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Toxicological foundations of ecological risk assessment: biomarker development and interpretation based on laboratory and wildlife species.

机译:生态风险评估的毒理学基础:基于实验室和野生动植物物种的生物标记开发和解释。

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摘要

Ecological risk assessments based on chemical residue analysis and species demographics tend to ignore the bioavailability and bioaccumulation of the chemicals of concern. This study describes the incorporation of mechanistically based biomarkers into an ecological risk assessment of a poly-cyclic aromatic hydrocarbon (PAH)-contaminated site. A combination of soil residue analysis, tissue residue analysis, biomarkers in one-site trapped animals and biomarkers in animals confined to enclosures was used. In particular, the use of captured deer mice (Peromyscus maniculatus) for these studies is compared to the use of laboratory-raised deer mice placed in enclosures. This study indicates that the higher degree of variability in the responses of wild deer mice make the use of enclosure studies advantageous. Positive control studies performed by dosing laboratory-raised deer mice with the same PAHs as found on the site were used to validate this approach. These studies indicate that immune suppression occurred at PAH concentrations an order of magnitude below those required for the induction of ethoxyresorufin-O-dealkylase activity.
机译:基于化学残留物分析和物种人口统计的生态风险评估往往忽略了所关注化学物质的生物利用度和生物蓄积性。这项研究描述了将基于机械的生物标记物纳入多环芳烃(PAH)污染地点的生态风险评估中。将土壤残留物分析,组织残留物分析,一处被困动物的生物标志物和局限在围栏内的动物的生物标志物结合使用。特别是,将用于这些研究的捕获的鹿小鼠(Peromyscus maniculatus)的使用与放置在围栏中的实验室饲养的鹿小鼠的使用进行了比较。这项研究表明,野鹿小鼠的反应具有较高的变异性,因此使用封闭研究是有利的。通过给实验室饲养的鹿小鼠服用与现场相同的PAHs进行的阳性对照研究来验证这种方法。这些研究表明,在PAH浓度下,免疫抑制发生的程度比诱导乙氧基间苯二酚-O-脱烷基酶活性所需的浓度低一个数量级。

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