80) and favoring alternative markers (CD16, CD163, MerTK). Anti-TNF agents also induced alternative functions in macrophages activated in inflammatory condition with (i) the inhibition of inflammatory cytokines (TNF, IL-6, IL-12), (ii) an increase in phagocytosis. These findings were mechanistically related to an increase in early IL-10 production, responsible for higher negative feedback control of inflammation involving SOCS3 and Gas6. This IL-10 effect was STAT3-dependent. Anti-TNF agents not only inhibit in vitro inflammatory functions of macrophages, but also favor resolution of inflammation through polarization toward alternative features specifically involving the IL-10/STAT3 axis.
Insights
Anti-TNF biologics for rheumatoid arthritis (RA) shift inflammatory macrophages toward an anti-inflammatory M2 state. This involves increased IL-10 production, promoting inflammation resolution via the IL-10/STAT3 pathway.
Area of Science:
- Immunology
- Rheumatology
- Cell Biology
Background:
- Macrophages play a key role in rheumatoid arthritis (RA) pathogenesis.
- Macrophage polarization into M1 (inflammatory) and M2 (alternative) states influences disease activity.
- The effect of biological disease-modifying anti-rheumatic drugs (bDMARDs) on macrophage polarization in RA is not well understood.
Purpose of the Study:
- To investigate the in vitro effects of RA-targeting bDMARDs on macrophage polarization.
- To determine if anti-cytokine bDMARDs can modulate M1 inflammatory macrophages in RA patients.
Main Methods:
- Monocyte-derived macrophages were generated from RA patients and healthy controls.
- Macrophages were treated with etanercept, adalimumab, certolizumab, tocilizumab, and rituximab.
- Macrophage polarization was assessed using flow cytometry, RTqPCR, and functional assays (cytokine production, phagocytosis).
Main Results:
- Anti-TNF agents (etanercept, adalimumab, certolizumab) decreased M1 inflammatory markers (CD40, CD80) and increased M2 markers (CD16, CD163, MerTK).
- Anti-TNF agents inhibited inflammatory cytokine production (TNF, IL-6, IL-12) and enhanced phagocytosis.
- These effects were linked to increased IL-10 production, promoting inflammation resolution via the IL-10/STAT3/SOCS3/Gas6 axis.
Conclusions:
- Anti-TNF agents can reprogram M1 inflammatory macrophages towards an alternative, anti-inflammatory phenotype in vitro.
- This polarization shift involves enhanced IL-10 production and signaling through the IL-10/STAT3 pathway.
- These findings suggest a mechanism by which anti-TNF therapy promotes inflammation resolution in RA.
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