Early life phthalate and replacement plasticizer exposures and changes in early childhood brain functional

Stephanie M Engel1, Tengfei Li2, Emily J Werder3

  • 1Department of Epidemiology, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States; Biomedical Research Imaging Center, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.

Environment International
|February 11, 2026
PubMed

Insights

Early life exposure to phthalates and replacement plasticizers (PRPs) impacts brain development. Boys showed decreased functional connectivity, while girls exhibited increased connectivity and cortical thinning with PRP exposure.

Area of Science:

  • Neuroscience
  • Environmental Health
  • Developmental Biology

Background:

  • Phthalates and replacement plasticizers (PRPs) are common environmental exposures.
  • Prenatal and early childhood exposure to PRPs is linked to cognitive and behavioral development issues.
  • Potential impacts on brain structure and function during critical developmental periods are not fully understood.

Purpose of the Study:

  • To investigate the association between early life exposure to PRPs and brain development in children.
  • To examine impacts on functional connectivity of resting-state networks and structural morphology of cortical regions.
  • To identify sex-specific differences in these associations.

Main Methods:

  • Longitudinal study of children aged 2 weeks to 5 years (Baby Connectome Project).
  • Acquisition of non-sedated structural and resting-state functional MRI during natural sleep.
  • Analysis of urine samples for 17 PRP metabolites using kernel-weighted estimating equations and generalized linear models.

Main Results:

  • Multiple PRP metabolites were associated with altered functional connectivity in executive control and dorsal attention networks.
  • PRP exposure was linked to decreased functional connectivity in boys and increased connectivity in girls.
  • MiBP metabolite concentrations in girls were associated with cortical thinning in temporal lobe regions.

Conclusions:

  • Early life PRP exposure measurably affects brain maturation trajectory.
  • Significant sex differences exist in the impact of PRP exposure on brain development.
  • These findings highlight the importance of environmental exposures during early development.

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