Sensitive windows of per- and polyfluoroalkyl substances exposure and children's intelligence quotient
Yanan Xing1, Hong Gan2, Dihui Xu3
1Key Laboratory of Environmental Health Impact Assessment of Emerging Contaminants, Ministry of Ecology and Environment, School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China; Key Laboratory of Environmental Health Impact Assessment of Emerging Contaminants, Ministry of Ecology and Environment, Shanghai Academy of Environmental Sciences, Shanghai 200233, China; Institute of Environmental Health, Shanghai Jiao Tong University, Shanghai 200240, China.
Insights
Childhood exposure to certain per- and polyfluoroalkyl substances (PFAS) may impact boys' cognitive skills. Prenatal PFAS exposure, however, showed different effects in girls, highlighting sex-specific neurodevelopmental impacts.
Area of Science:
- Environmental Health
- Neuroscience
- Toxicology
Background:
- Per- and polyfluoroalkyl substances (PFAS) are environmental contaminants linked to neurodevelopmental issues.
- Critical windows of susceptibility to PFAS during development are not well-defined.
- Understanding these windows is crucial for public health interventions.
Purpose of the Study:
- To identify critical windows of neurodevelopmental susceptibility to PFAS exposure.
- To investigate sex-specific associations between PFAS exposure and cognitive function in children.
- To evaluate the impact of PFAS exposure across prenatal and childhood periods on intelligence quotient (IQ).
Main Methods:
- Longitudinal study of 572 mother-child pairs.
- Assessed PFAS exposure in maternal serum (early, mid, late pregnancy), cord serum, and child serum (4-6 years).
- Measured children's IQ using the Wechsler Preschool and Primary Scale of Intelligence (WPPSI-IV, CN).
Main Results:
- Childhood PFAS exposure in boys was associated with reduced visuospatial reasoning and processing speed.
- Prenatal exposure to PFOA and PFHxS in mothers was linked to enhanced verbal comprehension in girls.
- Findings suggest sex-specific effects of PFAS on neurodevelopment, with boys more sensitive to childhood exposure and girls to prenatal exposure.
Conclusions:
- The timing and sex of the child significantly modify the association between PFAS exposure and cognitive outcomes.
- Childhood exposure appears to be a critical window for neurodevelopmental effects in boys.
- Prenatal exposure may represent a critical window for neurodevelopmental effects in girls.
Abstract:
Accurate identification of critical windows of neurodevelopmental susceptibility to per- and polyfluoroalkyl substances (PFAS) exposure across the prenatal-to-childhood continuum carries significant public health implications. Although PFAS have been linked to neurodevelopmental impairments, the precise temporal windows of greatest susceptibility remain poorly defined. This longitudinal study followed 572 mother-child pairs and assessed PFAS exposure across five critical developmental periods, including maternal serum during early, mid, and late pregnancy; cord serum at birth; and child serum at 4-6 years of age. At the same follow-up visit, children's intelligence quotient (IQ) was assessed using the Wechsler Preschool and Primary Scale of Intelligence (WPPSI-IV, CN). The associations between multiple PFAS exposures and IQ scores were then evaluated. Results indicate sex-specific neurocognitive effects. In boys, childhood exposure to specific PFAS correlated with reduced visuospatial reasoning and processing speed, identifying this period as a potential window of heightened sensitivity. In girls, higher maternal levels of perfluorooctanoic acid (PFOA) and perfluorohexane sulfonate (PFHxS) during mid-to-late pregnancy were associated with enhanced verbal comprehension. These findings indicate that the associations between PFAS exposure and cognitive functions differ by sex and by the timing of exposure, suggesting a greater sensitivity to childhood exposure in boys and to prenatal exposures in girls. Further research is imperative to elucidate the underlying biological mechanisms.
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