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Hepatic transcriptome and DNA methylation patterns following perinatal and chronic BPS exposure in male mice

机译:肝脏转录组和DNA甲基化图案在持续的血小鼠中持续的围产期和慢性BPS暴露

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Bisphenol S (BPS) is a common bisphenol A (BPA) substitute, since BPA is virtually banned worldwide. However, BPS and BPA have both endocrine disrupting properties. Their effects appear mostly in adulthood following perinatal exposures. The objective of the present study was to investigate the impact of perinatal and chronic exposure to BPS at the low dose of 1.5?μg/kg body weight/day on the transcriptome and methylome of the liver in 23?weeks-old C57BL6/J male mice. This multi-omic study highlights a major impact of BPS on gene expression (374 significant deregulated genes) and Gene Set Enrichment Analysis show an enrichment focused on several biological pathways related to metabolic liver regulation. BPS exposure also induces a hypomethylation in 58.5% of the differentially methylated regions (DMR). Systematic connections were not found between gene expression and methylation profile excepted for 18 genes, including 4 genes involved in lipid metabolism pathways (Fasn, Hmgcr, Elovl6, Lpin1), which were downregulated and featured differentially methylated CpGs in their exons or introns. This descriptive study shows an impact of BPS on biological pathways mainly related to an integrative disruption of metabolism (energy metabolism, detoxification, protein and steroid metabolism) and, like most high-throughput studies, contributes to the identification of potential exposure biomarkers.
机译:双酚S(BPS)是一种常见的双酚A(BPA)替代品,因为BPA实际上被全世界禁止。然而,BPS和BPA具有内分泌破坏性质。它们的效果主要出现在围产期暴露之后的成年。本研究的目的是探讨围产期和慢性暴露于23岁的转录组和肝脏转录组和肝脏的低剂量的BPS对BPS的影响。Thee-Thee-Thee-Thee-over C57Bl6 / J男性老鼠。这种多OMIC研究突出了BPS对基因表达的重大影响(374显着的病毒基因)和基因设定的富集分析表明,富集的富集是若干与代谢肝脏调节有关的生物途径。 BPS曝光还在58.5%的差异甲基化区域(DMR)中诱导低甲基化。在基因表达和除甲基化曲线之间未发现系统连接,其中18个基因,包括参与脂质代谢途径的4个基因(FASN,HMGCR,ELOVL6,LPIN1),其在其外显子或内含子中进行差异甲基化CPG。该描述性研究表明,BPS对生物途径的影响主要与新陈代谢的综合破坏(能量代谢,排毒,蛋白质和类固醇代谢)以及与大多数高通量研究相比有助于识别潜在的暴露生物标志物。

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