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首页> 外文期刊>Environmental Science and Pollution Research >Effect of titanium dioxide nanoparticles on the accumulation and distribution of arsenate in Daphnia magna in the presence of an algal food
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Effect of titanium dioxide nanoparticles on the accumulation and distribution of arsenate in Daphnia magna in the presence of an algal food

机译:二氧化钛纳米颗粒对藻类食品存在下砷酸盐的积累与分布的影响

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The impact of titanium dioxide nanoparticles (nano-TiO~(2)) on the bioavailability of metals in aquatic filter-feeding organisms has rarely been investigated, especially in the presence of algae as a food source. In this study, we quantified the accumulation and subcellular distribution of arsenate ( As _(V)) in Daphnia magna in the presence of nano-TiO~(2)and a green alga ( Scenedesmus obliquus ) food source. Results showed that S. obliquus significantly increased the accumulation of total arsenic ( As ) and titanium ( Ti ) in D. magna . The presence of this food source increased As in metal-sensitive fractions (MSF) and as biologically detoxified metals (BDM), while it decreased Ti levels in MSF but increased levels as BDM. The difference in the subcellular distribution of As and Ti demonstrates the dissociation of As from nano-TiO~(2)during digestion at subcellular partitioning irrespective of food availability. In turn, the presence of algae was shown to increase metal-based toxicity in D. magna due to the transfer of As from BMD to MSF. Furthermore, S. obliquus significantly increased the concentration of As and Ti in soluble fractions, indicating that As and nano-TiO~(2)ingested by D. magna could be transferred more readily to their predators in the presence of S. obliquus . Our study shows the potential of algae to increase the toxicity and biomagnification of As _( V ). Furthermore, it highlights food as an important factor in the toxicity assessment of nanomaterials and co-existing pollutants.
机译:对水生滤食性生物金属的生物利用度的二氧化钛纳米颗粒(纳米的TiO〜(2))的影响很少被研究,特别是在藻类存在作为食物源。在这项研究中,我们量化纳米的TiO〜存在(2)和绿藻(斜生栅藻)的食物来源中水蚤的积累和砷酸的亚细胞分布(如_(V))。结果表明,斜生栅藻显著增加在大型溞总砷(As)和钛(Ti)的积累。这种食物源的存在下,在金属敏感性的级分(MSF)和作为生物解毒金属(BDM)增加作为,而它在MSF降低的Ti水平,但增加的水平作为BDM。在不考虑食物可利用亚细胞划分消化期间在作为和Ti的亚细胞分布的差异表明由于由纳米的TiO〜(2)的解离。反过来,藻类的存在下显示出增加在大型溞基于金属的毒性由于作为从BMD转移到MSF。此外,斜生栅藻显著增加As和Ti的可溶性组分的浓度,表明作为与纳米的TiO〜(2)由D.蚤摄取可以在斜生栅藻的存在下更容易地转移到他们的捕食者。我们的研究表明藻类的潜力,随着_(V)的毒性和生物放大作用。此外,它突出的食物,如纳米材料和共存污染物的毒性评估的一个重要因素。

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