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Natural infection by Zika virus but not DNA vaccination consistently elicits antibodies that compete with two potently neutralising monoclonal antibodies targeting distinct epitopes

  • Teresa C. Smith
    ,
  • Daniel O. Espinoza
    ,
  • Yerun Zhu
    ,
  • Jaime A. Cardona-Ospina
    ,
  • Natalie M. Bowman
    ,
  • Sylvia Becker-Dreps
  • Rollins School of Public Health
    ,
  • Emory School of Medicine
    ,
  • Fundacion Universitaria Autonoma de las Américas
    ,
  • Instituto para la Investigación en Ciencias Biomédicas – Sci-Help
    ,
  • University of North Carolina at Chapel Hill
    ,
  • The University of North Carolina at Chapel Hill
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

104875

Journal (Volume, Issue Number)

eBioMedicine (Volume 98)

Publication milestones

  • Published - 12/2023

Publication status

Published - 12/2023

Publication IDs

  • Scopus: 85177087376
  • PubMed: 37983984

Abstract

Background: Autochthonous transmission of Zika virus (ZIKV) has been reported in 87 countries since 2015. Although most infections are mild, there is risk of Guillain-Barré syndrome and adverse pregnancy outcomes. Vaccines are urgently needed to prevent Zika, but sufficient understanding of humoral responses and tools to assess ZIKV-specific immunity are lacking. Methods: We developed a blockade-of-binding (BOB) ELISA using A9E and G9E, two strongly neutralising ZIKV-specific monoclonal antibodies, which do not react with dengue virus. Receiver operating characteristic curve analysis assessed A9E and G9E BOB serodiagnostic performance. BOB was then applied to samples from a surveillance cohort in Risaralda, Colombia, and phase 1 ZIKV vaccine trial samples, comparing results against traditional serologic tests. Findings: In the validation sample set (n = 120), A9E BOB has a sensitivity of 93.5% (95% CI: 79.3, 98.9) and specificity 97.8 (95% CI: 92.2, 99.6). G9E BOB had a sensitivity of 100% (95% CI: 89.0, 100.0) and specificity 100% (95% CI: 95.9, 100). Serum from natural infections consistently tested positive in these assays for up to one year, and reactivity tracks well with ZIKV infection status among sera from endemic areas with complicated flavivirus exposures. Interestingly, a leading ZIKV vaccine candidate elicited minimal BOB reactivity despite generating neutralising antibody responses. Interpretation: In conclusion, A9E and G9E BOB assays are sensitive and specific assays for detecting antibodies elicited by recent or remote ZIKV infections. Given the additional ability of these BOB assays to detect immune responses that target different epitopes, further development of these assays is well justified for applications including flavivirus surveillance, translational vaccinology research and as potential serologic correlates of protective immunity against Zika. Funding: R21 AI129532 (PI: S. Becker-Dreps), CDC BAA 2017-N-18041 (PI: A. M. de Silva), Thrasher Fund (PI: M. H. Collins), K22 AI137306 (PI: M. H. Collins).

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