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Published on: January 27, 2023
Monocyte alterations in rheumatoid arthritis are dominated by preterm release from bone marrow and prominent
Biljana Smiljanovic1, Anna Radzikowska2, Ewa Kuca-Warnawin2
1Department of Rheumatology and Clinical Immunology, Charité Universitätsmedizin, Berlin, Germany.
Objective:
Rheumatoid arthritis (RA) accompanies infiltration and activation of monocytes in inflamed joints. We investigated dominant alterations of RA monocytes in bone marrow (BM), blood and inflamed joints.
Methods:
CD14+ cells from BM and peripheral blood (PB) of patients with RA and osteoarthritis (OA) were profiled with GeneChip microarrays. Detailed functional analysis was performed with reference transcriptomes of BM precursors, monocyte blood subsets, monocyte activation and mobilisation. Cytometric profiling determined monocyte subsets of CD14++CD16-, CD14++CD16+ and CD14+CD16+ cells in BM, PB and synovial fluid (SF) and ELISAs quantified the release of activation markers into SF and serum.
Results:
Investigation of genes differentially expressed between RA and OA monocytes with reference transcriptomes revealed gene patterns of early myeloid precursors in RA-BM and late myeloid precursors along with reduced terminal differentiation to CD14+CD16+monocytes in RA-PB. Patterns associated with tumor necrosis factor/lipopolysaccharide (TNF/LPS) stimulation were weak and more pronounced in RA-PB than RA-BM. Cytometric phenotyping of cells in BM, blood and SF disclosed differences related to monocyte subsets and confirmed the reduced frequency of terminally differentiated CD14+CD16+monocytes in RA-PB. Monocyte activation in SF was characterised by the predominance of CD14++CD16++CD163+HLA-DR+ cells and elevated concentrations of sCD14, sCD163 and S100P.
Conclusion:
Patterns of less mature and less differentiated RA-BM and RA-PB monocytes suggest increased turnover with accelerated monocytopoiesis, BM egress and migration into inflamed joints. Predominant activation in the joint indicates the action of local and primary stimuli, which may also promote adaptive immune triggering through monocytes, potentially leading to new diagnostic and therapeutic strategies.
Insights
Rheumatoid arthritis (RA) monocytes show altered differentiation and increased turnover in bone marrow and blood, suggesting migration to inflamed joints. Joint-activated monocytes may offer new diagnostic and therapeutic targets for RA.
Area of Science:
- Immunology
- Molecular Biology
- Rheumatology
Background:
- Rheumatoid arthritis (RA) involves monocyte infiltration and activation in joints.
- Understanding RA monocyte behavior in bone marrow (BM), blood, and joints is crucial.
Purpose of the Study:
- To investigate dominant alterations in RA monocytes.
- To compare RA monocytes with those from osteoarthritis (OA) patients.
Main Methods:
- GeneChip microarrays and functional analysis of CD14+ cells from RA and OA patients.
- Cytometric profiling of monocyte subsets (CD14++CD16-, CD14++CD16+, CD14+CD16+) in BM, peripheral blood (PB), and synovial fluid (SF).
- ELISAs to quantify activation markers in SF and serum.
Main Results:
- RA monocytes in BM and PB exhibit gene patterns of less mature myeloid precursors with reduced terminal differentiation.
- RA peripheral blood monocytes show less differentiation compared to RA bone marrow monocytes.
- Synovial fluid monocyte activation is characterized by specific subsets (CD14++CD16++CD163+HLA-DR+) and elevated markers (sCD14, sCD163, S100P).
Conclusions:
- Altered RA monocyte patterns suggest increased turnover, accelerated monocytopoiesis, and migration to inflamed joints.
- Predominant monocyte activation in joints indicates local stimuli, potentially triggering adaptive immunity.
- These findings may lead to novel diagnostic and therapeutic strategies for RA.
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