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Delivery of miR-146a to Ly6Chigh Monocytes Inhibits Pathogenic Bone Erosion in Inflammatory Arthritis
Meryem Ammari1,2, Jessy Presumey1,3, Clara Ponsolles1,4
1IRMB, INSERM, University of Montpellier, Montpellier, France.
Abstract:
Rationale: Monocytes play critical roles in the pathogenesis of arthritis by contributing to the inflammatory response and bone erosion. Among genes involved in regulating monocyte functions, miR-146a negatively regulates the inflammatory response and osteoclast differentiation of monocytes. It is also the only miRNA reported to differentially regulate the cytokine response of the two classical Ly6Chigh and non-classical Ly6Clow monocyte subsets upon bacterial challenge. Although miR-146a is overexpressed in many tissues of arthritic patients, its specific role in monocyte subsets under arthritic conditions remains to be explored. Methods: We analyzed the monocyte subsets during collagen-induced arthritis (CIA) development by flow cytometry. We quantified the expression of miR-146a in classical and non-classical monocytes sorted from healthy and CIA mice, as well as patients with rheumatoid arthritis (RA). We monitored arthritis features in miR-146a-/- mice and assessed in vivo the therapeutic potential of miR-146a mimics delivery to Ly6Chigh monocytes. We performed transcriptomic and pathway enrichment analyses on both monocyte subsets sorted from wild type and miR-146a-/- mice. Results: We showed that the expression of miR-146a is reduced in the Ly6Chigh subset of CIA mice and in the analogous monocyte subset (CD14+CD16-) in humans with RA as compared with healthy controls. The ablation of miR-146a in mice worsened arthritis severity, increased osteoclast differentiation in vitro and bone erosion in vivo. In vivo delivery of miR-146a to Ly6Chigh monocytes, and not to Ly6Clow monocytes, rescues bone erosion in miR-146a-/- arthritic mice and reduces osteoclast differentiation and pathogenic bone erosion in CIA joints of miR-146a+/+ mice, with no effect on inflammation. Silencing of the non-canonical NF-κB family member RelB in miR-146a-/- Ly6Chigh monocytes uncovers a role for miR-146a as a key regulator of the differentiation of Ly6Chigh, and not Ly6Clow, monocytes into osteoclasts under arthritic conditions. Conclusion: Our results show that classical monocytes play a critical role in arthritis bone erosion. They demonstrate the theranostics potential of manipulating miR-146a expression in Ly6Chigh monocytes to prevent joint destruction while sparing inflammation in arthritis.
Insights
MicroRNA-146a (miR-146a) deficiency exacerbates arthritis by promoting bone erosion via classical monocytes. Restoring miR-146a in these cells offers a targeted therapy for joint destruction in arthritis.
Area of Science:
- Immunology
- Molecular Biology
- Rheumatology
Background:
- Monocytes are key players in arthritis pathogenesis, driving inflammation and bone erosion.
- miR-146a is a negative regulator of monocyte inflammatory responses and osteoclast differentiation.
- The specific role of miR-146a in distinct monocyte subsets during arthritis remained unclear.
Purpose of the Study:
- To investigate the role of miR-146a in classical (Ly6Chigh) and non-classical (Ly6Clow) monocyte subsets during arthritis.
- To explore the therapeutic potential of modulating miR-146a in arthritis treatment.
Main Methods:
- Flow cytometry analysis of monocyte subsets in collagen-induced arthritis (CIA) and rheumatoid arthritis (RA) models.
- Quantification of miR-146a expression in sorted monocytes from healthy and arthritic subjects.
- Assessment of arthritis severity and bone erosion in miR-146a knockout mice and following miR-146a mimic delivery.
- Transcriptomic analysis of monocyte subsets from wild-type and miR-146a knockout mice.
Main Results:
- miR-146a expression was reduced in Ly6Chigh monocytes in CIA mice and RA patients.
- miR-146a deficiency aggravated arthritis, increased osteoclast differentiation, and worsened bone erosion.
- In vivo delivery of miR-146a mimics to Ly6Chigh monocytes rescued bone erosion without affecting inflammation.
- miR-146a regulates Ly6Chigh monocyte differentiation into osteoclasts, independent of the NF-κB pathway.
Conclusions:
- Classical monocytes are critical drivers of bone erosion in arthritis.
- Targeting miR-146a in Ly6Chigh monocytes presents a theranostic strategy to prevent joint destruction in arthritis while preserving anti-inflammatory functions.
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