Prenatal environmental exposures associated with sex differences in childhood obesity and neurodevelopment

Alejandro Cáceres1,2,3, Natàlia Carreras-Gallo4, Sandra Andrusaityte5

  • 1Instituto de Salud Global de Barcelona (ISGlobal), 08003, Barcelona, Spain. alejandro.caceres@isglobal.org.

BMC Medicine
|April 12, 2023
PubMed

Insights

Certain prenatal exposures can alter obesity and neurodevelopment risks differently in girls versus boys. An identified protective environment benefits girls, reducing risks for both obesity and neurodevelopmental delay.

Area of Science:

  • Environmental Health
  • Pediatrics
  • Genetics

Background:

  • Obesity and neurodevelopmental delay are complex, sex-specific traits with potential prenatal influences.
  • The differential impact of maternal prenatal exposures on sex-specific obesity risk and neurodevelopment remains largely unknown.

Purpose of the Study:

  • To investigate prenatal exposures that confer sexually dimorphic risks for childhood obesity.
  • To determine if these sexually dimorphic exposures influence neurodevelopmental delay.
  • To identify protective prenatal environmental profiles for girls.

Main Methods:

  • Analysis of 1044 children from the HELIX project, examining 93 prenatal exposures.
  • Exposome-wide interaction analyses to identify sex-specific obesity risk factors.
  • Causal random forest modeling to define protective (E1) and non-protective (E0) prenatal environments.
  • Epigenome-wide association study (EWAS) to explore molecular differences between E1 and E0.

Main Results:

  • A protective environment (E1) was identified, characterized by low dairy intake, non-smoker cotinine levels, low facility richness, and presence of green spaces during pregnancy.
  • Environment E1 significantly reduced obesity risk in girls compared to boys (OR_interaction = 0.070, P = 2.59 × 10⁻⁵).
  • E1 was associated with lower risks of neurodevelopmental delay in girls, affecting non-verbal intelligence (OR_interaction = 0.42, P = 0.047) and working memory (OR_interaction = 0.31, P = 0.02).
  • Differentially methylated probes were enriched for neurodevelopmental functions, linking E1/E0 to molecular changes.

Conclusions:

  • Prenatal environments can differentially impact obesity and neurodevelopment risks between sexes.
  • A specific combination of exposures creates a protective environment (E1) for girls, mitigating risks for obesity and neurodevelopmental delay.
  • Multiexposure profiling using causal inference is valuable for identifying at-risk populations.
Abstract

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