Monkeypox virus-infected individuals mount comparable humoral immune responses as Smallpox-vaccinated individuals
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Published:2023-09-23
Issue:1
Volume:14
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Otter Ashley D.ORCID, Jones Scott, Hicks BethanyORCID, Bailey DanielORCID, Callaby Helen, Houlihan Catherine, Rampling Tommy, Gordon Nicola Claire, Selman Hannah, Satheshkumar Panayampalli S., Townsend Michael, Mehta Ravi, Pond Marcus, Jones Rachael, Wright Deborah, Oeser Clarissa, Tonge Simon, Linley Ezra, Hemingway Georgia, Coleman Tom, Millward Sebastian, Lloyd Aaron, Damon Inger, Brooks Tim, Vipond Richard, Rowe Cathy, Hallis Bassam
Abstract
AbstractIn early 2022, a cluster of monkeypox virus (MPXV) infection (mpox) cases were identified within the UK with no prior travel history to MPXV-endemic regions. Subsequently, case numbers exceeding 80,000 were reported worldwide, primarily affecting gay, bisexual, and other men who have sex with men (GBMSM). Public health agencies worldwide have offered the IMVANEX Smallpox vaccination to these individuals at high-risk to provide protection and limit the spread of MPXV. We have developed a comprehensive array of ELISAs to study poxvirus-induced antibodies, utilising 24 MPXV and 3 Vaccinia virus (VACV) recombinant antigens. Panels of serum samples from individuals with differing Smallpox-vaccine doses and those with prior MPXV infection were tested on these assays, where we observed that one dose of Smallpox vaccination induces a low number of antibodies to a limited number of MPXV antigens but increasing with further vaccination doses. MPXV infection induced similar antibody responses to diverse poxvirus antigens observed in Smallpox-vaccinated individuals. We identify MPXV A27 as a serological marker of MPXV-infection, whilst MPXV M1 (VACV L1) is likely IMVANEX-specific. Here, we demonstrate analogous humoral antigen recognition between both MPXV-infected or Smallpox-vaccinated individuals, with binding to diverse yet core set of poxvirus antigens, providing opportunities for future vaccine (e.g., mRNA) and therapeutic (e.g., mAbs) design.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
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