首页> 外文期刊>Environmental Toxicology and Chemistry >MIXTURES OF METALS AND POLYNUCLEAR AROMATIC HYDROCARBONS ELICIT COMPLEX, NONADDITIVE TOXICOLOGICAL INTERACTIONS IN MEIOBENTHIC COPEPODS
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MIXTURES OF METALS AND POLYNUCLEAR AROMATIC HYDROCARBONS ELICIT COMPLEX, NONADDITIVE TOXICOLOGICAL INTERACTIONS IN MEIOBENTHIC COPEPODS

机译:金属和多核芳香烃的混合物在中,小足类PE足类中引起复杂,无毒的毒理学相互作用

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The acute toxicity of metal–polynuclear aromatic hydrocarbon (PAH) mixtures (i.e., Cd, Hg, Pb, fluoranthene, and phenanthrene) associated with sediments was assessed in two benthic copepods. Schizopera knabeni was exposed to sediment amended with single contaminants and mixtures. Adult S. knabeni were highly tolerant of single-contaminant exposures to phenanthrene, Cd, Hg, and Pb as well as a mixture of Cd, Hg, and Pb. Binary experiments revealed that although phenanthrene was synergistic with Cd and Hg, the phenanthrene–Cd synergism was much stronger (2.8 times more lethal than predicted). When a mixture of Cd, Hg, and Pb was combined with phenanthrene, a synergistic response was observed, eliciting 1.5 times greater lethality than predicted. A Cd–phenanthrene synergism in S. knabeni was also observed in aqueous exposures, suggesting that the interaction was related to a pharmacological insult rather than a sediment-related exposure effect. An antagonism between Cd, Hg, and Pb was indicated, and this antagonism may have moderated the Cd–phenanthrene synergism in mixtures containing Cd, Hg, Pb, and phenanthrene. Experiments with Amphiascoides atopus revealed that phenanthrene and fluoranthene were each synergistic with Cd in aqueous exposures. Our studies suggest that interactive toxicity among metal–PAH mixtures may be common among benthic copepods and that strong synergistic effects observed in binary mixtures may be moderated in more diverse contaminant mixtures. However, the strength of the observed synergisms raises concerns that established sediment quality criteria may not be protective for organisms jointly exposed to PAH and metals, especially Cd–PAH mixtures.
机译:在两个底栖co足类动物中评估了与沉积物相关的金属-多核芳香烃(PAH)混合物(即Cd,Hg,Pb,荧蒽和菲)的急性毒性。 Schizopera knabeni暴露于用单一污染物和混合物修正的沉积物中。成年的S. knabeni高度耐受菲,Cd,Hg和Pb以及Cd,Hg和Pb混合物的单一污染物暴露。二进制实验表明,尽管菲与镉和汞具有协同作用,但菲-镉的协同作用要强得多(致命性比预期高2.8倍)。当Cd,Hg和Pb的混合物与菲混合使用时,观察到协同反应,致死率比预期高1.5倍。在水暴露中也观察到克氏菌中镉与菲的协同作用,这表明该相互作用与药理作用有关,而不是与沉积物有关的暴露作用有关。指出了Cd,Hg和Pb之间的拮抗作用,这种拮抗作用可能减轻了Cd,Hg,Pb和菲的混合物中Cd-菲的协同作用。用两性霉素Atopus进行的实验表明,在水中暴露时,菲和荧蒽分别与Cd具有协同作用。我们的研究表明,底栖co足类动物中金属-PAH混合物之间的相互作用毒性可能很普遍,而在二元混合物中观察到的强协同作用可能在多种污染物混合物中有所减轻。然而,观察到的协同作用的强度引起人们的关注,即既定的沉积物质量标准可能无法保护共同暴露于多环芳烃和金属,尤其是镉-多环芳烃混合物的生物。

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