首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Genotoxicity of citrus wastewater in prokaryotic and eukaryotic cells and efficiency of heterogeneous photocatalysis by TiO2
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Genotoxicity of citrus wastewater in prokaryotic and eukaryotic cells and efficiency of heterogeneous photocatalysis by TiO2

机译:柑橘废水在原核和真核细胞中的遗传毒性及二氧化钛光催化非均相催化的效率

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摘要

The presence of (±)α-pinene, (+) β-pinene, (+)3-carene, and R-(+)limonene terpenes in wastewater of a citrus transformation factory was detected and analyzed, in a previous study, by using Solid Phase Micro-extraction (SPME) followed by GC analyses. Purpose of that research was to compare the genotoxic responses of mixtures of terpenes with the genotoxicity of the individual compounds, and the biological effects of actual wastewater. Genotoxicity was evaluated in the Salmonella reversion assay (Ames test) and in V79 cells by Comet assay. Ames tests indicated that the four single terpenes did not induce an increase of revertants frequency. On the contrary, the mixtures of terpenes caused, in the presence of metabolic activation, a highly significant increase of the revertants in TA100 strain in comparison to the control. The Comet assay showed a significant increase in DNA damage in V79 cells treated for 1 h with single or mixed terpenes. Moreover, the actual wastewater was found highly genotoxic in bacterial and mammalian cells. Photocatalytic tests completely photodegraded the pollutants present in aqueous wastewater and the initial high genotoxicity of samples of wastewater collected during the run, was completely lose in 3 h of irradiation.
机译:在先前的研究中,通过分析,对柑桔转化工厂废水中的(±)α-pine烯,(+)β-pine烯,(+)3-胡萝卜素和R-(+)柠檬烯萜烯进行了检测和分析。使用固相微萃取(SPME),然后进行GC分析。该研究的目的是比较萜烯混合物的遗传毒性反应与单个化合物的遗传毒性,以及实际废水的生物效应。在沙门氏菌逆转试验(Ames试验)和V79细胞中通过彗星试验评估了基因毒性。 Ames试验表明,四个单一的萜烯不会引起回复子频率的增加。相反,萜烯的混合物在存在代谢活化的情况下引起与对照相比TA100菌株中回复子的高度显着增加。彗星试验显示,用单一或混合萜烯处理1小时的V79细胞的DNA损伤显着增加。此外,发现实际的废水在细菌和哺乳动物细胞中具有很高的遗传毒性。光催化测试完全光降解了废水中存在的污染物,并且在运行过程中收集的废水样品最初的高遗传毒性在照射3小时后完全消失。

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