College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, Wuhan 430070, China.
College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, Wuhan 430070, China; Collaborative Innovation Center for Efficient and Health Production of Fisheries in Hunan Province, Changde 415000, Hunan, China.
Ecotoxicol Environ Saf. 2018 Nov 15;163:279-288. doi: 10.1016/j.ecoenv.2018.07.079. Epub 2018 Jul 26.
Silver nanoparticles (AgNPs) have been reported to inhibit specification and differentiation of erythroid cells, chromatophores, and myofibrils during zebrafish embryogenesis. However, the knowledge of biological effects of AgNPs on eye development, especially on lens development is scarce. In this study, embryos were exposed to or injected with 0.4 mg/L AgNPs, and the results indicate that no obvious morphological changes in eye formation were observed in the stressed embryos compared to the controls. However, clefts and vacuoles were observed in lens of embryos from AgNPs stressed group. Additionally, the down-regulated expressions of different lens crystallin isoform genes and the normal expression of retinal genes were observed in AgNPs stressed embryos, suggesting AgNPs might inhibit the development of lens rather than the development of retina in zebrafish embryos. Moreover, no obvious cell apoptosis was observed, but normal nuclear DNA and RNA export was observed in lens cells. Together, the data in this study reveal that AgNPs damage the development of lens rather than retina resulting in eye abnormalities via some unknown mechanisms rather than via triggering cells apoptosis or blocking nuclear DNA or RNA export.
纳米银颗粒(AgNPs)已被报道在斑马鱼胚胎发育过程中抑制红血球、色素体和肌原纤维的特化和分化。然而,关于 AgNPs 对眼睛发育,特别是晶状体发育的生物学效应的知识还很缺乏。在这项研究中,将胚胎暴露于或注射 0.4mg/L 的 AgNPs,结果表明与对照组相比,受胁迫的胚胎在眼部形成过程中没有观察到明显的形态变化。然而,AgNPs 胁迫组的胚胎晶状体中观察到裂隙和空泡。此外,在 AgNPs 胁迫的胚胎中观察到不同晶状体晶体蛋白同工型基因的下调表达和视网膜基因的正常表达,表明 AgNPs 可能抑制晶状体的发育,而不是斑马鱼胚胎的视网膜发育。此外,没有观察到明显的细胞凋亡,但在晶状体细胞中观察到正常的核 DNA 和 RNA 输出。总之,本研究的数据表明,AgNPs 通过一些未知的机制而不是通过触发细胞凋亡或阻断核 DNA 或 RNA 输出,损伤晶状体的发育而不是视网膜的发育,导致眼睛异常。