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Published on: July 7, 2017
Blocking interleukin 33 reduces joint, systemic, and lung inflammatory responses in the combined collagen-induced
Jill A Poole1, Jacob L Larsen1, Geoffrey M Thiele2
1Division of Allergy and Immunology, Department of Internal Medicine, University of Nebraska Medical Center, Omaha, Nebraska.
Abstract:
Therapies capable of resolving rheumatoid arthritis (RA)-associated lung disease, particularly in the setting of environmental exposures, are lacking. This study sought to determine whether blocking interleukin (IL)-33 in a murine model of RA-associated lung disease induced by combined collagen-induced arthritis (CIA) and repeated inhalant lipopolysaccharide (LPS) exposures could be advantageous. Arthritis prone male DBA/1J mice received CIA (vs saline) injections (days 1 and 21) plus intranasal LPS (100 ng) or saline daily for 4 weeks and were subsequently treated with 5 doses of anti-IL-33 (10 mg/kg) or isotype over 11 days. Anti-IL-33 therapy significantly (P < .05) mitigated several CIA+LPS-induced effects. Anti-IL-33 reduced arthritis inflammatory score by 76% and serum acute phase reactant pentraxin-2 by 70% and reversed weight loss induced by CIA+LPS coexposure. Anti-IL-33 reduced CIA+LPS-induced antimalondialdehyde acetaldehyde but not anticitrullinated autoantibodies in serum and reduced serum levels of inflammatory mediators. Lung cell infiltrates induced by coexposure, including neutrophils, activated lung macrophages, transitional monocytes-macrophages, monocytic-like cells, and dendritic cells, were reduced with anti-IL-33. Anti-IL-33 also reduced CIA+LPS-induced lung levels of chemokines involved in monocyte-macrophage recruitment and fibrotic/repair mediators collagen deposition, IL-33 expression, inflammatory CC motif chemokine receptor 2+ monocytes/macrophages, and airway Muc5b immunostaining induced by CIA+LPS were reduced with anti-IL-33. CIA+LPS-induced lung expression of post-translational modified autoantigens including citrullinated and malondialdehyde acetaldehyde and its common substrate, vimentin, was reduced with anti-IL-33 treatment. Blocking IL-33 was beneficial in hastening lung recovery after establishment of disease by coexposure to CIA+LPS and potentially represents a novel therapeutic approach in RA-associated lung disease. SIGNIFICANCE STATEMENT: Blocking the interleukin (IL)-33 signaling pathway after the establishment of, but not during the induction of, rheumatoid arthritis (RA)-associated lung disease, as modeled by coexposure of collagen-induced arthritis with repetitive inhalant endotoxin, demonstrated beneficial consequences in reducing inflammatory joint, systemic, and lung disease. Treatment with anti-IL-33 agents, particularly in men with a history of environmental exposures, may represent a novel approach to reduce disease burden in humans with established RA-lung disease, underscoring an important role for the IL-33 pathway.
Insights
Blocking interleukin-33 (IL-33) reduced inflammation and lung disease in a mouse model of rheumatoid arthritis (RA)-associated lung disease. This approach may offer a new therapy for RA-lung disease, especially for patients with environmental exposures.
Area of Science:
- Immunology
- Rheumatology
- Pulmonology
Background:
- Rheumatoid arthritis (RA)-associated lung disease lacks effective therapies, especially when linked to environmental factors.
- Interleukin-33 (IL-33) is implicated in inflammatory conditions, but its role in RA-lung disease requires further investigation.
Purpose of the Study:
- To evaluate the therapeutic potential of blocking IL-33 in a murine model of RA-associated lung disease.
- To assess the impact of anti-IL-33 therapy on joint inflammation, systemic markers, and lung pathology induced by collagen-induced arthritis (CIA) and lipopolysaccharide (LPS) exposure.
Main Methods:
- A murine model was established using collagen-induced arthritis (CIA) combined with repeated intranasal lipopolysaccharide (LPS) exposure.
- Mice were treated with anti-IL-33 or isotype control after disease induction.
- Arthritis scores, serum markers, autoantibodies, lung cell infiltration, chemokine levels, and fibrotic mediators were analyzed.
Main Results:
- Anti-IL-33 therapy significantly reduced arthritis inflammatory scores (76%) and serum pentraxin-2 levels (70%).
- Treatment reversed weight loss and decreased inflammatory mediators and autoantibodies related to malondialdehyde acetaldehyde.
- Anti-IL-33 mitigated lung inflammation by reducing immune cell infiltrates, chemokines, fibrotic mediators, and airway mucus production.
Conclusions:
- Blocking IL-33 after disease establishment proved beneficial in resolving RA-associated lung disease in this model.
- This suggests that targeting the IL-33 pathway is a promising therapeutic strategy for established RA-lung disease, particularly in individuals with environmental exposures.
- The findings highlight the critical role of IL-33 in the pathogenesis of RA-associated lung disease.
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