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首页> 外文期刊>The Science of the Total Environment >A tiered high-throughput screening approach for evaluation of estrogen and androgen receptor modulation by environmentally relevant bisphenol A substitutes
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A tiered high-throughput screening approach for evaluation of estrogen and androgen receptor modulation by environmentally relevant bisphenol A substitutes

机译:用于评估环境相关双酚A替代物对雌激素和雄激素受体调节作用的分层高通量筛选方法

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摘要

Bisphenol A (BPA) is a high production volume chemical with a broad application spectrum. As an endocrine disrupting chemical, mainly by modulation of nuclear receptors (NRs), BPA has an adverse impact on organisms and is identified as a substance of very high concern under the European REACH regulation. Various BPA substitution candidates have been developed in recent years, however, information concerning the endocrine disrupting potential of these substances is still incomplete or missing. In this study, we intended to investigate the endocrine potential of BPA substitution candidates used in environmentally relevant applications such as thermal paper or epoxy resins. Based on an extensive literature and patent search, 33 environmentally relevant BPA substitution candidates were identified. In order to evaluate the endocrine potential of the BPA replacements, a screening cascade consisting of biochemical and cell-based assays was employed to investigate substance binding to the NRs estrogen receptor α and β, as well as androgen receptor, co-activator recruitment and NR-mediated reporter gene activation. In addition, a computational docking approach for retrospective prediction of receptor binding was carried out. Our results show that some BPA substitution candidates, for which so far no or only very few data were available, possess a substantial endocrine disrupting potential (TDP, BPZ), while several substances (BPS, D-8, DD70, DMP-OH, TBSA, D4, CBDO, ISO, VITC, DPA, and DOPO) did not reveal any NR binding.
机译:双酚A(BPA)是一种高产量的化学品,具有广泛的应用范围。 BPA是一种破坏内分泌的化学物质,主要通过调节核受体(NRs)产生,对生物体有不利影响,在欧洲REACH法规中被确定为备受关注的物质。近年来已经开发出各种BPA替代候选物,但是,关于这些物质的内分泌破坏潜能的信息仍然不完整或缺失。在这项研究中,我们打算调查在与环境相关的应用(例如热敏纸或环氧树脂)中使用的BPA替代候选物的内分泌潜力。根据广泛的文献资料和专利检索,确定了33个与环境相关的BPA替代候选物。为了评估BPA替代品的内分泌潜力,采用了由生化和基于细胞的测定组成的筛选级联研究了与NRs雌激素受体α和β以及雄激素受体,共激活因子募集和NR结合的物质。介导的报道基因激活。另外,进行了对接预测受体结合的计算对接方法。我们的结果表明,到目前为止尚无或仅有很少数据的一些BPA替代候选物具有相当大的内分泌破坏潜力(TDP,BPZ),而某些物质(BPS,D-8,DD70,DMP-OH, TBSA,D4,CBDO,ISO,VITC,DPA和DOPO)未显示任何NR结合。

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