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Syrian Hamsters Model Does Not Reflect Human-like Disease After Aerosol Exposure to Encephalitic Alphaviruses

Overview
Journal Methods Protoc
Specialty General Medicine
Date 2024 May 28
PMID 38804336
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Abstract

Venezuelan (VEE), eastern (EEE), and western (WEE) equine encephalitis viruses are encephalitic New World alphaviruses that cause periodic epizootic and epidemic outbreaks in horses and humans that may cause severe morbidity and mortality. Currently there are no FDA-licensed vaccines or effective antiviral therapies. Each year, there are a limited number of human cases of encephalitic alphaviruses; thus, licensure of a vaccine or therapeutic would require approval under the FDA animal rule. Approval under the FDA animal rule requires the disease observed in the animal model to recapitulate what is observed in humans. Currently, initial testing of vaccines and therapeutics is performed in the mouse model. Unfortunately, alphavirus disease manifestations in a mouse do not faithfully recapitulate human disease; the VEEV mouse model is lethal whereas in humans VEEV is rarely lethal. In an effort to identify a more appropriate small animal model, we evaluated hamsters in an aerosol exposure model of encephalitic alphavirus infection. The pathology, lethality, and viremia observed in the infected hamsters was inconsistent with what is observed in NHP models and humans. These data suggest that hamsters are not an appropriate model for encephalitic alphaviruses to test vaccines or potential antiviral therapies.

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PMID: 38987937 PMC: 11528384. DOI: 10.1002/ame2.12471.

References
1.
Forrester N, Kenney J, Deardorff E, Wang E, Weaver S . Western Equine Encephalitis submergence: lack of evidence for a decline in virus virulence. Virology. 2008; 380(2):170-2. PMC: 2574696. DOI: 10.1016/j.virol.2008.08.012. View

2.
Vestergaard B, SCHERER W . An RNA viral infection of hamster testes and uteri resulting in orchitis and effects on fertility and reproduction. Am J Pathol. 1971; 64(3):541-56. PMC: 2047607. View

3.
Weaver S, Anishchenko M, Bowen R, Brault A, Estrada-Franco J, Fernandez Z . Genetic determinants of Venezuelan equine encephalitis emergence. Arch Virol Suppl. 2004; (18):43-64. DOI: 10.1007/978-3-7091-0572-6_5. View

4.
Roy C, Adams A, Wang E, Leal G, Seymour R, Sivasubramani S . A chimeric Sindbis-based vaccine protects cynomolgus macaques against a lethal aerosol challenge of eastern equine encephalitis virus. Vaccine. 2013; 31(11):1464-70. PMC: 3581708. DOI: 10.1016/j.vaccine.2013.01.014. View

5.
Dupuy L, Richards M, Ellefsen B, Chau L, Luxembourg A, Hannaman D . A DNA vaccine for venezuelan equine encephalitis virus delivered by intramuscular electroporation elicits high levels of neutralizing antibodies in multiple animal models and provides protective immunity to mice and nonhuman primates. Clin Vaccine Immunol. 2011; 18(5):707-16. PMC: 3122536. DOI: 10.1128/CVI.00030-11. View