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Updated: May 1, 2026

Isolation and Quantification of Zika Virus from Multiple Organs in a Mouse
Published on: August 15, 2019
Evaluation of a mouse model for the West Nile virus group for the purpose of determining viral pathotypes
John Bingham1, Jean Payne1, Jennifer Harper1
1Australian Animal Health Laboratory, Commonwealth Scientific and Industrial Research Organisation (CSIRO), 5 Portarlington Road, Geelong, Victoria 3220, Australia.
Abstract:
West Nile virus (WNV; family Flaviviridae; genus Flavivirus) group members are an important cause of viral meningoencephalitis in some areas of the world. They exhibit marked variation in pathogenicity, with some viral lineages (such as those from North America) causing high prevalence of severe neurological disease, whilst others (such as Australian Kunjin virus) rarely cause disease. The aim of this study was to characterize WNV disease in a mouse model and to elucidate the pathogenetic features that distinguish disease variation. Tenfold dilutions of five WNV strains (New York 1999, MRM16 and three horse isolates of WNV-Kunjin: Boort and two isolates from the 2011 Australian outbreak) were inoculated into mice by the intraperitoneal route. All isolates induced meningoencephalitis in different proportions of infected mice. WNVNY99 was the most pathogenic, the three horse isolates were of intermediate pathogenicity and WNVKUNV-MRM16 was the least, causing mostly asymptomatic disease with seroconversion. Infectivity, but not pathogenicity, was related to challenge dose. Using cluster analysis of the recorded clinical signs, histopathological lesions and antigen distribution scores, the cases could be classified into groups corresponding to disease severity. Metrics that were important in determining pathotype included neurological signs (paralysis and seizures), meningoencephalitis, brain antigen scores and replication in extra-neural tissues. Whereas all mice infected with WNVNY99 had extra-neural antigen, those infected with the WNV-Kunjin viruses only occasionally had antigen outside the nervous system. We conclude that the mouse model could be a useful tool for the assessment of pathotype for WNVs.
Insights
West Nile virus (WNV) strains vary in disease severity. A mouse model showed North American WNV caused severe neurological disease, while Australian WNV strains were less pathogenic, aiding pathotype assessment.
Area of Science:
- Virology
- Immunology
- Neurology
Background:
- West Nile virus (WNV) causes viral meningoencephalitis with varying pathogenicity globally.
- North American WNV strains are highly virulent, unlike less pathogenic Australian Kunjin virus strains.
Purpose of the Study:
- To characterize WNV disease in a mouse model.
- To identify pathogenetic features distinguishing WNV disease variation.
Main Methods:
- Five WNV strains were inoculated intraperitoneally into mice.
- Clinical signs, histopathology, and antigen distribution were analyzed using cluster analysis.
Main Results:
- WNVNY99 was most pathogenic; Australian WNV-Kunjin strains were least pathogenic.
- Disease severity correlated with neurological signs, meningoencephalitis, and extra-neural viral antigen presence.
- Infectivity depended on challenge dose, but pathogenicity did not.
Conclusions:
- A mouse model effectively differentiates WNV pathotypes.
- Extra-neural replication is a key factor in WNV pathogenicity.

