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Toxicity assessment of 255 chemicals to pure cultured nitrifying bacteria using biosensor

机译:使用生物传感器评估255种化学品对纯培养硝化细菌的毒性

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The bioassay has been attracting attention as a method of toxicity assessments of micropollutants in the environment. In this study, we report the characteristics (selectivity and sensitivity) of the nitrifying bacteria biosensor for 255 kinds of chemicals as a model of chemical contaminant in the environment and the results of evaluation of mixed samples of several substances. In the nitrifying bacteria respiration inhibition test using the biosensor, 56 chemicals were detected. It was found that this biosensor is especially sensitive to seven chemicals that have a thiocarbonyl functional group (>C=S), such as a thioamide group of thiocarbamate group. These chemicals are considered to specifically inhibit AMO by chelation of copper. The samples consisted of a mixture of seven types of anilines that inhibit respiration in the bacteria, a mixture of five types of chlorophenols, and a mixture of eight types of substances that contain thiocarbonyl groups were examined. All of the mixed samples inhibited the respiration of the nitrifying bacteria more than 10% by the inhibition rate, and observed a synergistic effects of the substances in the samples. [References: 4]
机译:作为测定环境中微量污染物毒性的一种方法,生物测定法已引起人们的关注。在这项研究中,我们报告了硝化细菌生物传感器对255种化学品的特性(选择性和灵敏度),作为环境中化学污染物的模型,以及几种物质混合样品的评估结果。在使用生物传感器的硝化细菌呼吸抑制测试中,检测到56种化学物质。发现该生物传感器对具有硫羰基官能团(> C = S)的七种化学物质特别敏感,例如硫代氨基甲酸酯基团的硫酰胺基。这些化学物质被认为通过铜的螯合特异性抑制AMO。样品由抑制细菌呼吸的七种苯胺混合物,五种氯酚混合物和八种含有硫代羰基物质的混合物组成。所有混合样品以抑制率抑制硝化细菌的呼吸超过10%,并观察到样品中物质的协同作用。 [参考:4]

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