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胚胎期接触乙炔雌二醇和克霉唑对斑马鱼(Danio rerio)行为和神经可塑性的长期影响。

Long-term impact of embryonic exposure to ethinylestradiol and clotrimazole on behavior and neuroplasticity in zebrafish (Danio rerio).

作者信息

Blanc-Legendre M, Guillot L, Chevalier L, Malleret C, Le Menach K, Pardon P, Budzinski H, Brion F, Sire S, Coumailleau P, Charlier T D, Pellegrini E, Cousin X

机构信息

MARBEC, University of Montpellier, CNRS, Ifremer, IRD, INRAE, Palavas-les-Flots, France.

University of Rennes, Inserm, Irset (Institut de Recherche en Santé, Environnement et Travail), UMR_S, Rennes 1085, France.

出版信息

Environ Toxicol Pharmacol. 2025 Jan;113:104592. doi: 10.1016/j.etap.2024.104592. Epub 2024 Nov 22.

Abstract

Estrogen receptors (ER) are widely expressed in the brain of many species and experimental results highlighted the role of estradiol in neuronal plasticity and behavior. Consequently, the brain is therefore a prime target for endocrine disrupting chemicals (EDCs) interacting with estrogen signaling. Very little is known about the late effects of early disruption of estrogen signaling by EDCs. We focused on: ethinylestradiol (EE2; ER agonist) and clotrimazole (inhibitor of key steroidogenesis enzymes, including aromatases). Zebrafish eleutheroembryos were exposed (0-5 days) and then raised normally until adulthood. Several behavioral tests were performed in adults, then cell proliferation and dopaminergic neurons were quantified in several brain regions using immunostaining. Overall, a developmental exposure to EDCs stimulates cell proliferation in the dorsal telencephalon. At environmentally-relevant concentrations, male fish exposed to EE2 exhibited increased activity levels and decreased social behavior, posing a potential risk to population balance and health.

摘要

雌激素受体(ER)在许多物种的大脑中广泛表达,实验结果突出了雌二醇在神经元可塑性和行为中的作用。因此,大脑是与雌激素信号相互作用的内分泌干扰化学物质(EDC)的主要靶标。关于EDC对雌激素信号早期干扰的后期影响,人们知之甚少。我们重点研究了:炔雌醇(EE2;ER激动剂)和克霉唑(关键类固醇生成酶包括芳香化酶的抑制剂)。斑马鱼幼胚在0至5天期间暴露于这些物质,然后正常饲养至成年。对成年斑马鱼进行了多项行为测试,然后使用免疫染色对几个脑区的细胞增殖和多巴胺能神经元进行了定量分析。总体而言,发育过程中暴露于EDC会刺激背侧端脑的细胞增殖。在与环境相关的浓度下,暴露于EE2的雄鱼表现出活动水平增加和社交行为减少,这对种群平衡和健康构成了潜在风险。

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