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Bioavailability toxicity and bioaccumulation of quantum dot nanoparticles to the amphipod Leptocheirus plumulosus

机译:生物利用度毒性和量子点纳米粒子的生物蓄积到足目Leptocheirus plumulosus

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摘要

Understanding the relative toxicities of different modes of nanoparticle exposure as compared with their dissolved metal ions are emerging areas in ecotoxicology. Here we report on bioavailability, toxicity, and bioaccumulation of carboxyl-functionalized CdSe/ZnS quantum dots (QDs) to the amphipod Leptocheirus plumulosus exposed to equivalent Cd concentrations via dissolved Cd, QDs in water or QDs in algal food. Both modes of QD exposure were accumulated to greater extent than dissolved Cd. Exposure to QDs via algae resulted in high amphipod mortality. Cadmium and Se in amphipods exposed to QDs in water were highly correlated and spatially localized within the amphipod. In contrast, when exposed to QDs via algae the metals were more disperse and not highly correlated suggesting QD dissolution and resultant metal ion toxicity. This study suggests QDs are accumulated to a greater extent than the dissolved ion and could lead to trophic transfer. QDs ingested with algae are bioavailable and result in toxicity which is not observed in the absence of algae.
机译:与溶解的金属离子相比,了解纳米粒子暴露模式的相对毒性是生态毒理学中的出现区域。在这里,我们将羧基官能化CdSe / ZnS量子点(QDS)的生物利用度,毒性和生物累积报告给Amphipod LeptoCheirus衬里,通过溶解的Cd,QD在水中或藻类中的QDS暴露于当量CD浓度。 QD暴露的两种模式比溶解的CD在更大程度上积聚。通过藻类暴露于QDS导致高倍双死亡率。在水中暴露于QDS的Amphipod中的镉和Se在Amphipod内高度相关和空间局部化。相反,当通过藻类暴露于QDS时,金属更加分散,并且不高度相关,表明QD溶解和所得金属离子毒性。本研究表明QDS比溶解的离子更大程度地积聚在更大程度上并导致营养转移。用藻类摄取的QD是生物可利用的,导致在没有藻类的情况下未观察到的毒性。

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