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Sclerostin inhibition promotes TNF-dependent inflammatory joint destruction
Corinna Wehmeyer1, Svetlana Frank1, Denise Beckmann1
1Institute of Experimental Musculoskeletal Medicine, University Hospital Muenster, 48149 Muenster, Germany.
Abstract:
Sclerostin, an inhibitor of the Wnt/β-catenin pathway, has anti-anabolic effects on bone formation by negatively regulating osteoblast differentiation. Mutations in the human sclerostin gene (SOST) lead to sclerosteosis with progressive skeletal overgrowth, whereas sclerostin-deficient (Sost(-/-)) mice exhibit increased bone mass and strength. Therefore, antibody-mediated inhibition of sclerostin is currently being clinically evaluated for the treatment of postmenopausal osteoporosis in humans. We report that in chronic TNFα (tumor necrosis factor α)-dependent arthritis, fibroblast-like synoviocytes constitute a major source of sclerostin and that either the lack of sclerostin or its antibody-mediated inhibition leads to an acceleration of rheumatoid arthritis (RA)-like disease in human TNFα transgenic (hTNFtg) mice with enhanced pannus formation and joint destruction. Inhibition of sclerostin also failed to improve clinical signs and joint destruction in the partially TNFα-dependent glucose-6-phosphate isomerase-induced arthritis mouse model, but ameliorated disease severity in K/BxN serum transfer-induced arthritis mouse model, which is independent of TNF receptor signaling, thus suggesting a specific role for sclerostin in TNFα signaling. Sclerostin effectively blocked TNFα- but not interleukin-1-induced activation of p38, a key step in arthritis development, pointing to a previously unrealized protective role of sclerostin in TNF-mediated chronic inflammation. The possibility of anti-sclerostin antibody treatment worsening clinical RA outcome under chronic TNFα-dependent inflammatory conditions in mice means that caution should be taken both when considering such treatment for inflammatory bone loss in RA and when using anti-sclerostin antibodies in patients with TNFα-dependent comorbidities.
Insights
Sclerostin, a Wnt/β-catenin inhibitor, normally protects against rheumatoid arthritis (RA) by blocking TNFα signaling. Inhibiting sclerostin may worsen RA, cautioning against its use in RA patients with TNFα-dependent conditions.
Area of Science:
- Bone biology
- Immunology
- Rheumatology
Background:
- Sclerostin inhibits bone formation and Wnt/β-catenin signaling.
- Sclerostin deficiency increases bone mass.
- Anti-sclerostin antibodies are explored for osteoporosis treatment.
Purpose of the Study:
- Investigate sclerostin's role in TNFα-dependent arthritis.
- Determine the effect of sclerostin inhibition on rheumatoid arthritis (RA)-like disease.
- Clarify sclerostin's involvement in TNFα signaling pathways in arthritis.
Main Methods:
- Utilized human TNFα transgenic (hTNFtg) mice and other arthritis mouse models.
- Examined fibroblast-like synoviocytes as a source of sclerostin.
- Assessed the impact of sclerostin deficiency and antibody-mediated inhibition on disease progression.
- Analyzed p38 activation in response to TNFα and IL-1 stimulation.
Main Results:
- Fibroblast-like synoviocytes are a major source of sclerostin in chronic TNFα-dependent arthritis.
- Sclerostin deficiency or inhibition accelerated RA-like disease in hTNFtg mice, worsening pannus formation and joint destruction.
- Sclerostin inhibition did not improve, but worsened, disease in partially TNFα-dependent models.
- Sclerostin ameliorated disease in a TNF receptor-independent model, indicating a specific role in TNFα signaling.
- Sclerostin blocked TNFα-induced, but not IL-1-induced, p38 activation.
Conclusions:
- Sclerostin plays a protective role in TNFα-mediated chronic inflammation and arthritis.
- Anti-sclerostin antibody treatment may exacerbate RA and inflammatory bone loss in TNFα-dependent conditions.
- Caution is advised when considering anti-sclerostin therapies for RA or in patients with TNFα-dependent comorbidities.
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