Environmental Research and Innovation (ERIN) Department, Luxembourg Institute of Science and Technology (LIST), 5 avenue des Hauts-Fourneaux, Esch-sur-Alzette, Luxembourg.
Norwegian School of Veterinary Science, N-0033 Oslo, Norway.
Sci Total Environ. 2018 Jan 1;610-611:972-982. doi: 10.1016/j.scitotenv.2017.08.115. Epub 2017 Aug 20.
The use of silver nanomaterials in everyday products, such as cosmetics, textiles, certain types of packaging, etc. is increasing, leading to their release into the environment, including aquatic ecosystems. This last point initiated this investigation on the toxicological effects of Ag nanoparticles (Ag NPs) in the aquatic model organism Danio rerio. For this purpose, zebrafish larvae were exposed to 20nm bare Ag NPs at different concentrations and AgNO, used as a positive control for Ag ions toxicity, at the beginning of their foraging behaviour to determine adverse effects on fitness parameters. We used secondary ion mass spectrometry (SIMS) to determine the localization of Ag and transcriptomics (microarray) to determine the toxicity at the level of gene expression in fish larvae. Exposure to Ag NPs did not result in adverse effects on survival and growth of the fish. However, SIMS analysis showed that Ag NPs mainly concentrate around liver blood vessels and in the interstitial tissue between the intestine and the liver. Gene expression profiles revealed that AgNO and Ag NPs impacted common pathways, suggesting similar targets, such as the phototransduction system. However, the Ag NPs showed a broader set of genes impacted following the exposure, including the circadian clock regulation and the photoreception, suggesting specific particle-related effects in addition to those induced by ions.
银纳米材料在日常产品中的应用越来越广泛,如化妆品、纺织品、某些类型的包装等,这导致它们被释放到环境中,包括水生生态系统。这最后一点促使我们对银纳米颗粒(Ag NPs)在水生模式生物斑马鱼中的毒理学效应进行了研究。为此,我们在斑马鱼幼虫开始觅食行为时,将其暴露于不同浓度的 20nm 裸露 Ag NPs 和 AgNO 中,AgNO 被用作 Ag 离子毒性的阳性对照,以确定其对适应性参数的不良影响。我们使用二次离子质谱(SIMS)来确定 Ag 的定位,并用转录组学(微阵列)来确定鱼类幼虫的基因表达水平的毒性。暴露于 Ag NPs 并没有对鱼类的存活和生长产生不良影响。然而,SIMS 分析表明,Ag NPs 主要集中在肝脏血管周围和肠与肝脏之间的间质组织中。基因表达谱显示,AgNO 和 Ag NPs 影响了共同的途径,表明存在类似的靶标,如光转导系统。然而,Ag NPs 显示出在暴露后受影响的基因集更广,包括昼夜节律调节和光感受,这表明除了由离子引起的影响外,还存在特定于颗粒的影响。