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Proinflammatory Differentiation of Macrophages Through Microparticles That Form Immune Complexes Leads to T- and
Catalina Burbano1,2, Juan Villar-Vesga1, Gloria Vásquez1
1Grupo de Inmunología Celular e Inmunogenética, Facultad de Medicina, Instituto de Investigaciones Médicas, Universidad de Antioquia UdeA, Medellin, Colombia.
Abstract:
Patients with rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE) demonstrate increased circulating microparticles (MP). These vesicles, primarily those that form immune complexes (MP-IC), may activate monocytes. We evaluated the effect of MP and MP-IC in the differentiation of monocytes to macrophages (monocyte-derived macrophages; MDM) and for consequences in autologous lymphocyte activation. Monocytes from healthy controls (HC) and patients with RA and SLE that differentiated into MDM in the presence of MP-IC showed a proinflammatory (M1-like) profile, which was more evident using MP-IC from patients with RA than those from patients with SLE. Notably, MDM from HC and patients with RA that differentiated with MP-IC were more prone to M1-like profile than those from patients with SLE. In HC and patients with RA, monocyte differentiation using MP-IC decreased the frequency of MDM that bound/internalized latex beads. The M1-like profile did not completely revert following IL-4 treatment. The effect of M1-like MDM on T lymphocytes stimulated with phytohemagglutinin was further evaluated. MDM differentiated with MP enhanced the proliferation of T cells obtained from patients with RA compared with those differentiated with MP-IC or without vesicles. Neither MP nor MP-IC induced interferon (IFN)-γ+ and tumor necrosis factor (TNF)-α+ T cells in patients with RA. Conversely, unlike MDM differentiated with or without MP, MP-IC enhanced the proliferation and increased the frequencies of IFN-γ+CD4+ T, TNF-α+CD4+ T, and IFN-γ+CD8+ T cells in patients with SLE. The co-culture of B cells with MDM obtained from patients with RA and SLE and differentiated with MP-IC increased the expression of B-cell activation markers and prevented B lymphocyte death. Strikingly, only for patients with SLE, these responses seemed to be associated with a significant increase in B-cell activating factor levels, high plasmablast frequency and immunoglobulin production. These results showed that MP-IC from patients with systemic autoimmune diseases favored the polarization of MDM into a proinflammatory profile that promotes T-cell activation, and additionally induced B-cell activation and survival. Therefore, the effect of MP-IC in mononuclear phagocytes may be an important factor for modulating adaptive responses in systemic autoimmune diseases.
Insights
Microparticles with immune complexes (MP-IC) from autoimmune disease patients promote pro-inflammatory macrophages. These activated macrophages enhance T-cell responses and B-cell survival, contributing to systemic autoimmune disease progression.
Area of Science:
- Immunology
- Cell Biology
- Rheumatology
Background:
- Patients with rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE) exhibit elevated circulating microparticles (MP), particularly immune complex-containing microparticles (MP-IC).
- These MP-IC may play a role in activating monocytes, a key component of the immune system.
Purpose of the Study:
- To investigate the impact of MP and MP-IC on monocyte differentiation into macrophages (MDM).
- To assess the consequences of MP-IC-induced MDM on autologous lymphocyte activation in patients with RA and SLE.
Main Methods:
- Monocytes from healthy controls (HC), RA, and SLE patients were differentiated into MDM in the presence of MP or MP-IC.
- The resulting MDM were analyzed for their inflammatory profile (M1-like).
- The effects of MDM on T-cell proliferation and cytokine production, as well as B-cell activation and survival, were evaluated.
Main Results:
- MP-IC induced a pro-inflammatory (M1-like) profile in MDM from HC, RA, and SLE patients, more pronounced with RA-derived MP-IC.
- MDM differentiated with MP-IC showed reduced phagocytic capacity for latex beads in HC and RA patients.
- MP-IC-conditioned MDM enhanced T-cell proliferation and activation markers in SLE patients, and promoted B-cell activation and survival in both RA and SLE patients, with a notable increase in B-cell activating factor and immunoglobulin production in SLE.
Conclusions:
- MP-IC from systemic autoimmune diseases drive MDM towards a pro-inflammatory phenotype.
- This MDM polarization promotes T-cell activation and enhances B-cell survival and activation, suggesting a significant role in modulating immune responses within systemic autoimmune diseases.
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