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双酚 A 及其替代物双酚 S、双酚 F 和双酚 AF 对斑马鱼胚胎-幼鱼的急性毒性、致畸性和雌激素效应。

Acute Toxicity, Teratogenic, and Estrogenic Effects of Bisphenol A and Its Alternative Replacements Bisphenol S, Bisphenol F, and Bisphenol AF in Zebrafish Embryo-Larvae.

机构信息

Biosciences, College of Life and Environmental Sciences, University of Exeter , Stocker Road, Exeter, EX4 4QD, United Kingdom.

University of Sussex , School of Life Sciences, Brighton BN1 9QG, United Kingdom.

出版信息

Environ Sci Technol. 2017 Nov 7;51(21):12796-12805. doi: 10.1021/acs.est.7b03283. Epub 2017 Oct 25.

Abstract

Bisphenol A (BPA), a chemical incorporated into plastics and resins, has estrogenic activity and is associated with adverse health effects in humans and wildlife. Similarly structured BPA analogues are widely used but far less is known about their potential toxicity or estrogenic activity in vivo. We undertook the first comprehensive analysis on the toxicity and teratogenic effects of the bisphenols BPA, BPS, BPF, and BPAF in zebrafish embryo-larvae and an assessment on their estrogenic mechanisms in an estrogen-responsive transgenic fish Tg(ERE:Gal4ff)(UAS:GFP). The rank order for toxicity was BPAF > BPA > BPF > BPS. Developmental deformities for larval exposures included cardiac edema, spinal malformation, and craniofacial deformities and there were distinct differences in the effects and potencies between the different bisphenol chemicals. These effects, however, occurred only at concentrations between 1.0 and 200 mg/L which exceed those in most environments. All bisphenol compounds induced estrogenic responses in Tg(ERE:Gal4ff)(UAS:GFP) zebrafish that were inhibited by coexposure with ICI 182 780, demonstrating an estrogen receptor dependent mechanism. Target tissues included the heart, liver, somite muscle, fins, and corpuscles of Stannius. The rank order for estrogenicity was BPAF > BPA = BPF > BPS. Bioconcentration factors were 4.5, 17.8, 5.3, and 0.067 for exposure concentrations of 1.0, 1.0, 0.10, and 50 mg/L for BPA, BPF, BPAF, and BPS, respectively. We thus show that these BPA alternatives induce similar toxic and estrogenic effects to BPA and that BPAF is more potent than BPA, further highlighting health concerns regarding the use of BPA alternatives.

摘要

双酚 A(BPA)是一种添加到塑料和树脂中的化学物质,具有雌激素活性,并与人类和野生动物的健康不良影响有关。具有类似结构的 BPA 类似物被广泛使用,但对它们在体内的潜在毒性或雌激素活性知之甚少。我们首次对双酚 A、BPS、BPF 和 BPAF 在斑马鱼胚胎-幼虫中的毒性和致畸作用进行了全面分析,并在雌激素反应性转基因鱼 Tg(ERE:Gal4ff)(UAS:GFP)中评估了它们的雌激素机制。毒性的顺序是 BPAF > BPA > BPF > BPS。幼鱼暴露的发育畸形包括心脏水肿、脊柱畸形和颅面畸形,不同双酚化学物质之间的作用和效力存在明显差异。然而,这些影响仅在浓度为 1.0 和 200 mg/L 之间发生,超过了大多数环境中的浓度。所有双酚化合物在 Tg(ERE:Gal4ff)(UAS:GFP)斑马鱼中均诱导雌激素反应,这些反应可被 ICI 182780 共暴露抑制,表明存在雌激素受体依赖性机制。靶组织包括心脏、肝脏、体节肌肉、鳍和 Stannius 体。雌激素活性的顺序是 BPAF > BPA = BPF > BPS。生物浓缩因子分别为 4.5、17.8、5.3 和 0.067,对于暴露浓度为 1.0、1.0、0.10 和 50 mg/L 的 BPA、BPF、BPAF 和 BPS。因此,我们表明这些 BPA 替代品对 BPA 产生类似的毒性和雌激素作用,并且 BPAF 比 BPA 更有效,这进一步强调了对使用 BPA 替代品的健康关注。

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