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The immune response to BCG vaccination of newborns
1SATVI, Institute of Infectious Diseases and Molecular Medicine, UCT Health Sciences Faculty, Wernher & Beit S2.01, Anzio Road, Observatory, 7925 Cape Town, South Africa.Willem@rmh.uct.ac.za
Insights
This study identifies immune responses linked to protection against tuberculosis after Bacille Calmette Guerin (BCG) vaccination in infants. Understanding these immune correlates aids in developing new tuberculosis vaccines.
Area of Science:
- Immunology
- Vaccinology
- Infectious Diseases
Background:
- Tuberculosis (TB) remains a global health challenge, with the current Bacille Calmette Guerin (BCG) vaccine offering variable protection.
- Identifying immune correlates of protection is crucial for developing more effective TB vaccines.
Purpose of the Study:
- To identify immune responses associated with protection against tuberculosis following BCG vaccination in South African infants.
- To compare the immune profiles of BCG-vaccinated infants who developed TB disease with those who remained protected.
Main Methods:
- Analysis of whole blood samples from 5675 infants, comparing those who developed TB (unprotected) with those who remained healthy (protected).
- Eliciting recall immune responses to mycobacterial antigens and characterizing T-cell responses (CD8, CD4 FoxP3+) and cytokine profiles (interferon-gamma, interleukin-10).
Main Results:
- Preliminary findings show BCG induces a potent CD8 T-cell response and suggests the presence of BCG-induced regulatory CD4 T cells (FoxP3 mRNA expression).
- A distinct cytokine release pattern was observed: infants produced high levels of either interferon-gamma or interleukin-10, but not both.
Conclusions:
- Further investigation will determine if CD8 T-cell responses, regulatory CD4 T-cell responses, or specific cytokine patterns correlate with BCG-induced protection against tuberculosis.
- These findings contribute to understanding BCG vaccine efficacy and guide the development of novel TB vaccines.
Abstract:
The aim of this study is to identify immune correlates of protection against tuberculosis induced by the current vaccine, Bacille Calmette Guerin (BCG). This knowledge should be valuable for developing and testing novel tuberculosis vaccines. Blood from 5675 10-week-old South African infants, routinely vaccinated with BCG at birth, was collected, processed, and stored. Subsequently, infants who have developed tuberculosis disease-"not protected by the vaccine"-and infants who have remained healthy despite exposure to adults with tuberculosis-"protected by the vaccine"-have been identified. Recall immune responses to mycobacterial antigens in whole blood samples from the infants have been elicited; the next step will be to retrieve stored blood of "unprotected" and "protected" infants and compare immunity induced by BCG in the two groups. To guide the immune analysis, various pilot studies are being conducted to characterize the vaccination-induced host response. Preliminary results indicate that BCG does indeed induce a potent CD8 T-cell response, with cytokine-producing or cytotoxic potential, in infants. An induction of FoxP3 mRNA expression in some mycobacteria-stimulated whole-blood samples is also being found, which suggests the presence of BCG-induced regulatory CD4 T cells. Finally, stimulation of whole blood with mycobacterial antigens has resulted in a consistent pattern of cytokine release: significant numbers of infants make either large amounts of the effector cytokine interferon-gamma, or large amounts of the regulatory cytokine interleukin-10, but not both. Tests will, therefore, be made to determine whether CD8 or regulatory CD4 T-cell responses, as well as "outlier" cytokine responses, are associated with vaccination-induced protection against tuberculosis.
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