Impact of Pre-Existing Adenovirus Immunity on Vaccine Immunity Induced by ChAdOx1 nCoV-19 in Immunodeficient Patients 2330644

E Ernest Aguinam (Wyss Institute for Biologically Inspired Engineering, Harvard University) A Andrew Chan (Massachusetts General Hospital, Boston, Massachusetts, United States) A Angalee Nadesalingam (University of Cambridge) G George Carnell (University of Nottingham) B Benedikt Asbach (University of Regensburg) H Helen Gronlund (Royal Papworth Hospital, Cambridge) J Jessica Gronlund (Royal Papworth Hospital, Cambridge) J Javier Castillo-O Castillo-Olivares (Coalition for Epidemic Preparedness Innovations) R Ralf Wagner B Barbara Blacklaws (University of Cambridge) H Helen Baxendale (Royal Papworth Hospital) J Jonathan Heeney (University of Cambridge)

Abstract

Abstract Introduction Chimpanzee adenovirus—vectored COVID-19 vaccines, including ChAdOx1 nCoV-19 (nCoV-19), were selected in part due to low seroprevalence in humans. However, the impact of pre-existing immunity to human adenoviruses on immune responses to these vaccines remains incompletely understood. We investigated immunological cross-reactivity between ChAdOx1 and human adenovirus type 5 (HuAd5) and tested the hypothesis that pre-existing HuAd5-specific T cells may enhance SARS-CoV-2 spike-specific T cell responses following nCoV-19 vaccination in antibody-deficient individuals. Methods We analyzed samples from healthcare workers and immunodeficient patients vaccinated with either nCoV-19 or BNT162b2. HuAd5 hexon-specific T cells responses were assessed using IFN-γ ELISpot and flow cytometry. Anti-HuAd5 heron antibodies were measured using Luminex for IgG and a GFP-expressing HuAd5 neutralization assay for neutralizing activity. Findings from the current study were compared with previously published COVID-19 vaccine response data in these cohorts. Results We observed significant T cell and antibody cross-reactivity between ChAdOx1 and HuAd5. In immunodeficient individuals vaccinated with nCoV-19 HuAd5 hexon-specific T cell frequencies were positively associated with SARS-CoV-2 spike-specific T cell responses, an association not observed in BNT162b2 recipients. Conversely, higher anti-HuAd5 hexon antibody levels were inversely correlated with spike-specific T cell responses in the nCoV-19 cohort. Conclusion These findings support a model in which heterologous pre-existing adenovirus-specific T cell immunity contributes to enhanced spike-specific T cell responses following adenovirus-vectored vaccination in antibody deficient individuals. This bystander T cell effect provides an explanation for the observation in several studies of higher T cells response to adenovirus-vectored COVID-19 vaccines compared to mRNA vaccines in immunodeficient or elderly patients. Funding Source NIHR/UKRI grant (COV0170) Humoral Immune Correlates of COVID-19 (HICC), Cambridge Commonwealth, European & International Trust (Cambridge Trust) Topic Categories Vaccines and Immunotherapy (VAC)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (12)

E

Ernest Aguinam

Wyss Institute for Biologically Inspired Engineering, Harvard University

A

Andrew Chan

Massachusetts General Hospital, Boston, Massachusetts, United States

A

Angalee Nadesalingam

University of Cambridge

G

George Carnell

University of Nottingham

B

Benedikt Asbach

University of Regensburg

H

Helen Gronlund

Royal Papworth Hospital, Cambridge

J

Jessica Gronlund

Royal Papworth Hospital, Cambridge

J

Javier Castillo-O Castillo-Olivares

Coalition for Epidemic Preparedness Innovations

R

Ralf Wagner

B

Barbara Blacklaws

University of Cambridge

H

Helen Baxendale

Royal Papworth Hospital

J

Jonathan Heeney

University of Cambridge