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A Mouse Model for Chikungunya: Young Age and Inefficient Type-I Interferon Signaling Are Risk Factors for Severe Disease

PLoS Pathogens · 2008 · Vol. 4(2) · pp. e29–e29
Thérèse CoudercFabrice ChrétienClémentine SchilteOlivier DissonMadly BrigitteFlorence Guivel‐BenhassineYasmina TouretG. BarauNadège CayetIsabelle SchuffeneckerPhilippe DesprèsFernando Arenzana‐SeisdedosAlain MichaultMatthew L. AlbertMarc Lecuit

Abstract

Chikungunya virus (CHIKV) is a re-emerging arbovirus responsible for a massive outbreak currently afflicting the Indian Ocean region and India. Infection from CHIKV typically induces a mild disease in humans, characterized by fever, myalgia, arthralgia, and rash. Cases of severe CHIKV infection involving the central nervous system (CNS) have recently been described in neonates as well as in adults with underlying conditions. The pathophysiology of CHIKV infection and the basis for disease severity are unknown. To address these critical issues, we have developed an animal model of CHIKV infection. We show here that whereas wild type (WT) adult mice are resistant to CHIKV infection, WT mouse neonates are susceptible and neonatal disease severity is age-dependent. Adult mice with a partially (IFN-alpha/betaR(+/-)) or totally (IFN-alpha/betaR(-/-)) abrogated type-I IFN pathway develop a mild or severe infection, respectively. In mice with a mild infection, after a burst of viral replication in the liver, CHIKV primarily targets muscle, joint, and skin fibroblasts, a cell and tissue tropism similar to that observed in biopsy samples of CHIKV-infected humans. In case of severe infections, CHIKV also disseminates to other tissues including the CNS, where it specifically targets the choroid plexuses and the leptomeninges. Together, these data indicate that CHIKV-associated symptoms match viral tissue and cell tropisms, and demonstrate that the fibroblast is a predominant target cell of CHIKV. These data also identify the neonatal phase and inefficient type-I IFN signaling as risk factors for severe CHIKV-associated disease. The development of a permissive small animal model will expedite the testing of future vaccines and therapeutic candidates.

Mosquito-borne diseases and controlViral Infections and VectorsHIV Research and TreatmentChikungunyamyalgiaVirologyArbovirusAlphavirus infectionImmunologyVirusBiologyTropismViral replication

MeSH terms

AdultAge FactorsAnimalsAnimals, NewbornChlorocebus aethiopsChikungunya virusDisease Models, AnimalFemaleHumansInfant, NewbornInterferon Type ILiverLongevityMaleMice, Inbred C57BL

Funding

  • Agence Nationale de la Recherche
  • Institut National de la Santé et de la Recherche Médicale
Citations
598
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References
Characterization of Reemerging Chikungunya Virus
PLoS Pathogens · 2007 · 489 citations
Chikungunya, an epidemic arbovirosis
The Lancet Infectious Diseases · 2007 · 1,101 citations
Vectors of Chikungunya virus in Senegal: current data and transmission cycles.
American Journal of Tropical Medicine and Hygiene · 1999 · 394 citations
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