首页> 外文期刊>Environmental Science: Nano >Trophic transfer of CuO NPs from sediment to worms (Tubifex tubifex) to fish (Gasterosteus aculeatus): a comparative study of dissolved Cu and NPs enriched with a stable isotope tracer (Cu-65)
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Trophic transfer of CuO NPs from sediment to worms (Tubifex tubifex) to fish (Gasterosteus aculeatus): a comparative study of dissolved Cu and NPs enriched with a stable isotope tracer (Cu-65)

机译:从沉积物到蠕虫(Tubifex Tubifex)的Cuo nps的营养转移到Fish(Gasterosteus Aculeatus):富含同位素示踪剂的溶解Cu和Nps的比较研究(Cu-65)

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Metal nanoparticles (NPs) released into the aquatic environment will likely accumulate in sediment and be available for sediment-dwelling invertebrates that serve as food for other organisms, such as fish. The aim of the present study was to investigate trophic transfer of copper oxide (CuO) NPs and dissolved Cu (CuCl2) from natural sediment to the sediment-dwelling worm Tubifex tubifex, and then to the predatory fish Gasterosteus aculeatus (three-spined stickleback). Cu enriched in the stable isotope Cu-65 was used to increase detection and discriminate newly added/assimilated Cu from background Cu levels. Worms were exposed to sediment spiked with (CuCl2)-Cu-65 or (CuO)-Cu-65 NPs (similar to 20 nm) at environmentally relevant concentrations for 7 days and subsequently fed to fish for 7 days. Worms accumulated Cu-65 during sediment exposure to both (CuCl2)-Cu-65 and (CuO)-Cu-65 NPs (0.7 and 1.1 mu g Cu-65 per g dw tissue, respectively), resulting in Cu-65 body burdens significantly different from control. Furthermore, significantly more Cu-65 was released from the sediment into the overlying water in the 65 CuO NP exposures compared to the (CuCl2)-Cu-65 exposures. Cu-65 accumulation in fish feeding on (CuCl2)-Cu-65 and (CuO)-Cu-65 NP-exposed worms was limited (intestinal tissue: 80 and 65 ng g(-1) dw; fish carcass: 7 and 10 ng g(-1) dw, and liver: 50 and 10 ng g(-1) dw, respectively). Glutathione peroxidase (gpx) mRNA expression was significantly higher in fish feeding on (CuCl2)-Cu-65-exposed worms compared to (CuO)-Cu-65 NP-exposed worms (though Cu-65 tissue concentrations were similar). No significant effects were detected for the other investigated genes (ctr1, mta, gcl, gr, sod, cat, zo-1). Our results show that NP-derived Cu can enter freshwater food webs, but bioaccumulation and trophic transfer under environmentally realistic exposures is low (detectable with a tracer) and not different from that of dissolved Cu.
机译:释放到水生环境中的金属纳米颗粒(NPS)可能会积聚在沉积物中,可用于沉积物 - 住宅无脊椎动物,作为其他生物的食物,如鱼类。本研究的目的是研究氧化铜(CUO)NPS的营养转移和溶解的Cu(CuCl2)与沉积物 - 居住蠕虫Tumifex Tibifex的天然沉积物,然后达到掠夺性鱼类气体肌肌(三翼汗背) 。富含稳定同位素Cu-65的Cu用于增加检测和区分新加入/同化的Cu从背景Cu水平。在环境相关浓度下暴露于用(CuCl2)-Cu-65或(CuO)-Cu-65nps(类似于20nm)的沉积物暴露于沉积物7天,随后喂食7天。蠕虫在沉积物期间累积Cu-65暴露于(CuCl2)-Cu-65和(CuO)-Cu-65 NPS(分别为每G DW组织0.7和1.1μgCu-65),导致Cu-65体重负担与对照有很大差异。此外,与(CuCl 2)-Cu-65曝光相比,从沉积物中从沉淀物中从沉淀物中释放到沉积物中,与(CUCL2)-CU-65曝光相比,显着更多的Cu-65。 Cu-65饲喂(CuCl2)-Cu-65和(CuO)-Cu-65 NP暴露蠕虫的鱼类中的积累是有限的(肠组织:80和65 ng(-1)DW;鱼胴体:7和10 Ng G(-1)DW和肝脏:50和10 ng g(-1)DW)。与(CuCl2)-Cu-65暴露的蠕虫相比对于其他研究基因没有检测到显着的效果(CTR1,MTA,GCL,GR,SOD,猫,ZO-1)。我们的研究结果表明,NP衍生的Cu可以进入淡水食品网,但是在环保曝光下的生物累积和营养转移低(可检测到示踪剂),而不是与溶解的Cu的不同。

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