Department of Medicine, School of Medicine, Emory University, Atlanta, GA 30303, USA.
The Center for Research on Women and Children's Health, Child Health and Development Studies, Public Health Institute, 1683 Shattuck Avenue, Suite B, Berkeley, CA 94709, USA.
Reprod Toxicol. 2020 Mar;92:129-137. doi: 10.1016/j.reprotox.2019.05.059. Epub 2019 May 15.
The advancement of high-resolution metabolomics (HRM) and metabolome-wide-association study (MWAS) enables the readout of environmental effects in human specimens. We used HRM to understand DDT-induced alterations of in utero environment and potential health effects. Endogenous metabolites were measured in 397 maternal perinatal serum samples collected during 1959-1967 in the Child Health and Development Studies (CHDS) and in 16 maternal postnatal serum samples of mice treated with or without DDT. MWAS was performed to assess associations between metabolites and p,p'-DDT, o,p'-DDT and p,p'-DDE levels, followed by pathway analysis. Distinct metabolic profiles were found with p,p'-DDT and p,p'-DDE. Amino acids such arginine had a strong association with p,p'-DDT and o,p'-DDT in both women and mice, whereas lipids and acyl-carnitine intermediates were found exclusively associated with p,p'-DDE in CHDS women indicating mitochondrial impairment. It suggests that the role of serine and fatty acid metabolism on the causal disease pathway should be examined.
高分辨率代谢组学(HRM)和代谢组全关联研究(MWAS)的进步使我们能够在人体标本中读出环境对人体的影响。我们使用 HRM 来了解 DDT 对子宫内环境的影响及其潜在的健康影响。在 1959 年至 1967 年期间的儿童健康与发展研究(CHDS)中,我们从 397 名产妇围产期血清样本中测量了内源性代谢物,并从接受或未接受 DDT 处理的 16 只母鼠产后血清样本中测量了内源性代谢物。进行了 MWAS,以评估代谢物与 p,p'-DDT、o,p'-DDT 和 p,p'-DDE 水平之间的关联,然后进行了途径分析。发现 p,p'-DDT 和 p,p'-DDE 存在不同的代谢特征。在妇女和小鼠中,精氨酸等氨基酸与 p,p'-DDT 和 o,p'-DDT 具有很强的关联,而脂质和酰基辅酶 A 中间体仅与 CHDS 妇女中的 p,p'-DDE 相关,表明存在线粒体损伤。这表明应该检查丝氨酸和脂肪酸代谢在因果疾病途径中的作用。