首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Characterization of Estrogenic and Androgenic Activities for Bisphenol A-like Chemicals (BPs): In Vitro Estrogen and Androgen Receptors Transcriptional Activation, Gene Regulation, and Binding Profiles
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Characterization of Estrogenic and Androgenic Activities for Bisphenol A-like Chemicals (BPs): In Vitro Estrogen and Androgen Receptors Transcriptional Activation, Gene Regulation, and Binding Profiles

机译:对双酚A样化学品(BPS)雌激素和雄激素活性的表征:体外雌激素和雄激素受体转录激活,基因调控和结合谱

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摘要

Bisphenol A (BPA) is a high production volume chemical widely used in plastics, food packaging, and many other products. It is well known that endocrine-disrupting chemicals might be harmful to human health due to interference with normal hormone actions. Recent studies report widespread usage and exposure to many BPA-like chemicals (BPs) that are structurally or functionally similar to BPA. However, the biological actions and toxicity of those BPs are still relatively unknown. To address this data gap, we used in vitro cell models to evaluate the ability of 22 BPs to induce or inhibit estrogenic and androgenic activity. BPA, Bisphenol AF (BPAF), bisphenol Z (BPZ), bisphenol C (BPC), tetramethyl bisphenol A (TMBPA), bisphenol S (BPS), bisphenol E (BPE), 4,4-bisphenol F (4,4-BPF), bisphenol AP (BPAP), bisphenol B (BPB), tetrachlorobisphenol A (TCBPA), and benzylparaben (PHBB) induced estrogen receptor (ER)alpha and/or ER beta-mediated activity. With the exception of BPS, TCBPA, and PHBB, these same BPs were also androgen receptor (AR) antagonists. Only 3 BPs were found to be ER antagonists. Bisphenol P (BPP) selectively inhibited ER beta-mediated activity and 4-(4-phenylmethoxyphenyl)sulfonylphenol (BPS-MPE) and 2,4-bisphenol S (2,4-BPS) selectively inhibited ER alpha-mediated activity. None of the BPs induced AR-mediated activity. In addition, we identify that the BPs can bind to ER or AR with varying degrees by a molecular modeling analysis. Taken together, these findings help us to understand the molecular mechanism of BPs and further consideration of their usage in consumer products.
机译:双酚A(BPA)是一种广泛应用于塑料,食品包装和许多其他产品的高产量化学品。众所周知,由于对正常激素动作的干扰,内分泌破坏的化学品可能对人体健康有害。最近的研究报告了广泛使用和暴露于在结构上或功能上与BPA相似的许多BPA样化学品(BPS)。然而,那些BPS的生物学作用和毒性仍然相对未知。为了解决这种数据间隙,我们使用体外细胞模型来评估22bps诱导或抑制雌激素和雄激素活性的能力。 BPA,双酚AF(BPAF),双酚Z(BPZ),双酚C(BPC),四甲基双酚A(TMBPA),双酚S(BPS),双酚E(BPE),4,4-双酚F(4,4- BPF),双酚AP(BPAP),双酚B(BPB),四氯二异酚A(TCBPA)和苄基羟基(PHBB)诱导的雌激素受体(ER)α和/或ERβ介导的活性。除了BPS,TCBPA和PHBB外,这些相同的BPS也是雄激素受体(AR)拮抗剂。发现只有3个BPS是ER拮抗剂。双酚P(BPP)选择性地抑制ERβ介导的活性,4-(4-苯基甲氧基苯基)磺酰基苯酚(BPS-MPE)和2,4-双苯酚S(2,4-BPS)选择性地抑制ERα介导的活性。没有BPS诱导的AR介导的活性。此外,我们认为该BPS可以通过分子建模分析将BPS与不同程度的变化或AR结合。在一起,这些发现有助于我们了解BPS的分子机制以及进一步思考其在消费产品中的使用。

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