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Metabolome Wide Association Study of Serum Poly and Perfluoroalkyl Substances (PFASs) in Pregnancy and Early Postpartum

机译:妊娠期血清多氟烷基物质(PFASS)的代谢物宽协会研究

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High-resolution metabolomics (HRM) profiling of metabolic fingerprints can improve understanding of how poly and perfluoroalkyl substances (PFASs) induce metabolic alterations of in utero environment and impact fetal health. HRM profiling and quantification of PFASs were performed for 397 maternal perinatal serum samples collected from 1959-1967 in the Child Health and Development Studies (CHDS). We used Metabolome-Wide Association Studies (MWAS) and pathway enrichment analysis for metabolic associations with PFOS, its precursor EtFOSAA, and EtFOSAA-to-PFOS ratio. Distinct metabolic profiles were found with EtFOSAA and PFOS. Urea cycle metabolites such as arginine, lysine and creatine had opposite associations with EtFOSAA (negative) and PFOS (positive); whereas, carnitine shuttle metabolites were found to be exclusively and positively associated with PFOS indicating perturbation in fatty acid metabolism. These differential metabolic associations for precursor and end-product represent an important first step in identifying how PFASs alter the in utero environment and potentially leads to disease risk.
机译:代谢指纹的高分辨率代谢物(HRM)分析可以改善对多氟烷基物质(PFASS)如何诱导子宫环境和影响胎儿健康的代谢改变的理解。在儿童健康和开发研究(CHDS)中,对从1959-1967收集的397个母体围产血清样品进行PFASS的HRM分析和定量。我们利用代谢物 - 宽协会研究(MWAS)和途径富集分析与PFOS,其前体ETFOSAA和ETFOSAA对PFOS比率的代谢缔合。用ETFOSAA和PFOS发现不同的代谢谱。尿素循环代谢产物如精氨酸,赖氨酸和肌酸与ETFOSAA(阴性)和PFOS(阳性)相反;然而,发现肉碱梭代谢物与表明脂肪酸代谢扰动的PFOS完全和正相关。用于前体和最终产品的这些差异代谢缔组织代表了鉴定PFASS如何改变子宫环境并可能导致疾病风险的重要阶段。

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