Elevated Fcy receptor expression augments pro-inflammatory macrophage phagocytosis in systemic sclerosis and
Amela Hukara1, Gino Andrea Bonazza1, Tracy Tabib2
1Center of Experimental Rheumatology, Department of Rheumatology, University Hospital Zurich, University of Zurich, Zurich, Switzerland.
Objectives:
To investigate the pro-phagocytic phenotype of macrophages in SSc and other rheumatic diseases by examining their activation, signalling pathways and treatment responses, with the goal of uncovering mechanisms that drive enhanced phagocytosis.
Methods:
Single-cell RNA sequencing (scRNA-seq) datasets (GSE138669/GSE212109) from skin and lung macrophages of healthy controls (HC) and SSc patients were analysed. Human monocyte-derived macrophages (hMDMs) were differentiated from CD14+ monocytes from HC, SSc, RA, PsA, and axSpA patients. In selected experiments, hMDMs were pretreated with 0.1 μM nintedanib. Phagocytic activity was quantified using pHrodo bioparticles and flow cytometry. Macrophage surface markers were evaluated by flow cytometry, NF-κB signalling by Western blot and gene expression by RT-qPCR.
Results:
Analysis of scRNA-seq datasets revealed a pro-phagocytic signature in SSc-affected organs. SSc macrophages, particularly the FCGR3Ahi cluster in skin, exhibited elevated expression of FCGR genes and enriched FcγR-mediated phagocytosis pathways, accompanied by pro-inflammatory markers. This phenotype extended to FCN1hi lung macrophages in SSc patients with interstitial lung disease, indicating a systemic pro-inflammatory and phagocytic profile. hMDMs from SSc, RA and PsA patients demonstrated enhanced phagocytic activity in vitro. Elevated FcγRI and FcγRII levels were identified as key drivers of increased phagocytic activity and subsequent IL-6-driven inflammation. Nintedanib showed reduction in FcγRI expression, suggesting its potential therapeutic benefit in attenuating the phagocytic process.
Conclusion:
This study highlights FcγR-expressing macrophages as drivers of phagocytosis and inflammatory responses in SSc. Dysregulated activation of these macrophages could lead to persistent inflammation and fibrosis in rheumatic diseases, highlighting new potential therapeutic approaches.
Insights
Macrophages in systemic sclerosis (SSc) and rheumatic diseases show enhanced phagocytosis, driven by Fc gamma receptors (FcγR). This heightened activity promotes inflammation and fibrosis, suggesting FcγR-targeted therapies may be beneficial.
Area of Science:
- Immunology
- Rheumatology
- Cell Biology
Background:
- Macrophages play a critical role in immune responses and tissue homeostasis.
- In systemic sclerosis (SSc) and other rheumatic diseases, aberrant macrophage function contributes to pathogenesis.
- Understanding macrophage activation and phagocytosis is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the pro-phagocytic phenotype of macrophages in SSc and related rheumatic diseases.
- To examine macrophage activation, signaling pathways, and treatment responses.
- To uncover mechanisms driving enhanced phagocytosis in these conditions.
Main Methods:
- Analysis of single-cell RNA sequencing datasets from SSc patients and healthy controls.
- In vitro differentiation and treatment of human monocyte-derived macrophages (hMDMs) from patients with SSc, RA, PsA, and axSpA.
- Quantification of phagocytic activity using flow cytometry and pHrodo bioparticles.
- Evaluation of macrophage surface markers, NF-κB signaling, and gene expression.
Main Results:
- SSc macrophages exhibit a pro-phagocytic signature with elevated expression of Fc gamma receptor (FcγR) genes and enriched FcγR-mediated phagocytosis pathways.
- Enhanced in vitro phagocytic activity was observed in hMDMs from SSc, RA, and PsA patients.
- Elevated FcγRI and FcγRII levels were identified as key drivers of increased phagocytosis and IL-6-driven inflammation.
- Nintedanib treatment reduced FcγRI expression, indicating potential therapeutic efficacy.
Conclusions:
- FcγR-expressing macrophages are key drivers of phagocytosis and inflammation in SSc.
- Dysregulated macrophage activation contributes to persistent inflammation and fibrosis in rheumatic diseases.
- Targeting FcγR-expressing macrophages presents a promising therapeutic strategy for SSc and related conditions.
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