Xin Qi, Rotchell Jeanette M, Cheng Jinping, Yi Jun, Zhang Qiang
State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai, 200062, China.
City University of Hong Kong Shenzhen Research Institute, Shenzhen, 518057, China.
J Appl Toxicol. 2015 Dec;35(12):1481-92. doi: 10.1002/jat.3164. Epub 2015 May 15.
Silver nanoparticles (AgNPs) have been widely used in commercial products. This study aims to understand the impact of AgNPs on the early developmental stages in zebrafish (Danio rerio) embryos. Embryos were exposed to two sizes of AgNPs at three dose levels, as well to free Ag(+) ions, for a range of 4-96 h post-fertilization (hpf). The acute exposure study showed that exposure to AgNPs affected the neurological development, and the exposed embryos exhibited anomalies such as small head with hypoplastic hindbrain, small eye and cardiac defects. At the molecular level, AgNPs altered the expression profiles of neural development-related genes (gfap, huC and ngn1), metal-sensitive metallothioneins and ABCC genes in exposed embryos. The expression of AhR2 and Cyp1A, which are usually considered to mediate polycyclic aromatic hydrocarbon toxicity, were also significantly changed. A size-dependent uptake of AgNPs was observed, whereby 4 nm AgNPs were more efficiently taken up compared with the 10 nm-sized particles. Importantly, the head area accumulated AgNPs more efficiently than the trunk area of exposed zebrafish embryos. No free Ag(+) ions, which can be potentially released from the AgNP solutions, were detected. This study suggests that AgNPs could affect the neural development of zebrafish embryos, and the toxicity of AgNPs may be partially attributed to the comparatively higher uptake in the head area. These results indicate the potential neurotoxicity of AgNPs and could be extended to other aquatic organisms.
银纳米颗粒(AgNPs)已广泛应用于商业产品中。本研究旨在了解AgNPs对斑马鱼(Danio rerio)胚胎早期发育阶段的影响。在受精后4至96小时(hpf)的时间段内,将胚胎暴露于两种尺寸的AgNPs、三种剂量水平以及游离Ag(+)离子中。急性暴露研究表明,暴露于AgNPs会影响神经发育,暴露的胚胎表现出诸如后脑发育不全的小头、小眼睛和心脏缺陷等异常。在分子水平上,AgNPs改变了暴露胚胎中神经发育相关基因(gfap、huC和ngn1)、金属敏感金属硫蛋白和ABCC基因的表达谱。通常被认为介导多环芳烃毒性的AhR2和Cyp1A的表达也发生了显著变化。观察到AgNPs的摄取具有尺寸依赖性,与10nm尺寸的颗粒相比,4nm的AgNPs摄取效率更高。重要的是,暴露的斑马鱼胚胎头部区域比躯干区域更有效地积累AgNPs。未检测到可能从AgNP溶液中释放的游离Ag(+)离子。本研究表明,AgNPs可能会影响斑马鱼胚胎的神经发育,AgNPs的毒性可能部分归因于在头部区域相对较高的摄取。这些结果表明了AgNPs的潜在神经毒性,并可能扩展到其他水生生物。