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Patterns of immune development in urban preschoolers with recurrent wheeze and/or atopy
James E Gern1, Agustin Calatroni2, Katy F Jaffee2
1University of Wisconsin School of Medicine and Public Health, Madison, Wis.
Insights
Early life environmental exposures in urban homes influence immune responses. These cytokine responses are linked to the development of allergic diseases and recurrent wheezing in children.
Area of Science:
- Environmental health
- Immunology
- Pediatric allergy
Background:
- Disadvantaged urban children exhibit high rates of allergic diseases and wheezing.
- These conditions are linked to type 2-biased immune responses.
Purpose of the Study:
- To investigate how early-life environmental exposures impact cytokine responses.
- To determine the relationship between these responses and the development of recurrent wheezing and allergic sensitization.
Main Methods:
- A birth cohort of 560 urban families was established.
- Cytokine responses were measured in blood samples from birth to 3 years.
- Exposures to allergens and endotoxin were assessed alongside clinical outcomes.
Main Results:
- Allergen exposure (cockroach, mouse, dust mite) correlated with enhanced cytokine responses at age 3.
- Reduced lipopolysaccharide (LPS)-induced IL-10 at birth predicted recurrent wheeze.
- Specific cytokine responses at birth were associated with atopy (allergic sensitization).
Conclusions:
- Urban home exposures to allergens and endotoxin stimulate early-life cytokine development.
- Cytokine responses to microbial and viral stimuli are associated with allergic sensitization and recurrent wheeze.
Background:
Disadvantaged urban children have high rates of allergic diseases and wheezing, which are diseases associated with type 2-biased immunity.
Objective:
We sought to determine whether environmental exposures in early life influence cytokine responses that affect the development of recurrent wheezing illnesses and allergic sensitization.
Methods:
A birth cohort of 560 urban families was recruited from neighborhoods with high rates of poverty, and 467 (83%) children were followed until 3 years of age. Cytokine responses were measured in blood cell samples obtained at birth (cord blood) and ages 1 and 3 years. Cytokine responses were examined in relation to personal characteristics and environmental exposures to allergens and endotoxin and to the development of allergic sensitization and recurrent wheeze assessed at age 3 years.
Results:
Cytokine responses generally increased with age, but responses at birth were poorly predictive for those at ages 1 and 3 years. Exposure to certain allergens (cockroach, mouse, dust mite) was significantly associated with enhanced cytokine responses at age 3 years, including IFN-α and IL-10 responses to certain stimulants and responses to phytohemagglutinin. Regarding the clinical outcomes, reduced LPS-induced IL-10 responses at birth were associated with recurrent wheeze. In contrast, reduced respiratory syncytial virus-induced IL-8 responses and increased 5'-cytosine-phosphate-guanine-3' (CpG)-induced IL-12p40 and allergen-induced IL-4 responses were associated with atopy.
Conclusions:
These findings suggest that diverse biologic exposures, including allergens and endotoxin, in urban homes stimulate the development of cytokine responses in early life, and that cytokine responses to specific microbial and viral stimuli are associated with the development of allergic sensitization and recurrent wheeze.
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