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Published on: August 7, 2017
Early wheezing phenotypes and cognitive development of 3-yr-olds. Community-recruited birth cohort study
Wieslaw Jedrychowski1, Frederica P Perera, Jeffery Jankowski
1Chair of Epidemiology and Preventive Medicine, Coll. Med. Jagiellonian University, Krakow, Poland. myjedryc@cyf-kr.edu.pl
Insights
Young children with early wheezing symptoms, a risk factor for asthma, may experience cognitive deficits. This study found lower cognitive scores in children with wheezing, suggesting a link between respiratory issues and brain development.
Area of Science:
- Pediatrics
- Developmental Psychology
- Environmental Health
Background:
- Early wheezing in infants is a precursor to asthma, affecting a significant number of young children.
- Potential impacts of early respiratory conditions on neurodevelopment remain an area of active research.
- Understanding these associations is crucial for early intervention strategies.
Purpose of the Study:
- To investigate whether young children with early wheezing disorders, at high risk for asthma, exhibit cognitive deficits.
- To determine the relationship between wheezing phenotypes and cognitive development in 3-year-old children.
- To identify potential environmental and social factors influencing this association.
Main Methods:
- A birth cohort study tracked wheezing symptoms in the first two years of life.
- Cognitive status was assessed at age 3 using the Bayley Mental Development Index (MDI).
- Statistical analysis controlled for maternal education, gender, prenatal lead exposure, and environmental tobacco smoke (ETS).
Main Results:
- The MDI score showed an inverse correlation with the number of wheezing days, cord blood lead levels, number of siblings, and maternal smoking during pregnancy.
- Children with wheezing in the first year had a 2-point MDI deficit.
- Persistent wheezing was associated with a 4-point MDI deficit.
Conclusions:
- Early wheezing in young children is associated with cognitive deficits.
- Potential causes include Respiratory Syncytial Virus (RSV) infections or reduced oxygen supply due to lower lung function.
- These findings highlight the importance of monitoring cognitive development in children with early respiratory symptoms.
Abstract:
The main purpose of the study was to answer the question whether young children without clinical diagnosis of asthma but experiencing early wheezing disorders and therefore being at high risk of developing asthma may have cognitive deficits. In the ongoing birth cohort study wheezing symptoms were recorded postpartum over two first years of age and subsequently cognitive status of children at the age of 3 yr was assessed with the Bayley Mental Development Index (MDI). In the statistical analysis a wide range of modifying and confounding factors (maternal education, gender of children, prenatal exposure to lead and environmental tobacco smoke (ETS) were considered to assess the independent effect of early wheezing phenotypes on cognitive development of children. The MDI score correlated inversely with the number of wheezing days recorded over 24 months (r = -0.13, p = 0.007), lead cord blood concentration (r = -0.12, p = -0.02), number of siblings (r = -0.17, p = 0.0006) and the number of cigarettes smoked daily by other household members at home over the pregnancy period (r = -0.18, p = 0.0002). While the children who experienced wheezing over the first year of age showed deficit of 2 MDI scores (beta coeff. = -2.31, 95%CI: -4.63 to 0.02), those with persistent wheezing had the score deficit of 4 points (beta coeff. = -4.41, 95%CI: -8.27 to -0.55). To our knowledge, it is the first report in the iterature showing that early wheezing is associated the cognitive deficit in a community-recruited very young children. Observed cognitive deficit in early wheezers may be caused by RSV infections or can be related to lower lung function attributed to persistent wheezing, which reducing oxygen supply would affect rapidly developing brain.
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