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Does the exposure to salinity variations and water dispersible carbon nanotubes induce oxidative stress in Hediste diversicolor?

机译:暴露于盐度变化和水分散性碳纳米管是否会在Hediste diversicolor中引起氧化应激?

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Salinity plays a fundamental role in naturally fluctuating environments such as estuaries influencing physiological and biochemical performance of inhabiting biota. Moreover salinity is considered one of the main factors influencing nanoparticles' stability. Thus, the aim of the present paper was to show the impacts induced by different salinities (control-28 and 21) on the chemical behavior of water dispersible multi-walled carbon nanotube (MWCNTs-COOH) and the consequent toxicity in the common ragworm Hediste diversicolor, after long term exposure. Results showed a concentration-dependent toxicity in terms of energy reserves and metabolism, oxidative status and neurotoxicity. In addition, under low salinity (21), the toxicity of the carbon NMs was similar to the impacts measured under control (28), although under salinity 28 the concentrations of MWCNTs-COOH used generated greater alterations in LPO levels and antioxidant enzymes (SOD and GPx). These results demonstrate that higher salinity caused the formation of large-size aggregates, which increased the chance of physical retention, such as gravitational sedimentation, interception and straining of f-MWCNTs generating higher cell injuries than the impacts induced in polychaetes sensitivity to these contaminates due to low salinity.
机译:盐度在自然变化的环境中(例如河口)影响着生物群落的生理和生化性能,发挥着重要作用。此外,盐度被认为是影响纳米颗粒稳定性的主要因素之一。因此,本论文的目的是显示不同盐度(对照28和21)对水分散性多壁碳纳米管(MWCNTs-COOH)的化学行为的影响以及在普通豚鼠中的毒性。长期接触后会出现多种颜色。结果表明,在能量储备和代谢,氧化状态和神经毒性方面,存在浓度依赖性的毒性。此外,在低盐度下(21),碳纳米管的毒性类似于在对照下测得的影响(28),尽管在盐度28下,所使用的MWCNTs-COOH的浓度在LPO水平和抗氧化酶(SOD)上产生了更大的变化。和GPx)。这些结果表明,较高的盐度导致大尺寸聚集体的形成,从而增加了物理保留的机会,例如重力沉积,截留和过滤f-MWCNTs产生的细胞伤害高于多壳动物对这些污染物的敏感性所引起的影响。盐度低。

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