Institut National de l'Environnement Industriel et des Risques, Unité d'Écotoxicologie in vitro et in vivo, BP2, 60550 Verneuil-en-Halatte, France.
Fish Physiol Biochem. 2013 Jun;39(3):573-80. doi: 10.1007/s10695-012-9720-3. Epub 2012 Sep 26.
The aim of this study was to identify a signal that could be used as an androgen exposure indicator in the European bullhead (Cottus sp.). For this purpose, the ultra-structure of the kidney was characterized to identify normal structure of this organ, and histological changes previously described in the kidney of breeding male bullheads were quantified using the kidney epithelium height (KEH) assay previously developed and validated for the stickleback. In the next step, the effect of trenbolone acetate (TbA), a model androgen, was assessed to identify potential androgenic regulation of bullhead kidney hypertrophy. Measurement of KEH performed on adult non-breeding male and female bullheads exposed for 14 and 21 days to 0, 1.26 and 6.50 μg/L showed that kidney hypertrophy is induced in a dose-dependent manner, confirming the hypothesis that the European bullhead possesses a potential biomarker of androgen exposure. Combined with the wide distribution of the European bullhead in European countries and the potential of this fish species for environmental toxicology studies in field and laboratory conditions, the hypothesis of a potential biomarker of androgen exposure offers interesting perspectives for the use of the bullhead as a relevant sentinel fish species in monitoring studies. Inducibility was observed with high exposure concentrations of TbA. Further studies are needed to identify molecular signals that could be more sensitive than KEH.
本研究旨在确定一种可作为欧洲七鳃鳗(Cottus sp.)雄激素暴露指示物的信号。为此,对肾脏的超微结构进行了特征描述,以确定该器官的正常结构,并使用先前为棘鱼开发和验证的肾脏上皮细胞高度(KEH)测定法,对先前在繁殖雄性七鳃鳗肾脏中描述的组织学变化进行了量化。在下一步中,评估了作为模型雄激素的 trenbolone acetate(TbA)的作用,以确定其对七鳃鳗肾脏肥大的潜在雄激素调节作用。对暴露于 0、1.26 和 6.50μg/L TbA 14 和 21 天的非繁殖期成年雄性和雌性七鳃鳗进行 KEH 测量表明,肾脏肥大呈剂量依赖性诱导,证实了欧洲七鳃鳗具有雄激素暴露潜在生物标志物的假设。结合欧洲七鳃鳗在欧洲国家的广泛分布以及该鱼类在野外和实验室条件下进行环境毒理学研究的潜力,雄激素暴露潜在生物标志物的假设为将七鳃鳗作为监测研究中相关的哨兵鱼类提供了有趣的前景。在高暴露浓度的 TbA 下观察到诱导性。需要进一步研究以确定比 KEH 更敏感的分子信号。