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Toxicity and transfer of metal oxide nanoparticles from mieroalgae to sea urchin larvae

机译:金属氧化物纳米颗粒从微藻到海胆幼虫的毒性和转移

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Nanoparticles (NPs) contained in commercial products are released and enter into the aquatic ecosystem, posing serious possible risks to the environment and affecting the food chain. Therefore, investigating the potential toxicity of NPs on aquatic organisms has become an important issue. This study assessed the toxicity and trophic transfer of metal oxide NPs from marine mieroalgae (Cricosphaera elongata) to the larvae of the sea urchin Pamcentrotus lividus. Larvae (24 h old) were fed on 2000 cell mL~(-1)48 h of mieroalgae contaminated with 5 mg L~(-1) of several metal oxide NPs (SiO2, SnO2, CeO2, Fe3O4>for 15 days. Larval viability and development were monitored from the 4-arm stage to the 8-arm pluteus stage. A significant decrease in survival was observed in larvae fed with mieroalgae exposed to SiO2 and CeO2 NPs. Abnormal development, characterised by skeletal degeneration and altered rudiment growth, was observed in all larvae fed with contaminated NP algae. .Our findings revealed that SiO2 and CeO2 NPs exerted a toxic effect in the trophic interaction analysed, by reducing sea urchin larval viability, and all metal oxide NPs induced toxicological effects. In conclusion, metal oxide NPs may enter the food chain and become bioavailable for marine organisms, affecting their development.
机译:商业产品中所含的纳米颗粒(NPs)被释放并进入水生生态系统,对环境构成严重的潜在风险并影响食物链。因此,研究NP对水生生物的潜在毒性已成为重要的问题。这项研究评估了金属氧化物NPs从海洋微藻(Cricosphaera elongata)到海胆Pamcentrotus lividus幼虫的毒性和营养转移。将幼虫(24小时大)喂食被5 mg L〜(-1)几种金属氧化物NPs(SiO2,SnO2,CeO2,Fe3O4>)污染的2000细胞mL〜(-1)48小时的微藻,持续15天。从4臂期到8臂节肢期监测生存能力和发育,用暴露于SiO2和CeO2 NPs的微藻喂养的幼虫存活率显着下降,发育异常,其特征是骨骼变性和生长发育改变,我们的研究结果表明,SiO2和CeO2 NPs通过降低海胆幼虫的生存力对所分析的营养相互作用产生了毒性作用,而所有金属氧化物NPs均具有毒理作用。氧化物NP可能会进入食物链并成为海洋生物的生物利用度,从而影响其发展。

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