College of Environment, Zhejiang University of Technology, Hangzhou 310032, PR China.
Division of Hangzhou West Lake Aquatic Area Management, Hangzhou 310002, PR China.
Aquat Toxicol. 2022 Jun;247:106156. doi: 10.1016/j.aquatox.2022.106156. Epub 2022 Apr 5.
For fish and other aquatic organisms, disrupting their capacity for repair and regeneration will reduce their quality of life and survivorship in the wild. Studies have shown that 17α-ethinylestradiol (EE2), a synthetic estrogenic endocrine disrupting chemical (EEDC), can inhibit caudal fin regeneration in larval zebrafish following fin amputation. However, whether the inhibitory effects of EE2 are dependent on estrogen receptor (ER) remains unknown. Therefore, in this study, amputated zebrafish larvae were exposed to the ER agonist EE2 alone and in combination with the ER antagonist ICI 182,780 (ICI), and the change in regenerative capacity was determined. The inhibition of fin regeneration caused by EE2 alone (100 ng/L) was ameliorated after combination with ICI (30-300 μg/L), and these changes in regeneration-related signaling and the immune system corresponded with morphological observations, implying that the effects of EE2 on regeneration were possibly initiated by the activation of ER. Furthermore, the role of ER was confirmed with a natural ligand of ER, namely, 17β-estradiol (E2), and as expected, the effects of E2 (10, 100 and 1000 ng/L) paralleled those of EE2. In conclusion, EEDCs can disrupt the regenerative capacity in zebrafish, possibly due to the binding and activation of ERs and the consequent alteration of signaling pathways that regulate fin regeneration and immune competence. Given that EEDCs appear to be ubiquitous in the aquatic environment, the risk of these chemicals might be readdressed regarding their potential effects on tissue repair and regeneration.
对于鱼类和其他水生生物而言,破坏其修复和再生能力会降低它们在野外的生活质量和生存能力。研究表明,17α-乙炔基雌二醇(EE2)是一种合成的雌激素内分泌干扰化学物质(EEDC),可抑制幼鱼断尾后尾鳍的再生。然而,EE2 的抑制作用是否依赖于雌激素受体(ER)尚不清楚。因此,在这项研究中,单独或联合使用 ER 激动剂 EE2 和 ER 拮抗剂 ICI 182,780(ICI)处理幼鱼断尾,以确定再生能力的变化。单独使用 EE2(100ng/L)抑制尾鳍再生,与 ICI(30-300μg/L)联合使用后得到缓解,这些与再生相关的信号和免疫系统的变化与形态学观察结果一致,表明 EE2 对再生的影响可能是通过 ER 的激活引发的。此外,用 ER 的天然配体 17β-雌二醇(E2)证实了 ER 的作用,与预期的一样,E2(10、100 和 1000ng/L)的作用与 EE2 的作用相似。总之,EEDC 可以破坏斑马鱼的再生能力,这可能是由于 ER 的结合和激活以及调节尾鳍再生和免疫能力的信号通路的改变。由于 EEDC 似乎在水生环境中无处不在,因此需要重新评估这些化学物质对组织修复和再生的潜在影响。