首页> 外文期刊>Archives of Environmental Contamination and Toxicology >The Effects of Anti-Androgenic and Estrogenic Disrupting Contaminants on Breeding Gland (Nuptial Pad) Morphology, Plasma Testosterone Levels, and Plasma Vitellogenin Levels in Male Xenopus laevis (African Clawed Frog)
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The Effects of Anti-Androgenic and Estrogenic Disrupting Contaminants on Breeding Gland (Nuptial Pad) Morphology, Plasma Testosterone Levels, and Plasma Vitellogenin Levels in Male Xenopus laevis (African Clawed Frog)

机译:抗雄激素和雌激素破坏性污染物对非洲爪蟾(Xenopus laevis)(非洲爪蛙)繁殖腺(血浆垫)形态,血浆睾丸激素水平和血浆卵黄蛋白原水平的影响

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摘要

Nuptial pads are areas, digits, and forearm characterized by epidermal keratin hooks and dermal breeding glands opening on the epidermis surface in male frogs. The presence of the epidermal hooks and secretory activity of the breeding glands are androgen-dependent and considered functioning during mating. Chemical pollutants released into the aquatic environment by humans are suspected of disrupting the normal hormonal pathways and functioning. Among the best known of these endocrine-disrupting contaminants (EDCs) are compounds that mimic the steroid 17β-estradiol. However, recently specific anti-androgenic activity by certain EDCs, including DDE and several fungicides, have been shown in mammalian studies. The African clawed frog, Xenopus laevis, has been proposed as an ideal species to be used as a model system for screening of endocrine disruptors. In this study we employed a newly developed ELISA for the measurement of plasma vitellogenin (VTG), normally produced in the liver of females under the influence of estrogens but also in males when exposed to exogenous estrogens. Furthermore, we investigated the potential of breeding (nuptial) gland activity to be employed as a biomarker system for screening for anti-androgenic activity by certain EDCs. Our results indicate that the pharmaceutic anti-androgen flutamide did significantly (p < 0.05) effect the androgen-dependent breeding (nuptial) glands and plasma testosterone concentrations in male X. laevis. Our results further confirm that the dicarboximide fungicide vinclozolin mimics the anti-androgenic action of flutamide. Vinclozolin, however, did not significantly effect the plasma testosterone concentration. Results also confirm the ability of 17β-estradiol to stimulate production and release of VTG in the liver of male X. laevis, although we could not confirm the in vivo induction of VTG by estrogenic mimics octylphenol and nonylphenol. Although more dose-response research is needed, this preliminary study confirms the potential of VTG production and breeding gland activity as biomarkers to screen chemicals and environmental samples for estrogenic and anti-androgenic activity using X. laevis males.
机译:婚礼垫是指区域,手指和前臂,其特征是雄性蛙表皮表面上的表皮角蛋白钩和真皮繁殖腺开口。表皮钩的存在和繁殖腺的分泌活性是雄激素依赖性的,被认为在交配过程中起作用。人们怀疑人类释放到水生环境中的化学污染物会破坏正常的激素途径和功能。在这些破坏内分泌的污染物(EDC)中,最著名的是模仿类固醇17β-雌二醇的化合物。但是,最近在哺乳动物研究中显示了某些EDC的特定抗雄激素活性,包括DDE和几种杀真菌剂。非洲爪蛙Xenopus laevis被认为是理想的物种,可用作筛选内分泌干扰物的模型系统。在这项研究中,我们采用了新开发的ELISA方法来测定血浆卵黄蛋白原(VTG),通常在雌激素的作用下在女性肝脏中产生,但在暴露于外源性雌激素的男性中也产生。此外,我们研究了繁殖(婚前)腺体活动被用作生物标志物系统以筛选某些EDC的抗雄激素活性的潜力。我们的研究结果表明,抗雄激素药氟他胺确实显着(p <0.05)影响雄性X.laevis中雄激素依赖性繁殖(正婚)腺和血浆睾丸激素的浓度。我们的结果进一步证实,二羧酰亚胺杀真菌剂长效唑啉模仿氟他胺的抗雄激素作用。然而,Vinclozolin并未显着影响血浆睾丸激素的浓度。结果也证实了17β-雌二醇刺激雄性X.laevis肝脏中VTG产生和释放的能力,尽管我们不能证实雌激素模拟辛基酚和壬基酚在体内诱导VTG。尽管需要进行更多的剂量反应研究,但这项初步研究证实了VTG的生产和繁殖腺活性作为生物标记物的潜力,可以利用X. laevis雄性动物筛选化学物质和环境样品的雌激素和抗雄激素活性。

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    Ecophysiology Laboratory Department of Zoology University of Stellenbosch Stellenbosch 7600 South Africa;

    Ecophysiology Laboratory Department of Zoology University of Stellenbosch Stellenbosch 7600 South Africa;

    Ecophysiology Laboratory Department of Zoology University of Stellenbosch Stellenbosch 7600 South Africa;

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