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首页> 外文期刊>Environmental toxicology and chemistry >PHYSIOLOGICAL AND BIOCHEMICAL PERTURBATIONS IN DAPHNIA MAGNA FOLLOWING EXPOSURE TO THE MODEL ENVIRONMENTAL ESTROGEN DIETHYLSTILBESTROL
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PHYSIOLOGICAL AND BIOCHEMICAL PERTURBATIONS IN DAPHNIA MAGNA FOLLOWING EXPOSURE TO THE MODEL ENVIRONMENTAL ESTROGEN DIETHYLSTILBESTROL

机译:暴露于环境雌激素二乙基硬脂醇模型后水蚤的生理和生物化学扰动

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摘要

The estrogenic properties of many environmental contaminants, such as DDE and PCBs, have been associated with reproductive failure in a variety of vertebrate species. While estrogens have been measured in many invertebrate species, the function of this hormone in invertebrates is controversial. The objective of the present study was to identify possible physiological and biochemical target sites for the estrogenic effects of some xenobiotics on the freshwater crustacean Daphnia magna using the model environmental estrogen diethylstilbestrol (DES). Chronic exposure of daphnids to 0.50 mg/L DES reduced molting frequency among first-generation juveniles and decreased fecundity of second-generation daphnids. Adult first-generation daphnids chronically exposed to DES, as well as adult daphnids acutely exposed to DES for only 48 h, were examined for steroid hormone metabolic capabilities using testosterone as the model steroid. The rate of elimination of two major hydroxyl-ated metabolites of testosterone was significantly reduced, and elimination of glucose conjugates of testosterone was significantly elevated from exposure to 0.50 mg/L DES. These results demonstrate that multigeneration exposure of daphnids to DES results in reduced fecundity and altered steroid metabolic capabilities. Thus, some arthropods, like vertebrates, are sensitive to the effects of endocrine-disrupting chemicals.
机译:许多环境污染物(如DDE和PCBs)的雌激素特性已与多种脊椎动物物种的生殖衰竭相关。尽管在许多无脊椎动物中都检测到了雌激素,但这种激素在无脊椎动物中的功能还是有争议的。本研究的目的是使用模型环境雌激素二乙基己烯雌酚(DES)来确定某些异生素对淡水甲壳类水蚤的雌激素作用的可能的生理和生化靶位点。长期将水蚤置于0.50 mg / L DES下,第一代幼虫的蜕皮频率降低,第二代水蚤的繁殖力降低。使用睾丸激素作为模型类固醇,对长期暴露于DES的成年第一代水蚤以及急性暴露于DES仅48小时的成年水蚤进行了类固醇激素代谢能力的检查。暴露于0.50 mg / L DES后,睾丸激素的两种主要羟基化代谢产物的消除速率显着降低,而睾丸激素的葡萄糖缀合物的消除显着提高。这些结果表明,瑞香蝇多代暴露于DES会导致繁殖力降低和类固醇代谢能力改变。因此,某些节肢动物,例如脊椎动物,对破坏内分泌的化学物质的影响敏感。

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