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Published on: December 9, 2015
Seasonal and Nonseasonal Longitudinal Variation of Immune Function
Rob Ter Horst1,2, Martin Jaeger1,2,3, Lisa van de Wijer1
1Department of Internal Medicine, Radboud University Medical Center, Nijmegen, Gelderland, the Netherlands.
Insights
Immune responses vary seasonally, influenced by environmental factors like infections and inflammation markers. Genetics and host factors also play significant roles in immune system variability.
Area of Science:
- Immunology
- Human Functional Genomics
- Environmental Health
Background:
- Immune responses exhibit significant inter-individual variability.
- Host and environmental factors contribute to immune system fluctuations within individuals.
Purpose of the Study:
- To conduct an extensive analysis of immune characteristics in 56 individuals over one year.
- To investigate seasonal and non-seasonal sources of variability in immune responses.
Main Methods:
- Characterized 102 immune cell subsets using flow cytometry.
- Quantified cytokine and chemokine production following stimulation with 20 different stimuli.
- Measured circulating inflammation markers and analyzed longitudinal data.
Main Results:
- Seasonal variability observed in inflammation markers (IL-18, IL-18 binding protein, resistin, α-1 antitrypsin).
- Cytokine production capacity showed seasonal changes, particularly after stimulation with influenza virus, Borrelia burgdorferi, and Escherichia coli.
- Moderate seasonality effects on immune cell counts (CD4+/CD8+ T cell subpopulations) and significant impact of age on IFN-γ and IL-22 production.
Conclusions:
- Seasonality is a key environmental factor impacting immune responses.
- Genetic factors contribute significantly to inter-individual immune variance.
- Understanding these factors can explain seasonal variations in immune-mediated diseases.
Abstract:
Different components of the immune response show large variability between individuals, but they also vary within the same individual because of host and environmental factors. In this study, we report an extensive analysis of the immune characteristics of 56 individuals over four timepoints in 1 single year as part of the Human Functional Genomics Project. We characterized 102 cell subsets using flow cytometry; quantified production of eight cytokines and two chemokines in response to 20 metabolic, bacterial, fungal, and viral stimuli; and measured circulating markers of inflammation. Taking advantage of the longitudinal sampling, both seasonal and nonseasonal sources of variability were studied. The circulating markers of inflammation IL-18, IL-18 binding protein, and resistin displayed clear seasonal variability, whereas the strongest effect was observed for α-1 antitrypsin. Cytokine production capacity also showed strong seasonal changes, especially after stimulation with the influenza virus, Borrelia burgdorferi, and Escherichia coli Furthermore, we observed moderate seasonality effects on immune cell counts, especially in several CD4+/CD8+ T cell subpopulations. Age of the volunteers was an important factor influencing IFN-γ and IL-22 production, which matched the strong impact of age on several T cell subsets. Finally, on average, genetics accounted for almost 50% of the interindividual variance not already explained by age, sex, and body mass index, although this varies strongly for different parameters. In conclusion, seasonality is an important environmental factor that influences immune responses, in addition to specific genetic and nongenetic host factors, and this may well explain the seasonal variation in the incidence and severity of immune-mediated diseases.
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