Prenatal exposure to per- and polyfluoroalkyl substances (PFAS) is associated with small-for-gestational age (SGA), an adverse pregnancy outcome indicative of intrauterine growth restriction (IUGR). Evidence from previous environmental epidemiologic work suggests that lipids contribute to this association through oxidative stress and inflammation. Therefore, we conducted an exploratory study by analyzing the maternal lipidome with the meet-in-the-middle approach to identify potential intermediates. In the Atlanta African American Maternal–Child Cohort, pregnant participants provided serum samples between 6 and 17 weeks gestation, which underwent targeted PFAS analysis (N: total = 513, SGA = 61) and untargeted lipidomics analysis (N: total = 330, SGA = 36). A lipidome-wide association study (LWAS) was conducted for PFNA, PFOA, PFOS, and PFHxS with multivariable regression and their mixture with quantile g-computation. A separate LWAS was performed for SGA with multivariable regression. Lipid pathway analysis was performed in LIPEA (Lipid Pathway Enrichment Analysis). Lipidomic signatures that overlapped between any PFAS LWAS and the SGA LWAS were considered intermediates. A simultaneous, 1-quartile increase in serum concentrations of PFNA, PFOA, PFOS, and PFHxS at early pregnancy was associated with a 43% increase in delivery of an SGA newborn (Odds Ratio = 1.43; 95% Confidence Interval = 1.02, 2.00). The overall mixture effect was driven by PFNA (weight = 0.42). There were 321 features associated with the PFAS mixture and 25 features associated with SGA in the maternal lipidome (all p < 0.05, but none remained significant after false discovery rate correction). After confirmation and annotation, three intermediate metabolites were identified, including phosphatidylinositol 18:1–20:4, phosphatidylcholine 32:0, and monoacylglycerol 18:0. The pathways for glycerophospholipid metabolism, retrograde endocannabinoid signaling, insulin resistance, and long-term depression were also enriched in the LWAS for PFNA, PFOA, PFOS, PFHxS, the PFAS mixture, and SGA. Global analysis of the maternal lipidome during early pregnancy revealed diverse bioactive lipid involvement in the PFAS-SGA association. Additional research is warranted to understand if antioxidants and anti-inflammatory nutrients would attenuate exposure effects on adverse maternal–child health outcomes.
K. Taibl, Anne L. Dunlop, Paula-Dene C. Nesbeth et al.· Environmental Health Perspec...· 0 citations
Background The placenta has a unique transcriptomic profile, including microRNAs that are secreted into maternal circulation throughout pregnancy. MicroRNAs are small, non-coding RNA that post-transcriptionally regulate gene expression. Spontaneous preterm birth (sPTB) is associated with substantial differences in both placental pathophysiology and placental gene expression compared to term birth. We aimed to generate microRNA signatures of sPTB and map them to target genes using a microRNA–mRNA network. Methods This study was conducted within the Conditions Affecting Neurocognitive Development and Learning in Early childhood (CANDLE) study. Placental samples were collected at delivery, and RNA was isolated for mRNA and microRNA sequencing. To investigate sPTB, this study excluded placental samples of participants with iatrogenic indications for PTB or induced labor. We examined differences in microRNA expression in participants who delivered before 37 weeks (N=35) compared to term participants (N=404) in a series of covariate-adjusted linear regression models. We used paired placental microRNA and mRNA expression data from this cohort to validate associations between computationally predicted microRNA–mRNA pairs and establish a microRNA–mRNA network. Results Expression of 7 microRNAs were increased in sPTB (FDR<0.05) and were inversely correlated with sPTB-associated genes involved in immune signaling. Expression of 12 microRNAs were decreased in sPTB, including 4 members of the maternally expressed chromosome 14 microRNA cluster (miR-376a-3p, miR-376c-3p, miR-377-3p, and miR-381-3p). These microRNAs were predicted to negatively regulate oxidative phosphorylation genes that were increased in sPTB. The associations between miR-376c-3p and miR-377-3p and oxidative phosphorylation were confirmed in microRNA knockdown experiments. Conclusions This study highlights potential biological mechanisms by which placental microRNA dysfunction might contribute to sPTB and highlights putative sPTB biomarkers that may be detectable in maternal circulation.
Mariana Parenti, Elizabeth M. Kennedy, Evan J. Firsick et al.· bioRxiv· 0 citations
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.· medRxiv· 0 citations
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