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POPs 和内分泌干扰物的特定混合物对人 H295R 肾上腺皮质细胞系类固醇代谢组的影响。

Effects of defined mixtures of POPs and endocrine disruptors on the steroid metabolome of the human H295R adrenocortical cell line.

机构信息

Department of Biological Sciences, University of Bergen, P.O. Box 7803, N-5020 Bergen, Norway.

Department of Mathematics, University of Bergen, P.O. Box 7803, N-5020 Bergen, Norway.

出版信息

Chemosphere. 2019 Mar;218:328-339. doi: 10.1016/j.chemosphere.2018.11.057. Epub 2018 Nov 12.

Abstract

The presence of environmental pollutants in our ecosystem may impose harmful health effects to wildlife and humans. Several of these toxic chemicals have a potential to interfere with the endocrine system. The adrenal cortex has been identified as the main target organ affected by endocrine disrupting chemicals. The aim of this work was to assess exposure effects of defined and environmentally relevant mixtures of chlorinated, brominated and perfluorinated chemicals on steroidogenesis, using the H295R adrenocortical cell line model in combination with a newly developed liquid chromatography tandem mass spectrometry (LC-MS/MS) method. By using this approach, we could simultaneously analyze 19 of the steroids in the steroid biosynthesis pathway, revealing a deeper insight into possible disruption of steroidogenesis. Our results showed a noticeable down-regulation in steroid production when cells were exposed to the highest concentration of a mixture of brominated and fluorinated compounds (10,000-times human blood values). In contrast, up-regulation was observed with estrone under the same experimental condition, as well as with some other steroids when cells were exposed to a perfluorinated mixture (1000-times human blood values), and the mixture of chlorinated and fluorinated compounds. Interestingly, the low concentration of the perfluorinated mixture alone produced a significant, albeit small, down-regulation of pregnenolone, and the total mixture a similar effect on 17-hydroxypregnenolone. Other mixtures resulted in only slight deviations from the control. Indication of synergistic effects were noted when we used a statistical model to improve data interpretation. A potential for adverse outcomes of human exposures is indicated, pointing to the need for further investigation into these mixtures.

摘要

环境污染物在我们的生态系统中存在可能对野生动物和人类健康造成有害影响。这些有毒化学物质中的几种具有潜在的干扰内分泌系统的能力。肾上腺皮质已被确定为受内分泌干扰化学物质影响的主要靶器官。这项工作的目的是使用 H295R 肾上腺皮质细胞系模型,结合新开发的液相色谱串联质谱 (LC-MS/MS) 方法,评估已定义和与环境相关的氯化、溴化和全氟化化学品混合物对类固醇生成的暴露效应。通过使用这种方法,我们可以同时分析类固醇生物合成途径中的 19 种类固醇,更深入地了解类固醇生成可能受到的干扰。我们的结果表明,当细胞暴露于溴化和氟化化合物混合物的最高浓度(人类血液值的 10,000 倍)时,类固醇产生明显下调。相比之下,在相同的实验条件下,雌酮表现出上调,而当细胞暴露于全氟化混合物(人类血液值的 1000 倍)和氯化和氟化化合物混合物时,其他一些类固醇也表现出上调。有趣的是,单独的低浓度全氟化混合物就会导致 pregnenolone 显著下调,尽管很小,而总混合物对 17-羟孕烯醇酮也有类似的影响。其他混合物仅导致与对照略有偏差。当我们使用统计模型来改善数据解释时,注意到协同效应的迹象。这表明人类暴露可能会产生不良后果,需要进一步研究这些混合物。

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