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首页> 外文期刊>Chemical research in toxicology >Combination of Metabolomics with Cellular Assays Reveals New Biomarkers and Mechanistic Insights on Xenoestrogenic Exposures in MCF-7 Cells
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Combination of Metabolomics with Cellular Assays Reveals New Biomarkers and Mechanistic Insights on Xenoestrogenic Exposures in MCF-7 Cells

机译:具有细胞测定的代谢组合的组合揭示了MCF-7细胞中对叶雌激露的新生物标志物和机械洞察

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摘要

The disruptive potential of xenoestrogens like bisphenol A (BPA) lies in their 17 beta-estradiol (E2)-like binding to estrogen receptors (ERs) followed by concomitant modulation of ER target gene expression. Unsurprisingly, most endocrine testing systems focus on the quantification of canonical transcripts or ER-sensitive reporters. However, only little information is available about the corresponding metabolomic changes in vitro. This knowledge gap becomes particularly relevant in the context of potential mixture effects, for example, as a consequence of coexposure to potentially estrogenically active pollutants (e.g., Cd2+). Such effects are often difficult to dissect with molecular tools, especially with regard to potential physiological relevance. Metabolomic biomarkers are well-suited to address this latter aspect as they provide a comprehensive readout of whole-cell physiology. Applying a targeted metabolomics approach (FIA-MS/MS), this study looked for biomarkers indicative of xenoestrogenic exposure in MCF-7 cells. Cells were treated with E2 and BPA in the presence or absence of Cd2+. Statistical analysis revealed a total of 11 amino acids and phospholipids to be related to the compound's estrogenic potency. Co-exposure to Cd2+ modulated the estrogenic profile. However, the corresponding changes were found to be moderate with cellular assays such as the E-screen failing to record any Cd2+-specific estrogenic effects. Overall,.metabolomics analysis identified proline as the most prominent estrogenic biomarker. Its increase could clearly be related to estrogenic exposure and concomitant ER alpha-mediated induction of proliferation. Involvement of the latter was confirmed by siRNA-mediated knockdown studies as well as by receptor inhibition. Further, the underlying signaling was also found to involve the oncoprotein MYC. Taken together, this study provides insights into the underlying mechanisms of xenoestrogenic effects and exemplify the strength of the complementary use of metabolomics and cellular and molecular assays.
机译:双酚A(BPA)如双酚A(BPA)的破坏性潜力位于其17β-雌二醇(E2) - 与雌激素受体(ER)的结合,然后伴随ER靶基因表达的调节。不出所料,大多数内分泌测试系统专注于定量规范成绩单或敏感记者。然而,只有很少的信息可以在体外进行相应的代谢物变化。这种知识间隙在潜在的混合物效应的背景下变得特别相关,例如,由于群胶质透露潜在源性活性污染物(例如,CD2 +)。这种效果通常难以与分子工具进行剖析,特别是关于潜在的生理相关性。代谢物生物标志物非常适合解决后一种方面,因为它们提供全细胞生理的全面读数。本研究申请了目标代谢组种方法(FIA-MS / MS),寻找指示MCF-7细胞中的雌激蛋白暴露的生物标志物。在存在或不存在CD2 +的情况下用E2和BPA处理细胞。统计学分析显示,总共11个氨基酸和磷脂与化合物的雌激素效力有关。共同暴露于CD2 +调节雌激素谱。然而,发现相应的变化是适度的细胞测定,例如E型筛选未能记录任何CD2 +-特异性雌激素作用。总体而言,.metabolomics分析将脯氨酸鉴定为最突出的雌激素生物标志物。它的增加可能明显与雌激素暴露和伴随的ERα-介导的增殖诱导有关。通过SiRNA介导的敲低研究以及受体抑制证实后者的参与。此外,还发现潜在的信号传导涉及癌蛋白MYC。综合,本研究提供了进入卵科学效应的潜在机制的见解,并举例说明了代谢组科和细胞和分子测定的互补使用的强度。

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  • 来源
    《Chemical research in toxicology 》 |2017年第4期| 共10页
  • 作者单位

    German Fed Inst Risk Assessment BfR Dept Chem &

    Prod Safety Max Dohrn Str 8-10 D-10589 Berlin;

    German Fed Inst Risk Assessment BfR Dept Chem &

    Prod Safety Max Dohrn Str 8-10 D-10589 Berlin;

    German Fed Inst Risk Assessment BfR Dept Chem &

    Prod Safety Max Dohrn Str 8-10 D-10589 Berlin;

    UFZ Helmholtz Ctr Environm Res Dept Mol Syst Biol Permoserstr 15 D-04318 Leipzig Germany;

    UFZ Helmholtz Ctr Environm Res Dept Mol Syst Biol Permoserstr 15 D-04318 Leipzig Germany;

    German Fed Inst Risk Assessment BfR Dept Chem &

    Prod Safety Max Dohrn Str 8-10 D-10589 Berlin;

    German Fed Inst Risk Assessment BfR Dept Chem &

    Prod Safety Max Dohrn Str 8-10 D-10589 Berlin;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学) ;
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