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Author

Ke Hao

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Open access Sep 2026

Prenatal Transcriptomic and Metabolomic Signatures of Infant Birth Outcomes: A Multiomics Investigation in an Agricultural Cohort

Prenatal environmental exposures may influence fetal growth by disrupting the maternal metabolome and placental function. This exploratory study integrates untargeted maternal serum metabolomics and placental transcriptomics to identify shared molecular pathways through which the maternal environment affects fetal development. Data were drawn from the SAWASDEE birth cohort in northern Thailand, comprising pregnant farmworkers living in an agricultural region with known environmental exposure concerns. Weighted gene coexpression network analysis (WGCNA) of placental transcriptomic data (n = 254) identified gene expression modules, which were analyzed for associations with neonatal outcomes in a subset with paired maternal metabolomics and birth data (n = 40). A placental gene module enriched for myogenesis-related genes was inversely associated with birth weight (β = −0.11, p = 0.03). Seventeen maternal serum metabolic features were associated with both this module and birth weight, including phospholipids related to membrane remodeling and putatively annotated quinoline-containing xenobiotic-like features with structural similarity to combustion-related or industrial compounds. Mediation analysis did not identify statistically significant indirect effects, although one putative xenobiotic-like feature showed a directionally consistent estimate. In this exploratory analysis, these findings identify maternal metabolomic patterns and placental gene networks that are associated with fetal growth and generate hypotheses regarding biologically relevant pathways linking maternal metabolism, placental function, and neonatal growth. Multiomics integration provides a useful exploratory framework for identifying candidate molecular pathways that warrant validation in larger studies.

Ye-Wei Wang, Dong-Hai Liang, Duan Wang et al. · 0 citations
Open access Jul 2026

Placental DNA methylation captures shared and trait-specific genetic susceptibility across complex health conditions

A high-resolution placental mQTL resource is constructed and systematically investigated how placental DNAm relates to early- and later-life traits, and to shared vulnerability and complex interactions among them.

A. Cilleros-Portet, Itziar González-Moro, Hachem Sadikki et al. · 0 citations

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