COVID-19 vaccination induces distinct T-cell responses in pediatric solid organ transplant recipients and
Katerina Roznik1,2, Jiashu Xue2, Georgia Stavrakis1,2
1Johns Hopkins Bloomberg School of Public Health, Department of Molecular Microbiology and Immunology, Baltimore, MD, USA.
Insights
Pediatric solid organ transplant recipients (pSOTRs) show robust antibody responses to COVID-19 mRNA vaccines, similar to healthy children. However, their T-cell responses are altered, suggesting potential benefits from additional vaccine doses for sustained protection.
Area of Science:
- Immunology
- Vaccinology
- Pediatric Medicine
Background:
- Adult solid organ transplant recipients (SOTRs) have attenuated immune responses to COVID-19 vaccines.
- The immune response to COVID-19 mRNA vaccines in pediatric SOTRs (pSOTRs) is not well understood.
- T-cell responses may be crucial for defense in SOTRs with suboptimal antibody production due to SARS-CoV-2 evolution.
Purpose of the Study:
- To assess anti-SARS-CoV-2 IgG titers, surrogate neutralization, and spike (S)-specific T-cell responses to COVID-19 mRNA vaccines in pSOTRs compared to healthy pediatric siblings (pHCs).
- To evaluate the impact of bivalent vaccine doses on immune responses in pSOTRs.
- To compare vaccine responses in pSOTRs with those reported in adult SOTRs.
Main Methods:
- Assessed anti-SARS-CoV-2 IgG titers and surrogate neutralization.
- Measured spike (S)-specific CD4+ and CD8+ T-cell responses, including cytokine production (IL-2, TNF, IFN-γ).
- Compared responses in pSOTRs and pHCs before and after bivalent vaccination.
Main Results:
- pSOTRs demonstrated significant humoral responses to ancestral and Omicron subvariants, comparable to pHCs and superior to adult SOTRs.
- pSOTRs exhibited limited S-specific CD8+ T-cell responses.
- pSOTRs showed qualitatively distinct CD4+ T-cell responses, with lower IFN-γ production compared to pHCs.
- Bivalent vaccination boosted humoral responses in some pSOTRs but did not alter CD4+ T-cell cytokine profiles.
Conclusions:
- COVID-19 mRNA vaccination elicits comparable antibody responses in pSOTRs and pHCs.
- pSOTRs have altered T-cell responses, particularly CD4+ T cells, with unclear protective implications.
- Additional vaccine doses may be necessary for pSOTRs to maintain protective antibody titers due to their distinct T-cell profiles.
Abstract:
Immune responses to COVID-19 vaccination are attenuated in adult solid organ transplant recipients (SOTRs) and additional vaccine doses are recommended for this population. However, whether COVID-19 mRNA vaccine responses are limited in pediatric SOTRs (pSOTRs) compared to immunocompetent children is unknown. Due to SARS-CoV-2 evolution and mutations that evade neutralizing antibodies, T cells may provide important defense in SOTRs who mount poor humoral responses. Therefore, we assessed anti-SARS-CoV-2 IgG titers, surrogate neutralization, and spike (S)-specific T-cell responses to COVID-19 mRNA vaccines in pSOTRs and their healthy siblings (pHCs) before and after the bivalent vaccine dose. Despite immunosuppression, pSOTRs demonstrated humoral responses to both ancestral strain and Omicron subvariants following the primary ancestral strain monovalent mRNA COVID-19 series and multiple booster doses. These responses were not significantly different from those observed in pHCs and significantly higher six months after vaccination than responses in adult SOTRs two weeks post-vaccination. However, pSOTRs mounted limited S-specific CD8+ T-cell responses and qualitatively distinct CD4+ T-cell responses, primarily producing IL-2 and TNF with less IFN-γ production compared to pHCs. Bivalent vaccination enhanced humoral responses in some pSOTRs but did not shift the CD4+ T-cell responses toward increased IFN-γ production. Our findings indicate that S-specific CD4+ T cells in pSOTRs have distinct qualities with unknown protective capacity, yet vaccination produces cross-reactive antibodies not significantly different from responses in pHCs. Given altered T-cell responses, additional vaccine doses in pSOTRs to maintain high titer cross-reactive antibodies may be important in ensuring protection against SARS-CoV-2.
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