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首页> 外文期刊>Environmental Science and Pollution Research >Phenanthrene alters oxidative stress parameters in tadpoles of Euphlyctis cyanophlyctis (Anura, Dicroglossidae) and induces genotoxicity assessed by micronucleus and comet assay
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Phenanthrene alters oxidative stress parameters in tadpoles of Euphlyctis cyanophlyctis (Anura, Dicroglossidae) and induces genotoxicity assessed by micronucleus and comet assay

机译:菲利的菲利斯(Anura,Dicroglossidae)的蝌蚪在蝌蚪中改变氧化应激参数,并诱导通过微核和彗星测定评估的遗传毒性

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摘要

Phenanthrene (PHE), a tricyclic polycyclic aromatic hydrocarbon (PAH), is ubiquitously found in aquatic environments. It is one of the major components in PAH mixtures. It has been identified as one of the 16 priority PAHs for toxicological evaluations. PHE is reported to induce lethal and sub-lethal toxicity in various aquatic indicator organisms. However, no toxicological data of PHE in anuran amphibians could be found. Amphibian larvae (tadpoles) develop in aquatic habitats. Therefore, exposure to PHE could negatively impact their development and fitness in later periods as they move in to the terrestrial habitat following metamorphosis. In the present study, we have analyzed the effects of PHE in Euphlyctis cyanophlyctis tadpoles. PHE induced concentration-dependent lethal effects in the tadpoles. The estimated LC__(50) values were 16.52, 15.29, 13.69, and 12.28 mg/L at 24, 48, 72, and 96 h of exposure respectively. These LC__(50) values are significantly higher than the reported environmental concentration of PHE. However, the strong negative correlation (R~2 = 0.997, p < 0.001) between the LC__(50) value and exposure time indicates that longer exposure to lower concentration may cause significant lethal effects. Besides, PHE at environmentally relevant concentrations induced significant sub-lethal toxicities. Exposure to sub-lethal concentrations was found to be genotoxic in erythrocyte micronucleus as well as comet assays. Sub-lethal concentrations of PHE significantly increased superoxide dismutase activity and tissue glutathione level as well as induced lipid peroxidation. The present findings clearly indicate that PHE is a potential threat to the early life stages of amphibians. Further investigations are necessary to ascertain the implications of these early effects during adult life stages.
机译:菲(PHE),三环多环芳香烃(PAH),是在水生环境中无所不在。它是在PAH混合物中的主要成分之一。它已被确定为毒理学评估的16种优先多环芳烃之一。 PHE报道诱导各种水生指示生物致死和亚致死毒性。然而,PHE的蜮两栖动物无毒性数据可寻。在水生环境两栖类幼虫(蝌蚪)制定。因此,置身于PHE能负向他们的发展和健身的后期,因为他们在移动到下面变态陆地栖息地造成影响。在本研究中,我们分析PHE的Euphlyctis cyanophlyctis蝌蚪的影响。 PHE诱导蝌蚪浓度依赖性致死作用。所估计的LC __(50)值分别为16.52,15.29,13.69,12.28和毫克/升在24,48,72,和分别曝光96小时。这些LC __(50)值比所报道的PHE环境浓度显著更高。然而,强负相关(R 2 = 0.997,P <0.001)的LC __(50)之间的值和曝光时间表示更长的暴露,以降低浓度可能会导致显著致死作用。此外,在PHE环境相关浓度诱导显著亚致死毒性。暴露于亚致死浓度被认为是在红细胞微核以及彗星实验基因毒性。 PHE的亚致死浓度显著增加超氧化物歧化酶活性和组织谷胱甘肽水平以及诱导的脂质过氧化作用。目前的研究结果清楚地表明,PHE是两栖类动物的早期生命阶段的潜在威胁。进一步的调查是必要的过程中成人生活阶段,以确定这些早期效应的影响。

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