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Bioassays and biomarkers for ecotoxicological assessment of reclaimed municipal wastewater

机译:用于回收的城市废水的生态毒理学评估的生物测定法和生物标志物

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The aim of this work was to examine the ecotoxicity of reclaimed wastewater by the use of bioassays and the determination of immunological parameters. Secondary and tertiary mucicipal wastewater samples were examined for their physicochemical and microbiological characteristics as well as for their endotoxin concentrations. The ecotoxicological characteristics were assessed by a battery of bioassays, using Vibrio fischeri, Daphnia magna and Tetrahymena thermophilla as test species and phytotoxicity. The mitogenic responses of mouse splenocytes were as well used as bioassay. The cytokines of IL-1, IL-2, IL-10, IFN gamma and TNF alpha, were also determined in the supernatant of splenocyte cultures and served as molecular biomarkers. All bioassays exhibited decrease of the ecotoxicological responses after tertiary treatment. However, mitogenic responses were proved to be more sensitive. IL-1 increased, while IL- 2 production was unaffected. The fact that IL-10 production increased in response to secondary treated effluents in conjunction with the increased endotoxin levels, suggest Th2 type immune responses. Although results obtained from the toxicity bioassays after the tertiary treatment showed comparable results to those of controls, cytokine levels indicated the induction of immune response even after tertiary treatment. Consequently, cytokine production could be used as a sensitive biomarker for the evaluation of treatment efficiency of the reclaimed wastewaters intended for reuse.
机译:这项工作的目的是通过使用生物测定法和确定免疫学参数来检查再生废水的生态毒性。检查了二级和三级市政污水样品的理化和微生物学特征以及内毒素浓度。通过一系列生物测定法评估生态毒理学特征,使用费氏弧菌,巨大水蚤(Daphnia magna)和嗜热四膜虫(Tetrahymena thermophilla)作为测试物种和植物毒性。小鼠脾细胞的促有丝分裂反应也被用作生物测定法。还测定了脾细胞培养物的上清液中IL-1,IL-2,IL-10,IFNγ和TNFα的细胞因子,并用作分子生物标志物。三级处理后,所有生物测定均表现出生态毒理学响应的降低。然而,有丝分裂反应被证明是更敏感的。 IL-1增加,而IL-2的产生不受影响。 IL-10产生响应于二级处理的废水并增加内毒素水平而增加的事实表明Th2型免疫反应。尽管从第三次治疗后的毒性生物测定获得的结果显示出与对照可比的结果,但是细胞因子水平表明甚至在第三次治疗后也诱导了免疫应答。因此,细胞因子的产生可以用作敏感的生物标志物,以评估打算再利用的再生废水的处理效率。

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