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Specific Immunity to Cytomegalovirus in Pediatric Cardiac Transplantation
Marianne C Jacobsen1, Maria D I Manunta1, Emma S Pincott2
1The Hugh and Catherine Stevenson Centre for Childhood Infectious Diseases and Immunology, Infectious Diseases and Microbiology Unit, University College London - Institute of Child Health, London, United Kingdom.
Insights
Cytomegalovirus (CMV) infection impacts pediatric heart transplant recipients. CMV viremia correlates with specific immune responses and increased CD8+CD57+ granzyme B+ cells one year post-transplant.
Area of Science:
- Immunology
- Transplantation
- Virology
Background:
- Cytomegalovirus (CMV) infection is linked to endothelial dysfunction and graft damage in pediatric heart transplant recipients.
- While CMV-specific immune responses are crucial for viral control, data in pediatric heart transplantation is limited.
Purpose of the Study:
- To investigate the dynamics of CMV-specific immune responses in pediatric heart transplant recipients.
- To assess the relationship between CMV viremia and immune cell populations post-transplant.
Main Methods:
- Studied 28 pediatric heart transplant recipients for 1 year.
- Measured CMV T-cell responses (IFN-γ, TNF-α, IL-2) and circulating cytokines.
- Utilized Generalized Additive Models to analyze cell population dynamics over time.
Main Results:
- CMV-specific T cell-mediated responses were impaired in the first 8 weeks post-transplant.
- 25% of patients experienced CMV viremia; those treated with ganciclovir showed increased CD4+ and CD8+ T cells producing IFN-γ, and elevated CD8+CD57+ granzyme B+ cells from 12-24 weeks onwards.
- CMV viremia was associated with CMV-specific immune responses and increased CD8+CD57+ granzyme B+ cells at 1 year.
Conclusions:
- CMV viremia in pediatric heart transplant recipients is linked to specific immune responses and elevated CD8+CD57+ granzyme B+ cells one year post-transplant.
- Early CMV immune responses were not predictive of subsequent viremia.
- Further research is needed to determine if early immune responses correlate with endothelial and allograft damage.
Background:
Cytomegalovirus (CMV) infection is implicated in endothelial dysfunction and graft damage after pediatric heart transplantation. CMV-specific immune responses are thought to be necessary for CMV viral control but there is little data in pediatric heart transplantation.
Methods:
We studied 28 consecutive pediatric heart transplant recipients for 1 year posttransplant. CMV T-cell expressing IFN-γ, TNF-α, and IL-2 in response to ex vivo stimulation with CMV lysates or peptides were measured. Circulating cytokines were measured in plasma. Generalized Additive Models were applied to the data to model changes of cell population dynamics over time.
Results:
CMV-specific T cell-mediated responses were impaired in the first 8 weeks posttransplant. During this period, 25% of patients had CMV viremia, of which those with VLs of 10 000 or more CMV deoxyribonucleic acid copies/mL were given ganciclovir. In this group, the frequency of CD4+ and CD8+ T cells producing IFN-γ and the CD8+CD57+ granzyme B+ T-cell population increased at 12 to 24 weeks and remained elevated for the duration of the study.
Conclusions:
We have shown that CMV viremia is associated with CMV-specific immune responses and increased CD8+CD57+ granzyme B+ cells at 1 year posttransplant; however, early responses were not predictive of impending CMV viremia. It remains to be seen if the early CMV immune response detected is associated with endothelial and allograft damage, in light of previous studies demonstrating increased vasculopathy in pediatric patients with CMV viremia.
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