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Dynamics of T-cell Responses Following COVID-19 mRNA Vaccination and Breakthrough Infection in Older Adults
Sneha Datwani1, Rebecca Kalikawe1, Francis Mwimanzi1
1Faculty of Health Sciences, Simon Fraser University, Burnaby, Canada.
Introduction:
While older adults generally mount weaker antibody responses to a primary COVID-19 vaccine series, T-cell responses remain less well characterized in this population. We compared SARS-CoV-2 spike-specific T-cell responses after 2- and 3-dose COVID-19 mRNA vaccination and subsequent breakthrough infection in older and younger adults.
Methods:
We quantified CD4+ and CD8+ T-cells reactive to overlapping peptides spanning the ancestral SARS-CoV-2 spike protein in 40 older adults (median age 79) and 50 younger health care workers (median age 39), all COVID-19 naive, using an activation-induced marker assay. T-cell responses were further assessed in 24 participants, including 8 older adults, who subsequently experienced their first SARS-CoV-2 breakthrough infection.
Results:
A third COVID-19 mRNA vaccine dose significantly boosted spike-specific CD4+ and CD8+ T-cell frequencies to above 2-dose levels in older and younger adults. T-cell frequencies did not significantly differ between older and younger adults after either dose. Multivariable analyses adjusting for sociodemographic, health, and vaccine-related variables confirmed that older age was not associated with impaired cellular responses. Instead, the strongest predictors of CD4+ and CD8+ T-cell frequencies post-third-dose were their corresponding post-second-dose frequencies. Breakthrough infection significantly increased both CD4+ and CD8+ T-cell frequencies, to comparable levels in older and younger adults. Exploratory analyses revealed an association between HLA-A*02:03 and higher post-vaccination CD8+ T-cell frequencies, which may be attributable to numerous strong-binding HLA-A*02:03-specific CD8+ T-cell epitopes in the spike protein.
Conclusion:
Older adults mount robust T-cell responses to 2- and 3-dose COVID-19 mRNA vaccination, which are further boosted following breakthrough infection.
Insights
Older adults show strong T-cell responses to COVID-19 mRNA vaccines, comparable to younger adults. Booster shots and breakthrough infections further enhance these vital cellular immune responses in the elderly.
Area of Science:
- Immunology
- Vaccinology
- Gerontology
Background:
- Antibody responses to COVID-19 vaccines are often weaker in older adults.
- T-cell responses in older adults post-vaccination are less understood.
- Characterizing cellular immunity is crucial for assessing vaccine effectiveness in aging populations.
Purpose of the Study:
- To compare SARS-CoV-2 spike-specific T-cell responses in older versus younger adults after 2- and 3-dose COVID-19 mRNA vaccination.
- To assess the impact of breakthrough SARS-CoV-2 infection on T-cell responses in older and younger individuals.
- To investigate factors influencing T-cell responses, including age and genetic factors like HLA type.
Main Methods:
- Quantified CD4+ and CD8+ T-cells reactive to SARS-CoV-2 spike protein peptides using an activation-induced marker assay.
- Compared T-cell frequencies in 40 older adults (median age 79) and 50 younger adults (median age 39) after primary vaccination series and booster.
- Assessed T-cell responses in participants who experienced breakthrough SARS-CoV-2 infection.
Main Results:
- A third mRNA vaccine dose significantly boosted CD4+ and CD8+ T-cell frequencies in both older and younger adults.
- No significant difference in T-cell frequencies was observed between older and younger adults after vaccination.
- Breakthrough infection substantially increased T-cell frequencies to comparable levels in both age groups.
- Older age was not associated with impaired cellular responses; prior T-cell levels were the strongest predictor of response post-booster.
Conclusions:
- Older adults mount robust T-cell responses to COVID-19 mRNA vaccination.
- Vaccine-induced T-cell immunity in older adults is comparable to younger adults.
- Breakthrough infections further enhance T-cell responses in older adults, indicating sustained immune protection.
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