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Published on: September 20, 2024
Conserved CD4 T-cell responses correlate with antibody neutralization in solid organ transplant recipients after
Georgia Stavrakis1, Katerina Roznik1, Laila Stoddart2
1Department of Molecular Microbiology and Immunology, Johns Hopkins Bloomberg School of Public Health, Baltimore, MD, United States.
Introduction:
Vaccines against SARS-CoV-2 and influenza require reformulation due to viral evolution. It remains unclear how vaccination against evolving antigens influences T-cell responses and the impact of reformulation on T-cell responses to new variants in immunocompromised hosts. Solid organ transplant recipients (SOTRs) had significantly lower antibody levels following vaccination and required repeated boosting during the COVID-19 pandemic.
Methods:
With the introduction of the Omicron spike (S) to the bivalent mRNA vaccines in 2022, the relative contribution of T-cell responses cross-reactive for Omicron mutated S sequences was assessed via intracellular cytokine staining using peptide pools containing conserved or mutated S sequences.
Results:
S-specific CD4 T cells recognize both conserved and Omicron mutated S sequences pre- and post-bivalent vaccination, even in the absence of evidence of prior infection as detected by T-cell responses to a novel peptide pool. CD4 T-cell responses to both conserved and Omicron mutated sequences correlated with antibody pseudo-neutralization of BA.5 S. Importantly, pre-bivalent conserved S CD4 T-cell responses significantly correlated with antibody pseudo-neutralization of BA.5 S post-bivalent.
Discussion:
These results emphasize the importance of conserved and cross-reactive responses in vaccine immunogenicity, providing a mechanism through which repeated boosting enhances vaccine immunogenicity in SOTRs and other immunocompromised populations.
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