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Parental smoking impairs vaccine responses in children with atopic genotypes
Gareth Baynam1, Siew-Kim Khoo, Julie Rowe
1Telethon Institute for Child Health Research, Perth, Australia. garethb@ichr.uwa.edu.au <garethb@ichr.uwa.edu.au>
Insights
Parental smoking (PS) exposure combined with genetic variants linked to atopy can impair infant vaccine responses. These immune system effects are specific to PS-exposed infants and may impact vaccination strategies.
Area of Science:
- Immunology
- Environmental Health
- Genetics
Background:
- Gene-environment interactions are crucial for immune development but their impact on infant vaccine responses remains unclear.
- Genetic variants for atopy and parental smoking (PS) independently affect immune responses.
Purpose of the Study:
- To investigate if genetic variants associated with atopy interact with parental smoking (PS) to influence infant vaccine responsiveness.
Main Methods:
- Studied 200 infants with parental atopic history.
- Examined polymorphisms in IL-4, IL-4 receptor alpha (IL-4Ralpha), and IL-13 genes.
- Assessed immune responses to diphtheria/tetanus vaccination in relation to PS exposure.
Main Results:
- Parental smoking (PS) exposure unmasked negative associations between atopic alleles and vaccine outcomes.
- IL-4Ralpha 551 QR/QQ genotypes showed reduced IgG and T-cell responses to tetanus toxoid in PS-exposed infants.
- PS-exposed infants exhibited parallel reductions in polyclonal T-cell and innate immune responses.
Conclusions:
- Parental smoking (PS) potentiates the suppressive effects of immune response gene variants in children.
- These gene-environment interactions impair vaccine responses specifically in PS-exposed infants.
- Findings have implications for infant vaccination strategies and understanding environmental toxicology's impact on developing immune systems.
Background:
Gene-environment interactions play central roles in controlling postnatal maturation of immune function, but their effects on infant vaccine responses are unknown. Genetic variants associated with atopy and the environmental factor of exposure to parental smoking (PS) of tobacco independently alter immune responses.
Objective:
We sought to investigate the hypothesis that genetic variants associated with atopy and their interaction with PS influence infant vaccine responsiveness.
Methods:
In 200 infants with parental atopic history, relationships were sought between polymorphisms in the IL-4, IL-4 receptor alpha (IL-4Ralpha), and IL-13 genes; PS; and immune responses to diphtheria/tetanus vaccination.
Results:
Analyses stratified by PS unmasked negative associations between atopic alleles of these genes and vaccine outcomes. The most consistent involved the IL-4Ralpha 551 QR/QQ genotypes, which were associated with reduced IgG levels (P = .02) and T-cell responses (IFN-gamma, P = .002; IL-10, P = .01; 1L-13, P = .01; IL-5, P = .06) to tetanus toxoid and parallel reductions in polyclonal T-cell responses and innate immune responses in PS-exposed infants.
Conclusion:
PS potentiates suppressive effects of variants in immune response genes in children. These effects are not observed in the absence of this exposure. Ultimately, this finding might have implications for infant vaccination in countries with high smoking rates. It might also have broader implications in relation to environmental toxicology because it demonstrates specific mechanisms through which the developing immune system might be differentially sensitive to low-level toxicant exposures.
Clinical Implications:
PS interacts with genes associated with atopy to impair vaccine responses. These interactions might have vaccine design and public health implications.
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