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The Antiestrogens Tamoxifen and Fulvestrant Abolish Estrogenic Impacts of 17α-ethinylestradiol on Male Calling Behavior of Xenopus laevis

机译:抗雌激素药他莫昔芬和氟维司群废除17α炔雌醇的雌激素的影响对雄性呼叫行为的爪蟾

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摘要

Various synthetic chemicals released to the environment can interfere with the endocrine system of vertebrates. Many of these endocrine disrupting compounds (EDCs) exhibit estrogenic activity and can interfere with sexual development and reproductive physiology. More recently, also chemicals with different modes of action (MOAs), such as antiestrogenic, androgenic and antiandrogenic EDCs, have been shown to be present in the environment. However, to date EDC-research primarily focuses on exposure to EDCs with just one MOA, while studies examining the effects of simultaneous exposure to EDCs with different MOAs are rare, although they would reflect more real, natural exposure situations. In the present study the combined effects of estrogenic and antiestrogenic EDCs were assessed by analyzing the calling behavior of short-term exposed male Xenopus laevis. The estrogenic 17α-ethinylestradiol (EE2), and the antiestrogenic EDCs tamoxifen (TAM) and fulvestrant (ICI) were used as model substances. As previously demonstrated, sole EE2 exposure (10−10 M) resulted in significant alterations of the male calling behavior, including altered temporal and spectral parameters of the advertisement calls. Sole TAM (10−7 M, 10−8 M, 10−10 M) or ICI (10−7 M) exposure, on the other hand, did not affect any of the measured parameters. If frogs were co-exposed to EE2 (10−10 M) and TAM (10−7 M) the effects of EE2 on some parameters were abolished, but co-exposure to EE2 and ICI (10−7 M) neutralized all estrogenic effects. Thus, although EDCs with antiestrogenic MOA might not exhibit any effects per se, they can alter the estrogenic effects of EE2. Our observations demonstrate that there is need to further investigate the combined effects of EDCs with various, not only opposing, MOAs as this would reflect realistic wildlife situations.
机译:释放到环境中的各种合成化学物质会干扰脊椎动物的内分泌系统。这些内分泌干扰化合物(EDCs)中的许多表现出雌激素活性,并且可以干扰性发育和生殖生理。最近,还显示出环境中还存在具有不同作用方式(MOA)的化学物质,例如抗雌激素,雄激素和抗雄激素的EDC。然而,迄今为止,EDC研究主要集中于仅具有一种MOA的EDC的暴露,而研究同时暴露于具有不同MOA的EDC的影响的研究很少,尽管它们可以反映出更真实,自然的暴露情况。在本研究中,通过分析短期暴露的雄性非洲爪蟾的呼唤行为,评估了雌激素和抗雌激素EDC的联合作用。使用雌激素17α-炔雌醇(EE2)和抗雌激素EDC他莫昔芬(TAM)和氟维司群(ICI)作为模型物质。如前所述,唯一的EE2暴露(10-10 M)导致男性通话行为发生重大变化,包括广告通话的时间和频谱参数发生变化。另一方面,单独的TAM(10-7 M,10-8 M,10-10 M)或ICI(10-7 M)暴露不影响任何测量参数。如果将青蛙同时暴露于EE2(10-10 M)和TAM(10-7 M),则EE2对某些参数的影响会被取消,但同时暴露于EE2和ICI(10-7 M)会中和所有雌激素作用。因此,尽管具有抗雌激素性MOA的EDC本身可能不会表现出任何作用,但它们可以改变EE2的雌激素作用。我们的观察表明,有必要进一步研究EDC与各种(不仅是对立的)MOA的组合作用,因为这将反映现实的野生动植物状况。

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    Frauke Hoffmann; Werner Kloas;

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  • 年(卷),期 -1(7),9
  • 年度 -1
  • 页码 e44715
  • 总页数 8
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