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双酚 A 替代品在斑马鱼胚胎模型中的发育效应和雌激素活性。

Developmental Effects and Estrogenicity of Bisphenol A Alternatives in a Zebrafish Embryo Model.

机构信息

Fishery Resource and Environment Research Center , Chinese Academy of Fishery Sciences , Beijing 100141 , People's Republic of China.

College of Sciences , China Agricultural University , Beijing 100193 , People's Republic of China.

出版信息

Environ Sci Technol. 2018 Mar 6;52(5):3222-3231. doi: 10.1021/acs.est.7b06255. Epub 2018 Feb 14.

Abstract

In order to understand the negative effects of bisphenol A (BPA) alternatives comprehensively, zebrafish embryos were used to assess the lethality, developmental effects, and estrogenic activity of bisphenol analogues. The in silico estrogenic activities of bisphenol analogues were assayed by binding simulation. According to our results, the lethality of bisphenol analogues decreased in order of bisphenol AF (BPAF) > BPA > bisphenol F (BPF) > bisphenol S (BPS). BPAF and BPF induced significant effects on zebrafish embryos, including decreased heart rate, hatching inhibition, and teratogenic effects. The binding potentials of bisphenol analogues toward zebrafish ERs (zfERS) decreased in the following order: BPAF > BPA > BPF > BPS. Among the three subtypes of zfERs, zfERβ2 showed the highest binding activity toward the bisphenols, followed by zfERα and zfERβ1. In vivo estrogenic activity tests showed that BPAF, BPA, and BPF significantly enhanced the protein levels of ERα along with the mRNA levels of esr1, esr2a, esr2b, and vtg1 in zebrafish embryos. Esr2b showed the strongest response to BPAF and BPA exposure among the three esrs. In contrast, BPS did not significantly regulate ER protein level or ER transcription. In conclusion, BPAF showed the highest lethality, developmental effects, and estrogenic activity (both in silico and in vivo) followed by BPA and BPF. BPS showed the weakest toxicity and estrogenic activity. zfERβ2 might act as the main target among the three ER subtypes of zebrafish after exposure to BPAF and BPA.

摘要

为了全面了解双酚 A(BPA)替代品的负面影响,我们使用斑马鱼胚胎来评估双酚类似物的致死性、发育效应和雌激素活性。通过结合模拟,对双酚类似物的体外雌激素活性进行了测定。根据我们的结果,双酚类似物的致死性依次为双酚 AF(BPAF)>BPA>双酚 F(BPF)>双酚 S(BPS)。BPAF 和 BPF 对斑马鱼胚胎产生了显著影响,包括心率降低、孵化抑制和致畸作用。双酚类似物与斑马鱼雌激素受体(zfERs)的结合潜力依次为 BPAF>BPA>BPF>BPS。在三种 zfERs 亚型中,zfERβ2 对双酚的结合活性最高,其次是 zfERα和 zfERβ1。体内雌激素活性测试表明,BPAF、BPA 和 BPF 显著增强了 ERα 的蛋白水平,并上调了斑马鱼胚胎中 esr1、esr2a、esr2b 和 vtg1 的 mRNA 水平。在三种 esrs 中,esr2b 对 BPAF 和 BPA 的暴露反应最强。相比之下,BPS 对 ER 蛋白水平或 ER 转录没有显著调节作用。总之,BPAF 表现出最高的致死性、发育效应和雌激素活性(体内和体外),其次是 BPA 和 BPF。BPS 表现出最弱的毒性和雌激素活性。zfERβ2 可能是 BPAF 和 BPA 暴露后斑马鱼三种 ER 亚型中的主要靶标。

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