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二恶英暴露对赤子爱胜蚓的影响:通过专家系统整合生物标志物数据,对蚯蚓中污染物诱导的应激综合征的发展进行分级。

Effects of dioxin exposure in Eisenia andrei: integration of biomarker data by an Expert System to rank the development of pollutant-induced stress syndrome in earthworms.

机构信息

Department of Environmental and Life Sciences (DiSAV), University of Piemonte Orientale A. Avogadro , Via T. Michel 11, 15121 Alessandria, Italy.

出版信息

Chemosphere. 2011 Oct;85(6):934-42. doi: 10.1016/j.chemosphere.2011.06.059. Epub 2011 Jul 20.

Abstract

A battery of biomarkers has recently been developed in the earthworm Eisenia andrei. In this study, different biomarkers (i.e. Ca²⁺-ATPase activity, lysosomal membrane stability-LMS, lysosomal lipofuscin and neutral lipid content) were utilized to evaluate the alterations in the physiological status of animals, induced by exposure for 3d to different sublethal concentrations of TCDD (2,3,7,8-tetrachlorodibenzo-p-dioxin) (1.5 × 10⁻³, 1.5 × 10⁻², 1.5×10⁻¹ ng mL⁻¹) utilizing the paper contact toxicity test. Lysosome/cytoplasm volume ratio and DNA damage were also evaluated as a biomarker at the tissue level and as a biomarker of genotoxicity, respectively. Moreover, the NR retention time assay conditions were optimized for the determination of in vivo LMS in earthworm coelomocytes. The results demonstrate that LMS and Ca²⁺-ATPase activity were early warning biomarkers able to detect the effects of minimal amounts of TCDD and that biomarkers evaluated at the tissue level are important for following the evolution of the stress syndrome in earthworms. To evaluate the health status of the animals, an Earthworm Expert System (EES) for biomarker data integration and interpretation was developed. The EES proved to be a suitable tool able to rank, objectively, the different levels of the stress syndrome in E. andrei induced by the different concentrations of TCDD.

摘要

最近在赤子爱胜蚓(Eisenia andrei)中开发了一系列生物标志物。在这项研究中,利用不同的生物标志物(即 Ca²⁺-ATPase 活性、溶酶体膜稳定性-LMS、溶酶体脂褐素和中性脂质含量)来评估暴露于不同亚致死浓度的 TCDD(2,3,7,8-四氯二苯并对二恶英)(1.5×10⁻³、1.5×10⁻²、1.5×10⁻¹ng/mL)3 天后动物生理状态的变化,采用纸片接触毒性试验。溶酶体/细胞质体积比和 DNA 损伤也分别作为组织水平的生物标志物和遗传毒性的生物标志物进行评估。此外,还优化了 NR 保留时间测定法条件,以确定蚯蚓体腔细胞中的体内 LMS。结果表明,LMS 和 Ca²⁺-ATPase 活性是能够检测到 TCDD 极少量影响的早期预警生物标志物,而在组织水平评估的生物标志物对于跟踪蚯蚓应激综合征的演变非常重要。为了评估动物的健康状况,开发了一个用于生物标志物数据集成和解释的蚯蚓专家系统(EES)。EES 被证明是一种合适的工具,能够客观地对不同浓度 TCDD 诱导的赤子爱胜蚓不同应激综合征水平进行排序。

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