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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Toxicological characterisation of sludge from sewage treatment plants using toxicity identification evaluation protocols based on in vitro toxicity tests.
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Toxicological characterisation of sludge from sewage treatment plants using toxicity identification evaluation protocols based on in vitro toxicity tests.

机译:使用基于体外毒性测试的毒性鉴定评估方案,对污水处理厂的污泥进行毒理学表征。

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摘要

The ecotoxicological characterisation of complex mixtures, such as sludge from sewage treatment plants, is complex. Toxicity identification evaluation (TIE) protocols, developed by the United States Environmental Protection Agency (US EPA); to identify toxic pollutants in complex effluents, are useful tools in this context; to solve the difficulties in assessing unknown organic pollutants by analytical methods, the usefulness of bioassays to detect the relevant (toxic) organic compounds present in complex samples, and the possibilities of in vitro cytotoxicity tests as screening tools, offers a profitable combination. The sludge obtained from a sewage treatment plant was extracted by acetonitrile using a microwave extractor and fractionated in an HPLC system. The toxicity of every fraction was assayed using a RTG-2 cytotoxicty test, based on the fibroblastic RTG-2 fish cell line (ATCC, CCL N. 55). At exponential growth, three endpoints, beta-galactosidase activity, culture viability assayed by the neutral red assay (NR) and inhibition of growth rate using the FRAME KB protein assay (KBP), were used. By plotting the toxicity of each fraction vs elution time, the corresponding "toxicograms" were built. The UV and fluorescence chromatograms are compared to the three toxicograms (one for each toxicity endpoint).
机译:复杂混合物(如污水处理厂产生的污泥)的生态毒理学表征十分复杂。由美国环境保护署(US EPA)制定的毒性鉴定评估(TIE)协议;在这种情况下,识别复杂废水中的有毒污染物是有用的工具;为了解决通过分析方法评估未知有机污染物的困难,生物测定法检测复杂样品中相关(有毒)有机化合物的有用性以及体外细胞毒性试验作为筛查工具的可能性,提供了一种有益的组合。使用微波萃取器通过乙腈萃取从污水处理厂获得的污泥,并在HPLC系统中进行分馏。基于成纤维细胞RTG-2鱼细胞系(ATCC,CCL N.55),使用RTG-2细胞毒性试验测定每个部分的毒性。在指数增长时,使用了三个终点:β-半乳糖苷酶活性,通过中性红测定(NR)测定的培养活力和使用FRAME KB蛋白测定(KBP)抑制生长速率。通过绘制每个馏分的毒性与洗脱时间的关系图,可以建立相应的“毒性图”。将紫外线色谱图和荧光色谱图与三个毒性图进行比较(每个毒性终点一个)。

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