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Chironomus riparius exposure to fullerene-contaminated sediment results in oxidative stress and may impact life cycle parameters

机译:滨海藜暴露于富勒烯污染的沉积物中会导致氧化应激并可能影响生命周期参数

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摘要

A key component of understanding the potential environmental risks of fullerenes (C60) is their potential effects on benthic invertebrates. Using the sediment dwelling invertebrate Chironomus riparius we explored the effects of acute (12 h and 24 h) and chronic (10 d, 15 d, and 28 d) exposures of sediment associated fullerenes. The aims of this study were to assess the impact of exposure to C60 in the sediment top layer ((0.025, 0.18 and 0.48) C60 mg/cm2) on larval growth, oxidative stress and emergence rates and to quantify larval body burdens in similarly exposed organisms. Oxidative stress localization was observed in the tissues next to the microvilli and exoskeleton through a method for identifying oxidative stress reactions generated by reactive oxygen species. Rapid intake of fullerenes was shown in acute experiments, whereas body residues decreased after chronic exposure. Transmission electron microscopy analysis revealed oxidative damage and structural changes in cells located between the lipid droplets and next to the microvilli layer in fullerene exposed samples. Fullerene associated sediments also caused changes in the emergence rate of males and females, suggesting that the cellular interactions described above or other effects from the fullerenes may influence reproduction rates.
机译:了解富勒烯(C60)潜在环境风险的关键因素是它们对底栖无脊椎动物的潜在影响。利用沉积物无脊椎动物Chironomus riparius,我们研究了沉积物相关富勒烯的急性暴露(12 h和24 h)和慢性暴露(10 d,15 d和28 d)的影响。这项研究的目的是评估沉积物顶层中C60暴露((0.025、0.18和0.48)C60 mg / cm 2 )对幼虫生长,氧化应激和出苗率的影响。以量化暴露在类似生物中的幼虫体负担。通过鉴定由活性氧产生的氧化应激反应的方法,在靠近微绒毛和外骨骼的组织中观察到氧化应激的定位。急性实验显示富勒烯的快速摄入,而长期暴露后人体残留减少。透射电子显微镜分析显示富勒烯暴露样品中位于脂滴之间和微绒毛层旁边的细胞的氧化损伤和结构变化。富勒烯相关的沉积物也引起了雄性和雌性的出苗率的变化,表明上述的细胞相互作用或富勒烯的其他作用可能影响繁殖率。

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