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Tick-borne encephalitis virus vaccine-induced human antibodies mediate negligible enhancement of Zika virus infection in vitro and in a mouse model

  • James Duehr
  • , Silviana Lee
  • , Gursewak Singh
  • , Gregory A. Foster
  • , David Krysztof
  • , Susan L. Stramer
  • , Maria C. Bermúdez González
  • , Eva Menichetti
  • , Robert Geretschläger
  • , Christian Gabriel
  • , Viviana Simon
  • , Jean K. Lim
  • , Florian Krammer

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Recent reports in the scientific literature have suggested that antidengue virus (DENV) and anti-West Nile virus (WNV) immunity exacerbates Zika virus (ZIKV) pathogenesis in vitro and in vivo in mouse models. Large populations of immune individuals exist for a related flavivirus (tick-borne encephalitis virus [TBEV]), due to large-scale vaccination campaigns and endemic circulation throughout most of northern Europe and the southern Russian Federation. As a result, the question of whether anti-TBEV immunity can affect Zika virus pathogenesis is a pertinent one. For this study, we obtained 50 serum samples from individuals vaccinated with the TBEV vaccine FSME-IMMUN (Central European/Neudörflstrain) and evaluated their enhancement capacity in vitro using K562 human myeloid cells expressing CD32 and in vivo using a mouse model of ZIKV pathogenesis. Among the 50 TBEV vaccinee samples evaluated, 29 had detectable reactivity against ZIKV envelope (E) protein by enzyme-linked immunosorbent assay (ELISA), and 36 showed enhancement of ZIKV infection in vitro. A pool of the most highly reacting and enhanced samples resulted in no significant change in the morbidity/mortality of ZIKV disease in immunocompromised Stat2-/- mice. Our results suggest that humoral immunity against TBEV is unlikely to enhance Zika virus pathogenesis in humans. No clinical reports indicating that TBEV vaccinees experiencing enhanced ZIKV disease have been published so far, and though the epidemiological data are sparse, our findings suggest that there is little reason for concern. This study also displays a clear relationship between the phylogenetic distance between two flaviviruses and their capacity for pathogenic enhancement.

Original languageEnglish
Article numbere00011-18
JournalmSphere
Volume3
Issue number1
DOIs
StatePublished - 1 Jan 2018

Keywords

  • ADE
  • Antibody-dependent enhancement
  • TBEV
  • Tick-borne encephalitis virus
  • Zika

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