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首页> 外文期刊>Environmental Science: Nano >Nanoparticles based sunscreens provoke adverse effects on marine microalgae Dunaliella tertiolecta
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Nanoparticles based sunscreens provoke adverse effects on marine microalgae Dunaliella tertiolecta

机译:基于纳米粒子的防晒挑起对海洋Microalgae Dunaliella Tertiolecta的不利影响

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Sunscreens represent one of the main sources of engineered TiO2 and ZnO nanoparticles (NPs) in coastal ecosystems, especially during the summer period. To understand the effective environmental impact of NPs in commercial sunscreens, this study assesses the effect of TiO2 and ZnO NPs extracted from three commercial products (S2; S10; S11) upon marine microalgae Dunaliella tertiolecta by evaluating its growth inhibition, oxidative stress and DNA damage. Algae were exposed to both the sunscreen formulations containing NPs and a sunscreen without NPs. Results showed that algae growth inhibition was affected by the extracted NPs (EC20 S2: 9.2 mg Ti L-1; EC20 S10: 0.49 mg Ti L-1; EC20 S11: 14 mg Ti L-1), and the algae was generally biostimulated by the sunscreen formulations, due to the presence of other components that could enhance algal growth. Among the sunscreens containing NPs, relevant effects, mainly as ROS production and DNA damage, were evidenced when both TiO2 and Zn were present (S10; S11). Moreover, lower effects were always observed for the sunscreens and the corresponding extracts, compared to the effects of industrial NPs. These findings suggest that the product formulation may mitigate toxic effects of NPs either by direct modification of properties or by providing organic and inorganic nutrients that biostimulate microalgae growth. The NPs extracted from sunscreens showed responses that cannot be predicted solely from the response of industrial nanoparticles, suggesting that the aging in sunscreens can influence the final toxicity of nanoparticles. In conclusion, the adverse effects of sunscreens upon microalgae could not be solely attributed to the NPs, but also to the combined action of multiple components.
机译:防晒霜代表沿海生态系统中的工程TiO2和ZnO纳米粒子(NPS)的主要来源之一,特别是在夏季期间。要了解NPS在商业防晒中的有效环境影响,通过评估其生长抑制,氧化应激和DNA损伤,评估从三种商业产品中提取的TiO2和ZnO NP的作用(S2; S2; S11)。通过评估其生长抑制,氧化应激和DNA损伤。藻类暴露于含有NPS的防晒制剂和没有NPS的防晒霜。结果表明,藻类生长抑制受提取的NPS(EC20 S2:9.2mg Ti L-1; EC20 S10:0.49mg Ti L-1; EC20 S11:14mg Ti L-1),藻类通常是生物刺激的通过防晒制剂,由于存在可以增强藻类生长的其他组分。当存在TiO 2和Zn时,在含有NPS的含NPS,相关效果的相关效果主要被证明(S10; S11)。此外,与工业NPS的影响相比,始终观察到防晒剂和相应提取物的较低效果。这些发现表明,产品配方可以通过直接改性性质或通过提供生物刺激微藻生长的有机和无机营养物来减轻NPS的毒性作用。从防晒系统中提取的NPS显示出不能完全从工业纳米颗粒的反应预测的反应,表明防晒剂中的衰老可以影响纳米颗粒的最终毒性。总之,防晒剂对微藻的不利影响不能仅归因于NPS,而且不能归因于多个组分的组合作用。

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