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Published on: August 25, 2014
Prenatal Exposure to Tobacco and Offspring Neurocognitive Development in the Healthy Start Study
Brianna F Moore1, Allison L Shapiro2, Greta Wilkening3
1Department of Epidemiology, Colorado School of Public Health, Aurora, CO; Lifecourse Epidemiology of Adiposity and Diabetes (LEAD) Center, Colorado School of Public Health, Aurora, CO.
Insights
Prenatal tobacco exposure is linked to neurodevelopmental issues like fine motor skills and inhibitory control in children, even without prematurity or low birth weight. Further developmental screening is recommended for exposed children.
Area of Science:
- Neuroscience
- Developmental Psychology
- Public Health
Background:
- Prenatal exposure to tobacco is a significant public health concern.
- Its impact on neurocognitive development is well-documented, but often confounded by prematurity or low birth weight.
- This study specifically examines effects in term infants with adequate birth weight.
Purpose of the Study:
- To investigate the association between prenatal tobacco exposure and neurocognitive development.
- To assess outcomes in children born at term with appropriate birth weight.
- To identify potential developmental risks associated with maternal smoking during pregnancy.
Main Methods:
- Longitudinal study of mother-child pairs from birth to 6 years.
- Neurocognitive assessment using the Ages and Stages Questionnaire and the NIH Toolbox Cognition Battery.
- Maternal urinary cotinine levels measured to quantify prenatal tobacco exposure.
- Logistic and linear regression models used to analyze associations, controlling for covariates.
Main Results:
- Prenatal tobacco exposure was associated with higher odds of failing fine motor skills assessments (OR, 3.9; 95% CI, 1.5-10.3).
- Exposed children showed decreased inhibitory control (B: -3.0; 95% CI, -6.1 to -0.7).
- After accounting for postnatal exposure, the association with fine motor skills remained significant, but the link with inhibitory control did not.
Conclusions:
- Prenatal tobacco exposure can negatively impact neurocognitive development, specifically fine motor skills, even in the absence of preterm birth or low birth weight.
- Postnatal exposure may also play a role, but prenatal exposure shows a persistent effect on fine motor skills.
- Increased developmental screening is advised for children with prenatal tobacco exposure.
Objective:
To explore the associations between prenatal exposure to tobacco and neurocognitive development, in the absence of prematurity or low birth weight.
Study Design:
We followed mother-child pairs within Healthy Start through 6 years of age. Children were born at ≥37 weeks of gestation with a birth weight of ≥2500 g. Parents completed the Third Edition Ages and Stages Questionnaire (n = 246) and children completed a subset of the National Institutes of Health Toolbox Cognition Battery (n = 200). The Ages and Stages Questionnaire domains were dichotomized as fail/monitor and pass. Maternal urinary cotinine was measured at approximately 27 weeks of gestation. Separate logistic regression models estimated associations between prenatal exposure to tobacco (cotinine below vs above the limit of detection) and the Ages and Stages Questionnaire domains. Separate linear regression models estimated associations between prenatal exposure to tobacco and fully corrected T-scores for inhibitory control, cognitive flexibility, and receptive language, as assessed by the National Institutes of Health Toolbox. A priori covariates included sex, maternal age, maternal education, daily caloric intake during pregnancy, race/ethnicity, household income, maternal psychiatric disorders, and, in secondary models, postnatal exposure to tobacco.
Results:
Compared with unexposed offspring, exposed offspring were more likely to receive a fail/monitor score for fine motor skills (OR, 3.9; 95% CI, 1.5-10.3) and decreased inhibitory control (B: -3.0; 95% CI, -6.1 to -0.7). After adjusting for postnatal exposure, only the association with fine motor skills persisted.
Conclusions:
Prenatal and postnatal exposures to tobacco may influence neurocognitive development, in the absence of preterm delivery or low birth weight. Increased developmental screening may be warranted for exposed children.
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