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MAIT and other innate-like T cells integrate adaptive immune responses to modulate interval-dependent reactogenicity to mRNA vaccines

  • Ali Amini
  • , Lucy C. Garner
  • , Robert H. Shaw
  • , Neil Wrigley Kelly
  • , Sandra Adele
  • , Donal T. Skelly
  • , Wanwisa Dejnirattisai
  • , Melanie Greenland
  • , Xinxue Lius
  • , Amelia Heslington
  • , Carl Philipp Hackstein
  • , Sam M. Murray
  • , Cristina Riquelme Vano
  • , Lizzie Stafford
  • , Sile Johnson
  • , Katia Sayaf
  • , Maria Fransiska Pudjohartono
  • , Elizabeth A. Clutterbucks
  • , Sagida Bibi Christopher P. Conlon
  • , Tim James Katie Jeffery
  • Barbara Kronsteiner, Alexander J. Mentzer, Donal O'shea, Maheshi N. Ramasamy, Gavin R. Screaton, Matthew D. Snape, Andrew E. Hogan, Eleanor Barnes, Teresa Lambe, Susanna J. Dunachie, Nicholas M. Provine, Paul Klenerman
  • Nuffield Department of Medicine
  • Oxford University Hospitals NHS Foundation Trust
  • University of Oxford Medical Sciences Division
  • Department of Dermatology, St. Vincent University Hospital
  • Formerly Technical University of Munich
  • Maynooth University
  • Oxford NIHR Biomedical Research Centre
  • Oxford University Clinical Academic Graduate School
  • Children’s Health Ireland
  • Mahidol University

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)

Abstract

Adenoviral (Ad) vectors and mRNA vaccines exhibit distinct patterns of immune responses and reactogenicity, but underpinning mechanisms remain unclear. We longitudinally compared homologous ChAdOx1 nCoV-19 and BNT162b2 vaccination, focusing on cytokine-responsive innate-like lymphocytes-mucosal-associated invariant T (MAIT) cells and Vδ2+γδ T cells-which sense and tune innate-adaptive cross-talk. Ad priming elicited robust type I interferon (IFN)-mediated innate-like T cell activation, augmenting T cell responses (innate-to-adaptive signaling), which was dampened at boost by antivector immunity. Conversely, mRNA boosting enhanced innate-like responses, driven by prime-induced spike-specific memory T cell-derived IFN-y (adaptive-to-innate signal-ing). Extending the dosing interval dampened inflammation at boost because of waning T cell memory. In a separate vaccine trial, preboost spike-specific T cells predicted severe mRNA reactogenicity regardless of the priming platform or interval. Overall, bidirectional innate-like and adaptive cross-talk, and IFN-y-licensed innate-like T cells, orchestrate interval-dependent early vaccine responses, suggesting modifiable targets for safer, more effective regimens.

Original languageEnglish
Article numbereadu3337
JournalScience Immunology
Volume10
Issue number110
DOIs
Publication statusPublished - Aug 2025

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