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Author Spotlight: Isolation and Culture of Primary Synovial Macrophages and Fibroblasts from Murine Arthritis Tissue
Published on: February 24, 2023
Macrophages from the synovium of active rheumatoid arthritis exhibit an activin A-dependent pro-inflammatory profile
Blanca Soler Palacios1, Lizbeth Estrada-Capetillo, Elena Izquierdo
1Laboratorio de Inmuno-Metabolismo, Hospital General Universitario Gregorio Marañón, Madrid, Spain.
Abstract:
Rheumatoid arthritis (RA) is a chronic inflammatory disease whose pathogenesis and severity correlates with the presence of macrophage-derived pro-inflammatory cytokines within the inflamed synovium. Macrophage-derived cytokines fuel the pathological processes in RA and are targets of clinically successful therapies. However, although macrophage polarization determines cytokine production, the polarization state of macrophages in RA joints remains poorly defined. To dissect the molecular basis for the tissue-damaging effects of macrophages in RA joints, we undertook the phenotypic and transcriptomic characterization of ex vivo isolated CD14(+) RA synovial fluid (RA-SF) macrophages. Flow cytometry and gene profiling indicated that RA-SF macrophages express pro-inflammatory polarization markers (MMP12, EGLN3, CCR2), lack expression of markers associated with homeostatic and anti-inflammatory polarization (IGF1, HTR2B) and exhibit a transcriptomic profile that resembles the activin A-dependent gene signature of pro-inflammatory in vitro-generated macrophages. In fact, high levels of Smad-activating activin A were found in RA-SF and, accordingly, the Smad signalling pathway was activated in ex vivo-isolated RA-SF macrophages. In vitro experiments on monocytes and macrophages indicated that RA-SF promoted the acquisition of pro-inflammatory markers (INHBA, MMP12, EGLN3, CCR2) but led to a significant reduction in the expression of genes associated with homeostasis and inflammation resolution (FOLR2, SERPINB2, IGF1, CD36), thus confirming the pro-inflammatory polarization ability of RA-SF. Importantly, the macrophage-polarizing ability of RA-SF was inhibited by an anti-activin A-neutralizing antibody, thus demonstrating that activin A mediates the pro-inflammatory macrophage-polarizing ability of RA-SF. Moreover, and in line with these findings, multicolour immunofluorescence evidenced that macrophages within RA synovial membranes (RA-SM) also express pro-inflammatory polarization markers whose expression is activin A-dependent. Altogether, our results demonstrate that macrophages from RA synovial fluids and membranes exhibit an MMP12(+) EGLN3(+) CCR2(+) pro-inflammatory polarization state whose acquisition is partly dependent on activin A from the synovial fluid.
Insights
Macrophages in rheumatoid arthritis (RA) joints display a pro-inflammatory state, driven partly by activin A in synovial fluid. This finding clarifies macrophage roles in RA pathogenesis and suggests new therapeutic targets for controlling inflammation.
Area of Science:
- Immunology
- Rheumatology
- Molecular Biology
Background:
- Rheumatoid arthritis (RA) is a chronic inflammatory disease characterized by macrophage-derived pro-inflammatory cytokines in the synovium.
- Macrophage polarization dictates cytokine production, but its specific state in RA joints is not well understood.
- Understanding macrophage behavior is crucial for targeting RA pathogenesis.
Purpose of the Study:
- To characterize the phenotype and transcriptome of macrophages from RA synovial fluid (RA-SF).
- To investigate the role of activin A in mediating pro-inflammatory macrophage polarization in RA.
- To identify molecular mechanisms underlying macrophage-driven tissue damage in RA.
Main Methods:
- Flow cytometry and gene profiling of ex vivo isolated CD14(+) RA-SF macrophages.
- Transcriptomic analysis to compare RA-SF macrophages with in vitro generated macrophages.
- In vitro experiments using monocytes and macrophages treated with RA-SF.
- Inhibition assays using anti-activin A neutralizing antibodies.
- Multicolour immunofluorescence on RA synovial membrane (RA-SM) macrophages.
Main Results:
- RA-SF macrophages exhibit a pro-inflammatory phenotype (MMP12, EGLN3, CCR2) and lack anti-inflammatory markers (IGF1, HTR2B).
- RA-SF macrophages share transcriptomic similarities with activin A-induced pro-inflammatory macrophages.
- RA-SF promotes pro-inflammatory polarization and reduces homeostatic/resolution markers in vitro.
- Activin A in RA-SF is identified as a key mediator of pro-inflammatory macrophage polarization.
- Macrophages in RA synovial membranes also display activin A-dependent pro-inflammatory markers.
Conclusions:
- Macrophages in RA synovial fluid and membranes adopt a pro-inflammatory polarization state.
- Activin A in the synovial fluid significantly contributes to this pro-inflammatory macrophage phenotype.
- These findings elucidate a novel mechanism of macrophage activation in RA, highlighting activin A as a potential therapeutic target.
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