TY - JOUR
T1 - MAIT and other innate-like T cells integrate adaptive immune responses to modulate interval-dependent reactogenicity to mRNA vaccines
AU - Amini, Ali
AU - Garner, Lucy C.
AU - Shaw, Robert H.
AU - Kelly, Neil Wrigley
AU - Adele, Sandra
AU - Skelly, Donal T.
AU - Dejnirattisai, Wanwisa
AU - Greenland, Melanie
AU - Lius, Xinxue
AU - Heslington, Amelia
AU - Hackstein, Carl Philipp
AU - Murray, Sam M.
AU - Vano, Cristina Riquelme
AU - Stafford, Lizzie
AU - Johnson, Sile
AU - Sayaf, Katia
AU - Pudjohartono, Maria Fransiska
AU - Clutterbucks, Elizabeth A.
AU - Conlon, Sagida Bibi Christopher P.
AU - Jeffery, Tim James Katie
AU - Kronsteiner, Barbara
AU - Mentzer, Alexander J.
AU - O'shea, Donal
AU - Ramasamy, Maheshi N.
AU - Screaton, Gavin R.
AU - Snape, Matthew D.
AU - Hogan, Andrew E.
AU - Barnes, Eleanor
AU - Lambe, Teresa
AU - Dunachie, Susanna J.
AU - Provine, Nicholas M.
AU - Klenerman, Paul
N1 - Publisher Copyright:
© 2025 the Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. no claim to original u.S. government Works.
PY - 2025/8
Y1 - 2025/8
N2 - 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.
AB - 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.
UR - https://www.scopus.com/pages/publications/105015011392
U2 - 10.1126/SCIIMMUNOL.ADU3337
DO - 10.1126/SCIIMMUNOL.ADU3337
M3 - Article
C2 - 40880519
AN - SCOPUS:105015011392
SN - 2470-9468
VL - 10
JO - Science Immunology
JF - Science Immunology
IS - 110
M1 - eadu3337
ER -