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首页> 外文期刊>The Science of the Total Environment >Developmental reproductive toxicity and endocrine activity of propiconazole in the Xenopus tropicalis model
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Developmental reproductive toxicity and endocrine activity of propiconazole in the Xenopus tropicalis model

机译:Xenopustropicalis模型中丙酸丙酸的发育生殖毒性和内分泌活性

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Environmental pollutants and especially endocrine disrupting chemicals (EDCs) are implicated as one of the drivers of the amphibian declines. To advance the understanding of the risks of EDCs to amphibians, methods to determine endocrine-linked adverse effects are needed. The aims were to 1) develop a partial life-cycle assay with the model frogXenopus tropicalis to determine endocrine perturbation and adverse developmental effects, and 2) determine effects of propiconazole in this assay. Propiconazole is a pesticide with multiple endocrine modes of action in vitro. Its potential endocrine activity and adverse effects in amphibians remain to be elucidated. Tadpoles were exposed to 0, 33 and 384 ug propiconazole/L during critical developmental windows until completed metamorphosis. At metamorphosis, a sub-sample of animals was analysed for end points for disruption of estrogen/and rogen (sex ratio, brain aromatase activity) and thyroid pathways (time to metamorphosis). The remaining individuals were kept unexposed for 2 months post-metamorphosis to analyze effects on sexual development including gonadal and Mullerian duct maturity and gametogenesis. At metamorphosis, brain aromatase activity was significantly increased in the high-dose group compared to control. In both propiconazole groups, an increased proportion of individuals reached metamorphosis faster than the mean time for controls, suggesting a stimulatory effect on the thyroid system. At 2 months post-metamorphosis, testis size, sperm and Mullerian duct maturity were reduced in the low-dose males, and the liver somatic index in males was increased in both propiconazole groups, compared with controls. In conclusion, our results show that propiconazole exposure caused endocrine perturbations and subsequent hepatic and reproductive effects evident at puberty, indicating persistent disruption of metabolism and male reproductive function. Our findings advance the development of methodology to determine endocrine and adverse effects of EDCs. Moreover, they increase the understanding of endocrine perturbations and consequent risk of adverse effects of azoles in amphibians.
机译:环境污染物,特别是内分泌破坏化学品(EDC)被牵连作为两栖动物下降的驱动因素之一。为了推进对两栖动物的EDC风险的理解,需要确定内分泌关联不利影响的方法。目的是1)用模型Frogxenopustropuce is进行部分生命周期测定,以确定内分泌扰动和不良发育影响,2)确定丙酰唑在该测定中的作用。丙酰唑是一种杀虫剂,体外具有多种内分泌作用。其潜在的内分泌活动和两栖动物的不良反应仍然被阐明。在关键发育窗口期间暴露于0,33和384 ug丙酰唑/ L直到完成的变态。在变态下,分析动物的亚样品以进行雌激素/和rOGON(性别比,脑芳孔活性)和甲状腺途径(变态时间)的终点。其余个体保持未曝光2个月后变态后,以分析对性发育的影响,包括性腺和Mullerian管道成熟和配子。在变态中,与对照相比,高剂量组中脑芳香酶活性显着增加。在丙酰唑基团中,增加的个体比例达到变态比对照的平均时间更快,表明对甲状腺系统的刺激作用。在2个月后,在低剂量男性中,睾丸尺寸,精子和Mullerian管道成熟度降低,与对照组相比,肝脏体细胞指数在丙酰唑基团中增加。总之,我们的研究结果表明,丙癌唑暴露导致内分泌扰动和随后在青春期明显的肝癌和繁殖作用,表明代谢和男性生殖功能持续破坏。我们的研究结果推进了方法的发展,以确定EDC的内分泌和不良反应。此外,它们增加了对内分泌扰动的理解,并因此增加了两栖动物中氮杂的不良反应风险。

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