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Toxicity Evaluation of Quantum Dots (ZnS and CdS) Singly and Combined in Zebrafish (Danio rerio)

机译:斑马鱼(斑马鱼)单独和组合的量子点(ZnS和CdS)的毒性评估

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摘要

The exponential growth of nanotechnology has led to the production of large quantities of nanomaterials for numerous industrial, technological, agricultural, environmental, food and many other applications. However, this huge production has raised growing concerns about the adverse effects that the release of these nanomaterials may have on the environment and on living organisms. Regarding the effects of QDs on aquatic organisms, existing data is scarce and often contradictory. Thus, more information is needed to understand the mechanisms associated with the potential toxicity of these nanomaterials in the aquatic environment. The toxicity of QDs (ZnS and CdS) was evaluated in the freshwater fish . The fishes were exposed for seven days to different concentrations of QDs (10, 100 and 1000 µg/L) individually and combined. Oxidative stress enzymes (catalase, superoxide dismutase and glutathione -transferase), lipid peroxidation, HSP70 and total ubiquitin were assessed. In general, results suggest low to moderate toxicity as shown by the increase in catalase activity and lipid peroxidation levels. The QDs (ZnS and CdS) appear to cause more adverse effects singly than when tested combined. However, LPO results suggest that exposure to CdS singly caused more oxidative stress in zebrafish than ZnS or when the two QDs were tested combined. Levels of Zn and Cd measured in fish tissues indicate that both elements were bioaccumulated by fish and the concentrations increased in tissues according to the concentrations tested. The increase in HSP70 measured in fish exposed to 100 µg ZnS-QDs/L may be associated with high levels of Zn determined in fish tissues. No significant changes were detected for total ubiquitin. More experiments should be performed to fully understand the effects of QDs exposure to aquatic biota.
机译:纳米技术的迅猛发展已经导致了用于许多工业,技术,农业,环境,食品和许多其他应用的大量纳米材料的生产。然而,这种巨大的生产引起了人们越来越多的担忧,这些纳米材料的释放可能会对环境和生物造成不利影响。关于量子点对水生生物的影响,现有数据很少,而且常常是矛盾的。因此,需要更多信息来了解与这些纳米材料在水生环境中的潜在毒性相关的机理。评估了淡水鱼中QDs(ZnS和CdS)的毒性。将这些鱼单独和混合暴露于不同浓度的QD(10、100和1000 µg / L)达7天。评估了氧化应激酶(过氧化氢酶,超氧化物歧化酶和谷胱甘肽转移酶),脂质过氧化,HSP70和总泛素。通常,结果表明低至中度毒性,如过氧化氢酶活性和脂质过氧化水平的增加所表明。量子点(ZnS和CdS)似乎比组合测试单独引起更多的不利影响。但是,LPO结果表明,与ZnS或两个QD组合测试时,与CdS相比,单独暴露于CdS引起的氧化应激更大。鱼组织中测得的锌和镉含量表明,这两种元素均被鱼生物富集,并且根据测试的浓度,其在组织中的浓度增加。在暴露于100 µg ZnS-QDs / L的鱼中测得的HSP70升高可能与鱼组织中高水平的Zn有关。未检测到总泛素的显着变化。应该进行更多的实验以充分了解QD暴露于水生生物区系的影响。

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