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Are steroids really the cause for fish feminization? A mini-review of in vitro and in vivo guided TIEs

机译:类固醇真的是鱼类女性化的原因吗?体外和体内指导的TIE的简要回顾

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摘要

Feminization of fish has been reported throughout the world in freshwater and marine systems. While the population impacts are conflictive, enough negative effects warrant additional research into causation. In order to ascertain the identities of specific feminizing agents, variants of toxicity identification evaluations (TIEs) have been employed. The majority of these evaluations have utilized in vitro estrogen receptor-based cell-lines to identify chromatographic fractions that possess biological activity from predominately wastewater derived from municipal treatment facilities and have concluded that synthetic and natural estrogens are the primary cause for feminization of fish. This paper will focus on three aquatic systems impacted by wastewater originating from purely domestic, and industrial/ domestic secondary treatment systems. Wastewater and sediment extracts were evaluated by in vitro and in vivo biological responses in a TIE fractionation design. While in vitro responses tended to mirror in vivo responses in purely domestic wastewater systems, in vitro responses tended to severely underestimate in vivo estrogenic activity when normalized to estradiol equivalents in more complex systems. TIE fractionation schemes using in vivo biological responses failed to indicate any relationship to steroids in either wastewater or sediment extractions. These data consistently support the view that mechanisms other than direct ER binding and activation by toxicants may be important in the feminization of fish particularly residing in habitats that receive complex wastewater or agricultural effluents.
机译:全世界淡水和海洋系统中鱼类的女性化都有报道。尽管人口影响是相互矛盾的,但足够的负面影响值得对因果关系进行更多研究。为了确定特定女性化剂的身份,已经使用了毒性鉴定评估(TIE)的变体。这些评估中的大多数已利用基于体外雌激素受体的细胞系来鉴定主要来自市政处理设施的废水具有生物活性的色谱级分,并得出结论认为合成和天然雌激素是鱼类女性化的主要原因。本文将重点关注三种纯水系统,这些纯水系统受到纯住宅,工业/住宅二级处理系统产生的废水的影响。在TIE分馏设计中,通过体外和体内生物学反应评估废水和沉积物提取物。虽然体外反应倾向于在纯家用废水系统中反映出体内反应,但当将其标准化为更复杂系统中的雌二醇当量时,体外反应往往会严重低估体内雌激素活性。使用体内生物反应的TIE分馏方案未能表明与废水或沉淀物提取中的类固醇有任何关系。这些数据始终支持这样的观点,即直接ER结合和有毒物质激活以外的机制在鱼类女性化中尤其重要,特别是居住在接受复杂废水或农业污水的生境中的鱼类。

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