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采用雌激素受体亲和柱和高效液相色谱-高分辨率质谱法从复杂基质中鉴定内分泌干扰物。

Characterization of endocrine disruptors from a complex matrix using estrogen receptor affinity columns and high performance liquid chromatography-high resolution mass spectrometry.

机构信息

INRA, UMR 1331 TOXALIM (Research Center in Food Toxicology), Xenobiotic Metabolism Team, 180 Chemin de Tournefeuille, 31027 Toulouse, France.

出版信息

Environ Sci Pollut Res Int. 2013 May;20(5):2705-20. doi: 10.1007/s11356-012-1458-z. Epub 2013 Jan 15.

DOI:10.1007/s11356-012-1458-z
PMID:23314706
Abstract

Complex mixtures of contaminants with potential adverse effects on human health and wildlife are found in the environment and in the food chain. These mixtures include numerous anthropogenic compounds of various origins and structures, which may behave as endocrine disruptors. Mixture's complexity is further enhanced by biotic and abiotic transformations. It is therefore necessary to develop new strategies allowing the identification of the structure of known, as well as unknown, nuclear receptor (NR) ligands present in complex matrices. We explored the possibility to use NR-based affinity columns to characterize the presence of bioactive molecules in environmental complex mixtures. Estrogen receptor α (ERα)-based affinity columns were used to trap and purify estrogenic substances present in surface sediment samples collected in a French river under mixed anthropogenic pressure. We combined biological, biochemical and analytical approaches to characterize the structure of ligands retained on columns and demonstrate the presence of known active molecules such as bisphenol A and octylphenol, but also of unexpected ERα ligands (n-butylparaben, hydroxyl-methyl-benzofuranone). High resolution mass spectrometry results demonstrate that ERα affinity columns can be used for the isolation, purification and identification of known as well as unknown estrogenic contaminants present in complex matrices.

摘要

环境和食物链中存在着复杂的污染物混合物,这些混合物可能对人类健康和野生动物产生潜在的不利影响。这些混合物包括许多具有不同来源和结构的人为化合物,它们可能表现为内分泌干扰物。生物和非生物转化进一步增加了混合物的复杂性。因此,有必要开发新的策略,以识别存在于复杂基质中的已知和未知核受体 (NR) 配体的结构。我们探索了使用基于 NR 的亲和柱来表征环境复杂混合物中生物活性分子存在的可能性。我们使用雌激素受体 α (ERα) 亲和柱来捕获和纯化在法国一条受混合人为压力影响的河流中的表层沉积物样品中存在的雌激素物质。我们结合了生物学、生物化学和分析方法来表征柱上保留的配体的结构,并证明了已知活性分子(如双酚 A 和辛基酚)以及意想不到的 ERα 配体(对羟基苯甲酸丁酯、羟基-甲基-苯并呋喃酮)的存在。高分辨率质谱结果表明,ERα 亲和柱可用于分离、纯化和鉴定存在于复杂基质中的已知和未知雌激素污染物。

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本文引用的文献

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Anal Bioanal Chem. 2013 Mar;405(8):2553-66. doi: 10.1007/s00216-013-6708-5. Epub 2013 Jan 26.
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受混合压力影响的法国河流中沉积物、POCIS 和 SPMD 之间的类固醇和二恶英类物质活性分布。
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Bisphenol-A acts as a potent estrogen via non-classical estrogen triggered pathways.双酚 A 通过非经典雌激素触发途径发挥强效雌激素作用。
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