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首页> 外文期刊>Aquatic Toxicology >Acute and sub-lethal effects in juvenile Atlantic salmon exposed to low micro g/L concentrations of Ag nanoparticles.
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Acute and sub-lethal effects in juvenile Atlantic salmon exposed to low micro g/L concentrations of Ag nanoparticles.

机译:暴露于低微克/升浓度的银纳米粒子的大西洋大西洋鲑幼鱼的急性和亚致死作用。

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摘要

Silver nanoparticles (Ag-NP) are components in numerous commercial products and are discharged into the environment in quantities that are largely unknown. In the present study, juvenile Atlantic salmon were exposed to 1, 20, and 100 micro g/L (48 h, static renewal) of a commercially available Ag-NP colloidal suspension in natural (soft) lake water. A solution of AgNO3 containing 20 micro g/L Ag(I) ions was also included to discriminate the effect of NPs from that of ionic silver. Furthermore, the commercial Ag-NP suspension was compared to an in-house synthesised colloidal NP suspension prepared from AgNO3 and NaBH4 in citrate buffer. The size distribution of Ag in all exposure solutions was characterised by 0.22 micro m filtration and 10 kDa hollow fibre cross-flow ultrafiltration in combination with ICP-MS. All exposures were characterised by a relatively high proportion of Ag-NP in the colloidal size fraction 3-220 nm. For assessment of biological effects, acute toxicity, gill histopathology, blood plasma parameters (Na, Cl, glucose, haemoglobin), and gene expression of a selection of gill biomarkers were measured. Results showed that the gills accumulated Ag in all exposure groups apart from the fish exposed to 1 micro g/L Ag-NP. Accumulated Ag caused concentration-dependent response increases in general stress markers such as plasma glucose and gill gene expression of heat shock protein 70. Furthermore, induction of the metallothionein A gene indicated that Ag had been internalized in the gills, whereas a concentration-dependant inhibition of Na/K ATPase expression indicated impaired osmoregulation at as low as 20 micro g/L concentrations of Ag-NP. The commercial Ag-NP suspension caused acute gill lamellae necrosis at high concentrations (100 micro g/L), potentially giving rise to the substantial (73%) fish mortality at this concentration. The two different Ag-NP preparations gave comparable results for several endpoints measured, but differed in MT-A induction and mortality, thus emphasising the variation in effects that may arise from different Ag-NP preparations.
机译:银纳米颗粒(Ag-NP)是许多商业产品中的成分,并以未知的数量排放到环境中。在本研究中,大西洋大西洋鲑幼鱼暴露于天然(软)湖水中的1、20和100 micro g / L(48小时,静态更新)的市售Ag-NP胶体悬浮液中。还包括了一个含有20 micro g / L Ag(I)离子的AgNO 3 溶液,以区分NP与离子银的作用。此外,将商业化的Ag-NP悬浮液与由柠檬酸盐缓冲液中的AgNO 3 和NaBH 4 制备的内部合成胶体NP悬浮液进行了比较。在所有曝光溶液中,Ag的尺寸分布通过0.22微米过滤和10 kDa中空纤维错流超滤结合ICP-MS进行表征。所有曝光的特征是在胶体尺寸分数为3-220 nm的Ag-NP中相对较高的比例。为了评估生物学效果,测量了急性毒性,腮ill组织病理学,血浆参数(Na,Cl,葡萄糖,血红蛋白)以及所选of生物标志物的基因表达。结果表明,除了暴露于1 micro g / L Ag-NP的鱼外,all在所有暴露组中均积累有Ag。累积的Ag引起一般应激标志物(如血浆葡萄糖和热休克蛋白70的g基因表达)中浓度依赖性反应的增加。此外,金属硫蛋白A基因的诱导表明Ag已内在ized中,而浓度依赖性抑制作用Na / K ATPase表达的降低表明在低至20 micro g / L的Ag-NP浓度下渗透调节受损。商业化的Ag-NP悬浮液在高浓度(100 micro g / L)时会导致急性片坏死,在此浓度下可能导致相当大的鱼类死亡率(73%)。两种不同的Ag-NP制剂在多个测量终点上均具有可比的结果,但MT-A的诱导和死亡率不同,因此强调了不同Ag-NP制剂可能产生的作用差异。

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