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The combined bacterial Lux-Fluoro test for the detection and quantification of genotoxic and cytotoxic agents in surface water: results from the 'Technical Workshop on Genotoxicity Biosensing'

机译:用于检测和定量地表水中遗传毒性和细胞毒性试剂的组合细菌Lux-Fluoro测试:“遗传毒性生物传感技术研讨会”的结果

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摘要

The bioassay Lux-Fluoro test was developed for the rapid detection and quantification of environmental pollutants with genotoxic and/or cytotoxic potential. This bacterial test system uses two different reporter genes whose gene products and their reactions, respectively, can be measured easily and simultaneously by optical methods. Genotoxicity is measured by the increase of bioluminescence in genetically modified bacteria which carry a plasmid with a complete lux operon for the enzyme luciferase from the marine photobacterium P. leiognathi under the control of a DNA-damage dependent so-called SOS promoter. If the deoxyribonucleic acid in these bacteria is damaged by a genotoxic chemical, the SOS promoter is turned on and the lux operon is expressed. The newly synthesized luciferase reacts immediately with its substrate thereby producing bioluminescence in a damage-proportional manner. In the second part of the system, genetically modified bacteria carry the gene for the green fluorescent protein (gfp) from the jellyfish Aequora victoria downstream from a constitutively expressed promoter. These bacteria are fluorescent under common growth conditions. If their cellular metabolism is disturbed by the action of cytotoxic chemicals, the fluorescence decreases in a dose-proportional manner. The combined Lux-Fluoro test is shown to be well suited for the biological assessment of the geno- and cytotoxicity of a series of model agents and environmental samples at the Technical Workshop on Genotoxicity Biosensing (TECHNOTOX).
机译:生物测定法Lux-Fluoro测试旨在快速检测和定量具有潜在遗传毒性和/或细胞毒性的环境污染物。该细菌测试系统使用两个不同的报告基因,可以通过光学方法轻松,同时地测量其基因产物及其反应。遗传毒性是通过转基因细菌中生物发光的增加来衡量的,这些细菌携带的质粒带有完整的勒索操纵子,该质粒在来自DNA损伤的所谓SOS启动子的控制下,来自海洋光细菌P. leiognathi的荧光素酶。如果这些细菌中的脱氧核糖核酸被遗传毒性化学物质破坏,则打开SOS启动子并表达lux操纵子。新合成的荧光素酶立即与其底物反应,从而以与伤害成比例的方式产生生物发光。在该系统的第二部分中,转基因细菌携带来自构成表达启动子下游的水母维多利亚equequ的绿色荧光蛋白(gfp)基因。这些细菌在常见的生长条件下会发出荧光。如果它们的细胞代谢受到细胞毒性化学物质的干扰,则荧光会按剂量比例降低。在基因毒性生物传感技术研讨会(TECHNOTOX)上,结合的Lux-Fluoro测试显示非常适合对一系列模型药物和环境样品的基因和细胞毒性进行生物学评估。

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