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Mengling Liu

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Open access Aug 2026

Prenatal Organophosphate Exposure and Autism-Related Traits in Children.

Importance Organophosphate pesticides (OPs) are established neurotoxicants; prenatal OP exposure is widespread in the US population, primarily through diet. Evidence linking prenatal OP exposure to autism spectrum disorder (ASD) and autism-related traits remains inconsistent. Objective To examine the association between prenatal OP exposure and autism-related traits in childhood and to assess potential differences in the association by child sex and maternal diet. Design, Setting, and Participants This pooled prospective cohort study used harmonized data from mother-child pairs from 20 study sites in the Environmental influences on Child Health Outcomes (ECHO) cohort. Participants were recruited from January 1997 through December 2019, and autism-related outcomes were assessed in children ages 2 to 19 years. Data analysis was performed from April 2024 and November 2025. Exposure Prenatal OP exposure using urinary concentrations of 3,5,6-trichloro-2-pyridinol (TCPy) and the sum of 6 dialkyl phosphate (ΣDAP) metabolites. Main Outcomes and Measures Parents reported autism-related traits in children using the Social Responsiveness Scale (SRS). Multivariable linear, quantile, and logistic regression models were used to estimate associations between biomarkers and SRS T scores overall and by child sex, adjusting for maternal sociodemographic and behavioral factors. We further adjusted for dietary factors in additional models and tested effect modification by maternal diet quality in exploratory analyses. Results Among 3339 mother-child pairs examined, mean (SD) maternal age was 31 (6) years, 1665 children (49.9%) were female, and the SRS was administered at a mean (SD) age of 6.4 (3.87) years. Crude or minimally adjusted models suggested inverse associations between prenatal TCPy or ΣDAP levels and SRS scores, but these associations attenuated and lost statistical significance after full adjustment (β per doubling of TCPy concentration [ng/mL] = -0.13; 95% CI, -0.57 to 0.31; β per doubling of ΣDAP [nmol/L] = -0.42; 95% CI, -1.03 to 0.19). Results were consistent across sex-stratified models, secondary analyses using quantile and logistic regressions, various sensitivity analyses, and after adjustments for dietary confounders. There was no evidence of effect modification by diet quality. Conclusions and Relevance In this large, prospective cohort study among the ECHO cohort, prenatal OP exposure was not associated with autism-related traits in childhood. Given the known adverse impacts of pesticides in other contexts, further research should consider interactions with other factors, genetic susceptibility, higher exposures, or combined chemical mixtures.

Haleigh Cavalier, Heather E. Volk, A. Kivumbi et al. · 0 citations
Open access Jul 2026

Exposure to legacy and replacement PFAS including perfluorobutanesulfonic acid (PFBS) in a New York City-based pregnancy cohort

Relatively few epidemiologic studies in the US have measured the short-chain replacement per- or polyfluoroalkyl substance (PFAS) perfluorobutanesulfonic acid (PFBS), and little is known about its health impacts. We measured prenatal serum concentrations of 13 PFAS, including PFBS, among 500 participants in the New York University Children’s Health and Environment Study (NYU CHES) between 2016 and 2019. We investigated associations of PFAS exposures with demographic characteristics, including location of residence, and conducted an exploratory factor analysis to investigate common sources of exposure. PFBS concentrations were quantified in 95.6% of samples (median 0.40 ng/mL), which was unexpectedly higher than serum PFBS concentrations reported in other US-based cohorts. PFBS concentrations were not correlated with other PFAS, though they were positively correlated with each other. Unlike other PFAS, PFBS concentrations were not associated with participant characteristics, and there was no evidence for spatial autocorrelation. The changing PFAS exposure landscape warrants further investigation into the health effects of short-chain replacements, particularly in vulnerable populations.

Eleanor A. Medley, Duong Q. Nguyen, A. Nigra et al. · 0 citations