Yan Zhenhua, Lu Guanghua, Ye Qiuxia, Liu Jianchao
Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, Hohai University, Nanjing, 210098, China.
College of Environment, Hohai University, Nanjing, 210098, China.
Environ Sci Pollut Res Int. 2016 May;23(9):9036-45. doi: 10.1007/s11356-016-6168-5. Epub 2016 Jan 29.
The aquatic environment is challenged with complex mixtures of chemicals that may interact biochemically with each other in non-target aquatic organisms through a combination of actions, resulting in unpredictable mixture toxicity. This study focuses on the interactive effects of chemicals, including benzo(a)pyrene (BaP) and ketoconazole (KCZ), on 17β-estradiol (E2)-induced estrogenic responses in male goldfish (Carassius auratus). The possible interactions between BaP or KCZ and E2 were investigated on the expression of cytochromeP4501A (CYP1A, biotransformation enzyme) and on its corresponding catalytic activity 7-ethoxyresorufin-O-deethylase (EROD activity), as well as on the expression of CYP19 (steroidogenic enzyme) and E2 bioaccumulation in liver. Exposure to E2 caused a significant increase in estrogenic responses corresponding with the E2 bioaccumulation. When comparing results to the E2 exposure group, co-exposure to BaP resulted in an increase in the cyp1a mRNA expression and its corresponding EROD activity and a marked decrease in the E2 bioaccumulation, but the expression of aromatase was not altered. Conversely, co-treatment with KCZ significantly suppressed the E2-modulated expression of metabolism and synthesis enzymes, which were accompanied by an increase in the E2 bioaccumulation. These data suggest that the modulation of E2-induced estrogenic responses by BaP and KCZ were correlated to the alterations of E2 bioaccumulation in goldfish, leading to a combination of changes in the capacity of biotransformation and steroidogenesis. The complex interactions between chemicals with different modes of actions highlight the need for caution in determining the safety of combined pollution in the aquatic environment.
水生环境面临着复杂的化学混合物挑战,这些化学物质可能通过多种作用在非目标水生生物体内发生生化相互作用,从而导致不可预测的混合物毒性。本研究聚焦于化学物质,包括苯并(a)芘(BaP)和酮康唑(KCZ),对雄性金鱼(Carassius auratus)中17β-雌二醇(E2)诱导的雌激素反应的交互作用。研究了BaP或KCZ与E2之间可能的相互作用对细胞色素P4501A(CYP1A,生物转化酶)的表达及其相应的催化活性7-乙氧基异吩恶唑酮-O-脱乙基酶(EROD活性)的影响,以及对CYP19(类固醇生成酶)的表达和肝脏中E2生物累积的影响。暴露于E2会导致雌激素反应显著增加,这与E2生物累积相对应。与E2暴露组相比,共同暴露于BaP会导致cyp1a mRNA表达及其相应的EROD活性增加,E2生物累积显著减少,但芳香化酶的表达未改变。相反,与KCZ共同处理显著抑制了E2调节的代谢和合成酶的表达,同时伴随着E2生物累积的增加。这些数据表明,BaP和KCZ对E2诱导的雌激素反应的调节与金鱼中E2生物累积的改变相关,导致生物转化和类固醇生成能力的综合变化。具有不同作用模式的化学物质之间的复杂相互作用凸显了在确定水生环境中混合污染安全性时需谨慎的必要性。