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Abstract

Varicella zoster virus (VZV) is a neurotropic alphaherpesvirus and the causative agent of varicella (chickenpox) in humans. Following primary infection, VZV establishes latency in the sensory ganglia and can reactivate to cause herpes zoster, more commonly known as shingles, which causes significant morbidity, and on rare occasions mortality, in the elderly. Because VZV infection is highly restricted to humans, the development of a reliable animal model has been challenging, and our understanding of VZV pathogenesis remains incomplete. As an alternative, infection of rhesus macaques with the homologous simian varicella virus (SVV) recapitulates the hallmarks of VZV infection and thus constitutes a robust animal model to provide critical insights into VZV pathogenesis and the host antiviral response. In this model, SVV infection results in the development of varicella during primary infection, generation of an adaptive immune response, establishment of latency in the sensory ganglia, and viral reactivation upon immune suppression. In this review, we discuss our current knowledge about host and viral factors involved in the establishment of SVV latency and reactivation as well as the important role played by T cells in SVV pathogenesis and antiviral immunity.

Original languageEnglish
Article number3170
JournalFrontiers in Microbiology
Volume9
DOIs
StatePublished - Mar 29 2018

Bibliographical note

Publisher Copyright:
© Copyright © 2018 Sorel and Messaoudi.

Funding

Funding. This work was supported by NIH award 1UM01AR065705.

FundersFunder number
National Institutes of Health (NIH)1UM01AR065705

    Keywords

    • herpesvirus
    • non-human primates
    • shingles
    • simian varicella virus
    • varicella zoster virus
    • viral latency
    • viral reactivation

    ASJC Scopus subject areas

    • Microbiology
    • Microbiology (medical)

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