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An Adoptive Transfer Model of Rheumatoid Arthritis in Mice
Published on: June 6, 2025
Chikungunya virus arthritis in adult wild-type mice
Joy Gardner1, Itaru Anraku, Thuy T Le
1Queensland Institute of Medical Research, Australian Centre for International and Tropical Health, Brisbane, Australia.
Abstract:
Chikungunya virus is a mosquito-borne arthrogenic alphavirus that has recently reemerged to produce the largest epidemic ever documented for this virus. Here we describe a new adult wild-type mouse model of chikungunya virus arthritis, which recapitulates the self-limiting arthritis, tenosynovitis, and myositis seen in humans. Rheumatic disease was associated with a prolific infiltrate of monocytes, macrophages, and NK cells and the production of monocyte chemoattractant protein 1 (MCP-1), tumor necrosis factor alpha (TNF-alpha), and gamma interferon (IFN-gamma). Infection with a virus isolate from the recent Reunion Island epidemic induced significantly more mononuclear infiltrates, proinflammatory mediators, and foot swelling than did an Asian isolate from the 1960s. Primary mouse macrophages were shown to be productively infected with chikungunya virus; however, the depletion of macrophages ameliorated rheumatic disease and prolonged the viremia. Only 1 microg of an unadjuvanted, inactivated, whole-virus vaccine derived from the Asian isolate completely protected against viremia and arthritis induced by the Reunion Island isolate, illustrating that protection is not strain specific and that low levels of immunity are sufficient to mediate protection. IFN-alpha treatment was able to prevent arthritis only if given before infection, suggesting that IFN-alpha is not a viable therapy. Prior infection with Ross River virus, a related arthrogenic alphavirus, and anti-Ross River virus antibodies protected mice against chikungunya virus disease, suggesting that individuals previously exposed to Ross River virus should be protected from chikungunya virus disease. This new mouse model of chikungunya virus disease thus provides insights into pathogenesis and a simple and convenient system to test potential new interventions.
Insights
A new mouse model mimics human chikungunya virus disease, revealing key inflammatory responses. A single vaccine dose protected against different strains, suggesting broad immunity against chikungunya virus.
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Chikungunya virus (CHIKV) causes mosquito-borne arthrogenic alphavirus disease.
- Recent epidemics highlight the need for better disease models and interventions.
Purpose of the Study:
- To develop and characterize an adult wild-type mouse model for chikungunya virus arthritis.
- To investigate the pathogenesis of CHIKV infection and evaluate potential vaccines and therapies.
Main Methods:
- Developed an adult wild-type mouse model of CHIKV arthritis.
- Analyzed inflammatory infiltrates (monocytes, macrophages, NK cells) and mediator production (MCP-1, TNF-alpha, IFN-gamma).
- Compared CHIKV isolates from different epidemics and tested vaccine efficacy and interferon-alpha (IFN-alpha) treatment.
Main Results:
- The mouse model recapitulated self-limiting arthritis, tenosynovitis, and myositis.
- Reunion Island CHIKV isolate induced more severe inflammation than an older Asian isolate.
- Macrophage depletion ameliorated disease but prolonged viremia.
- A low dose of an inactivated whole-virus vaccine provided complete protection against homologous and heterologous strains.
- IFN-alpha treatment was effective only when administered before infection.
Conclusions:
- The new mouse model offers insights into CHIKV pathogenesis and serves as a platform for intervention testing.
- CHIKV vaccine-induced protection is strain-specific and effective at low doses.
- Interferon-alpha is not a viable therapeutic option for established chikungunya virus disease.
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