Childhood exposure to non-persistent endocrine disrupting chemicals and multi-omic profiles: A panel study

代谢组 三氯生 组学 暴露的 生物 生理学 内分泌系统 生物信息学 代谢组学 医学 内分泌学 遗传学 激素 病理
作者
Lorenzo Fabbri,Ronan Garlantézec,Karine Audouze,Mariona Bustamante,Ángel Carracedo,Leda Chatzi,Juan R. González,Regina Gražulevičienė,Hector C. Keun,Chung-Ho E Lau,Eduard Sabidó,Alexandros P. Siskos,Rémy Slama,Cathrine Thomsen,John Wright,Wen Lun Yuan,Maribel Casas,Martine Vrijheid,Léa Maitre
出处
期刊:Environment International [Elsevier BV]
卷期号:173: 107856-107856 被引量:3
标识
DOI:10.1016/j.envint.2023.107856
摘要

Individuals are exposed to environmental pollutants with endocrine disrupting activity (endocrine disruptors, EDCs) and the early stages of life are particularly susceptible to these exposures. Previous studies have focused on identifying molecular signatures associated with EDCs, but none have used repeated sampling strategy and integrated multiple omics. We aimed to identify multi-omic signatures associated with childhood exposure to non-persistent EDCs.We used data from the HELIX Child Panel Study, which included 156 children aged 6 to 11. Children were followed for one week, in two time periods. Twenty-two non-persistent EDCs (10 phthalate, 7 phenol, and 5 organophosphate pesticide metabolites) were measured in two weekly pools of 15 urine samples each. Multi-omic profiles (methylome, serum and urinary metabolome, proteome) were measured in blood and in a pool urine samples. We developed visit-specific Gaussian Graphical Models based on pairwise partial correlations. The visit-specific networks were then merged to identify reproducible associations. Independent biological evidence was systematically sought to confirm some of these associations and assess their potential health implications.950 reproducible associations were found among which 23 were direct associations between EDCs and omics. For 9 of them, we were able to find corroborating evidence from previous literature: DEP - serotonin, OXBE - cg27466129, OXBE - dimethylamine, triclosan - leptin, triclosan - serotonin, MBzP - Neu5AC, MEHP - cg20080548, oh-MiNP - kynurenine, oxo-MiNP - 5-oxoproline. We used these associations to explore possible mechanisms between EDCs and health outcomes, and found links to health outcomes for 3 analytes: serotonin and kynurenine in relation to neuro-behavioural development, and leptin in relation to obesity and insulin resistance.This multi-omics network analysis at two time points identified biologically relevant molecular signatures related to non-persistent EDC exposure in childhood, suggesting pathways related to neurological and metabolic outcomes.
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