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Combining Different In Vitro Bioassays to Evaluate Genotoxicity of Water-Accommodated Fractions from Petroleum Products

机译:结合不同的体外生物测定法评估石油产品的水容纳级分的遗传毒性

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Genotoxicity assessment is of high relevance for crude and refined petroleum products, since oil compounds are known to cause DNA damage with severe consequences for aquatic biota as demonstrated in long-term monitoring studies. This study aimed at the optimization and evaluation of small-scale higher-throughput assays (Ames fluctuation, micronucleus, Nrf2-CALUX ? ) covering different mechanistic endpoints as first screening tools for genotoxicity assessment of oils. Cells were exposed to native and chemically dispersed water-accommodated fractions (WAFs) of three oil types varying in their processing degree. Independent of an exogenous metabolic activation system, WAF compounds induced neither base exchange nor frame shift mutations in bacterial strains. However, significantly increased chromosomal aberrations in zebrafish liver (ZF-L) cells were observed. Oxidative stress was indicated for some treatments and was not correlated with observed DNA damage. Application of a chemical dispersant increased the genotoxic potential rather by the increased bioavailability of dissolved and particulate oil compounds. Nonetheless, the dispersant induced a clear oxidative stress response, indicating a relevance for general toxic stress. Results showed that the combination of different in vitro assays is important for a reliable genotoxicity assessment. Especially, the ZF-L capable of active metabolism and DNA repair seems to be a promising model for WAF testing.
机译:基因毒性评估对于原油和精制石油产品具有高相关性,因为已知油化合物导致DNA损伤,并且在长期监测研究中所证明的水生生物遗起具有严重后果。本研究旨在优化和评估小规模的高通量测定(AME波动,微核,NRF2-CALUX?),其覆盖不同的机械终点作为油癌遗传毒性评估的第一筛选工具。细胞暴露于在其加工程度上不同的三种油片的天然和化学分散的水容纳级分(WAF)。独立于外源性代谢活化系统,WAF化合物均既不碱交换也不造成细菌菌株。然而,观察到斑马鱼肝(ZF-L)细胞中显着增加的染色体畸变。向某些处理表明氧化应激,并不与观察到的DNA损伤相关。化学分散剂的应用增加了遗传毒性,而是通过溶解和颗粒油化合物的增加的生物利用度增加。尽管如此,分散剂诱导澄清的氧化应激响应,表明对一般有毒应激的相关性。结果表明,不同体外测定的组合对于可靠的遗传毒性评估是重要的。特别是,能够活跃的代谢和DNA修复的ZF-L似乎是WAF测试的有希望的模型。

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