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Exposure to Cerium Dioxide Nanoparticles Differently Affect Swimming Performance and Survival in Two Daphnid Species

机译:二氧化铈纳米颗粒的暴露不同地影响两种水蚤种类的游泳性能和存活率

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摘要

The CeO2 NPs are increasingly used in industry but the environmental release of these NPs and their subsequent behavior and biological effects are currently unclear. This study evaluates for the first time the effects of CeO2 NPs on the survival and the swimming performance of two cladoceran species, Daphnia similis and Daphnia pulex after 1, 10 and 100 mg.L−1 CeO2 exposures for 48 h. Acute toxicity bioassays were performed to determine EC50 of exposed daphnids. Video-recorded swimming behavior of both daphnids was used to measure swimming speeds after various exposures to aggregated CeO2 NPs. The acute ecotoxicity showed that D. similis is 350 times more sensitive to CeO2 NPs than D. pulex, showing 48-h EC50 of 0.26 mg.L−1 and 91.79 mg.L−1, respectively. Both species interacted with CeO2 NPs (adsorption), but much more strongly in the case of D. similis. Swimming velocities (SV) were differently and significantly affected by CeO2 NPs for both species. A 48-h exposure to 1 mg.L−1 induced a decrease of 30% and 40% of the SV in D. pulex and D. similis, respectively. However at higher concentrations, the SV of D. similis was more impacted (60% off for 10 mg.L−1 and 100 mg.L−1) than the one of D. pulex. These interspecific toxic effects of CeO2 NPs are explained by morphological variations such as the presence of reliefs on the cuticle and a longer distal spine in D. similis acting as traps for the CeO2 aggregates. In addition, D. similis has a mean SV double that of D. pulex and thus initially collides with twice more NPs aggregates. The ecotoxicological consequences on the behavior and physiology of a CeO2 NPs exposure in daphnids are discussed.
机译:CeO2 NP在工业上的使用越来越多,但是目前尚不清楚这些NP的环境释放及其后续行为和生物学效应。这项研究首次评估了CeO2 NPs在1,10和100 mg.L −1 CeO2暴露于10 mg和100 mg后对两个螯虾物种Daphnia similis和Daphnia pulex的存活和游泳性能的影响。 48小时进行了急性毒性生物测定,以确定暴露的水蚤的EC50。记录了两个水蚤的游泳行为,以测量在暴露于聚集的CeO2 NP后的游泳速度。急性生态毒性表明,D。similis对CeO2 NP的敏感性是D. pulex的350倍,显示48小时EC50为0.26 mg.L -1 和91.79 mg.L -1 。两种物种都与CeO2 NP相互作用(吸附),但在D. similis的情况下相互作用更强。两种物种的CeO2 NPs对游泳速度(SV)的影响不同,且显着影响。 48 h暴露于1 mg.L -1 会分别导致D. pulex和D. similis的SV分别降低30%和40%。但是,在较高浓度下,对D. similis的SV的影响比对D. similis的SV影响更大(10 mg.L -1 和100 mg.L -1 降低60%)。 D. pulex。 CeO2 NPs的这些种间毒性作用可以通过形态变异来解释,例如在角质层中存在凹凸纹,并且在作为CeO2聚集体的诱捕物的拟南芥中有较长的远端脊柱。此外,D。similis的平均SV是D. pulex的两倍,因此最初与两倍多的NP聚集体发生碰撞。讨论了对蚤中CeO2 NPs暴露行为和生理的生态毒理后果。

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