首页> 美国卫生研究院文献>Environmental Health Perspectives >Bisphenol A Induces Superfeminization in the Ramshorn Snail (Gastropoda: Prosobranchia) at Environmentally Relevant Concentrations
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Bisphenol A Induces Superfeminization in the Ramshorn Snail (Gastropoda: Prosobranchia) at Environmentally Relevant Concentrations

机译:双酚A在与环境相关的浓度下诱导Ramshorn蜗牛(Gastropoda:Prosobranchia)中的超女性化。

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摘要

Previous investigations have shown that bisphenol A (BPA) induces a superfeminization syndrome in the freshwater snail Marisa cornuarietis at concentrations as low as 1 μg/L. Superfemales are characterized by the formation of additional female organs, enlarged accessory sex glands, gross malformations of the pallial oviduct, and a stimulation of egg and clutch production, resulting in increased female mortality. However, these studies were challenged on the basis of incomplete experimentation. Therefore, the objective of the current approach was to bridge several gaps in knowledge by conducting additional experiments. In an initial series of experiments, study results from the reproductive phase of the snails were evaluated in the sub-micrograms per liter range. Before and after the spawning season, superfemale responses were observed [NOEC (no observed effect concentration) 7.9 ng/L, EC10 (effective concentration at 10%) 13.9 ng/L], which were absent during the spawning season. A further experiment investigated the temperature dependence of BPA responses by exposing snails at two temperatures in parallel. The adverse effect of BPA was at least partially masked at 27°C (EC10 998 ng/L) when compared with 20°C (EC10 14.8 ng/L). In M. cornuarietis, BPA acts as an estrogen receptor (ER) agonist, because effects were completely antagonized by a co-exposure to tamoxifen and Faslodex. Antiandrogenic effects of BPA, such as a significant decrease in penis length at 20°C, were also observed. Competitive receptor displacement experiments indicate the presence of androgen- and estrogen-specific binding sites. The affinity for BPA of the estrogen binding sites in M. cornuarietis is higher than that of the ER in aquatic vertebrates. The results emphasize that prosobranchs are affected by BPA at lower concentrations than are other wildlife groups, and the findings also highlight the importance of exposure conditions.
机译:先前的研究表明,双酚A(BPA)可以在淡水蜗牛马里萨角(Marisa cornuarietis)中以低至1μg/ L的浓度诱导超女性化综合症。超级女性的特征是形成额外的女性器官,增大的附属性腺,鸡眼输卵管的严重畸形以及刺激卵子和离子的产生,从而导致女性死亡率增加。但是,这些研究是基于不完整的实验而受到挑战的。因此,当前方法的目的是通过进行额外的实验来弥合知识方面的几个空白。在最初的一系列实验中,蜗牛生殖阶段的研究结果以每升亚微克为单位进行评估。在产卵季节之前和之后,观察到超女性反应[产卵季节未出现超强反应[NOEC(未观察到作用浓度)7.9 ng / L,EC10(10%有效浓度)13.9 ng / L]。另一个实验通过将蜗牛同时暴露在两个温度下,研究了BPA响应的温度依赖性。与20°C(EC10 14.8 ng / L)相比,BPA的不利影响在27°C(EC10 998 ng / L)至少被部分掩盖了。在角膜分枝杆菌中,BPA充当雌激素受体(ER)激动剂,因为与他莫昔芬和Faslodex共同暴露可完全拮抗作用。还观察到了BPA的抗雄激素作用,例如在20°C下阴茎长度明显减少。竞争性受体置换实验表明雄激素和雌激素特异性结合位点的存在。角膜分枝杆菌中雌激素结合位点对BPA的亲和力高于水生脊椎动物中ER的亲和力。结果强调,亲分支机构受双酚A的影响浓度低于其他野生动植物种群,研究结果也突出了暴露条件的重要性。

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