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首页> 外文期刊>Ecological indicators >Are the damaging effects of oil refinery effluents on Corbicula fluminea (mollusca) reversible after its transfer to clean water?
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Are the damaging effects of oil refinery effluents on Corbicula fluminea (mollusca) reversible after its transfer to clean water?

机译:炼油厂流出物对Corbicula Flumuenea(Mollusca)的破坏性效果是可逆的转移到清洁水之后吗?

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The effluent discharged by oil refineries is known for its toxicity caused by its inorganic and organic chemicals. The biological effects of the effluent from a treated oil refinery on the bivalve filter feeder of Corbicula fluminea were assessed. DNA damages were assessed through comet assay, the biochemical parameters were measured based on the activity of enzymes such as catalase (CAT) and glutathione S-transferase (GST). Animals were exposed to treatments with effluent for 6, 24 and 96 h. Test animals were allowed to recover from the exposure period for 24, 72 and 144 h. Although animals exposed to the effluent for 96 h presented genotoxicity, they were fully recovered 144 h after the exposure period was over. The CAT activity of animals exposed to the effluent significantly reduced after 24 h of exposure. However, GST activity increased after 96 h of exposure, and its rate remained high after 144 h of recovery; therefore, there was protective GST activity. The damage detected after 96 h of exposure could have been caused by the polycyclic aromatic hydrocarbons (PAH) herein described as DNA intercalating agents. Other compounds such as monoaromatic ethylbenzene, toluene and xylenes (BTEX) were also detected in the assessed effluent. Our study is the first to use the comet assay as genotoxicity cyto-genetic biomarker to evaluate the overall recovery ability of bivalve mollusks, mainly of C. fluminea, after their exposure to effluent discharged by oil refineries. Further studies can help better understanding the responses from such exposure and improve knowledge about the persistence of certain disturbances even after contamination is over.
机译:通过石油炼油厂排出的流出物以其无机和有机化学品引起的毒性已知。评估了从处理过的炼油厂对Corbicula Flumea的双级溢油厂的生物学效应。通过COMET测定评估DNA损伤,基于酶如过氧化酶(猫)和谷胱甘肽S-转移酶(GST)的活性测量生化参数。将动物暴露于含有流出物6,24和96小时的处理。允许测试动物从暴露时间恢复24,72和144小时。尽管暴露于96小时的流出物的动物呈现出遗传毒性,但在暴露期结束后,它们完全回收了144小时。暴露于24小时后暴露于流出物的动物的猫活性显着降低。然而,在96小时的接触后,GST活性增加,恢复144小时后,其速率保持高;因此,存在保护性GST活性。暴露96小时后检测到的损伤可能是由本文所述多环芳烃(PAH)描述为DNA插层的引起的。在评估的流出物中还检测到其他化合物如单芳乙苯,甲苯和二甲苯(BTEX)。我们的研究是第一个使用Comet测定作为基因毒性的细胞遗传生物标志物,以评估双抗体软体动物的总回收能力,主要是C. Marumea,在其暴露于通过炼油厂排出的流出物之后。进一步的研究可以帮助更好地理解这种暴露的反应,并在污染结束后即使在污染结束后也能提高关于某些干扰的持久性的知识。

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