College of Life Sciences and Biotechnology, Korea University, Seoul 136-701, Republic of Korea.
Aquat Toxicol. 2009 Oct 4;94(4):320-7. doi: 10.1016/j.aquatox.2009.07.019. Epub 2009 Aug 3.
The increased use of nano-sized metallic materials is likely to result in the release of these particles into the environment. It is, however, unclear if these materials are harmful to aquatic animals. Furthermore, because the dissolution of such nanomaterials will occur, it is probable that some of the adverse effects resulting will result from the dissolved metal species. In this study, therefore, we investigated the health and environmental impact of silver nanoparticles (Ag-NPs) on Japanese Medaka by studying changes in the expression of stress-related genes using real time RT-PCR analysis and compared these results with those of Medaka exposed to soluble silver ions. The stress-related genes selected here were metallothionein, HSP 70, GST, p53, CYP 1A and the transferrin gene. The expression levels of each gene were determined using two different Ag-NPs dosages and were quantified by measuring the mRNA concentrations in liver extracts with the Taqman-based Real-Time PCR method. The results suggest that these two silver forms have distinguishable toxic fingerprints between them. While the Ag-NPs led to cellular and DNA damage, as well as carcinogenic and oxidative stresses, genes related with metal detoxification/metabolism regulation and radical scavenging action were also induced. In contrast, the ionic silver led to an induction of inflammatory response and metallic detoxification processes in the liver of the exposed fish, but resulted in a lower overall stress response when compared with the Ag-NPs.
随着纳米金属材料使用的增加,这些颗粒很可能会释放到环境中。然而,目前尚不清楚这些材料是否对水生动物有害。此外,由于这些纳米材料会发生溶解,因此一些由此产生的不利影响可能是由溶解的金属物种引起的。因此,在这项研究中,我们通过实时 RT-PCR 分析研究了应激相关基因表达的变化,从而研究了银纳米颗粒 (Ag-NPs) 对日本青鳉的健康和环境影响,并将这些结果与暴露于可溶性银离子的青鳉进行了比较。这里选择的应激相关基因有金属硫蛋白、HSP70、GST、p53、CYP1A 和转铁蛋白基因。使用两种不同的 Ag-NPs 剂量确定了每个基因的表达水平,并通过 Taqman 实时 PCR 方法测量肝提取物中的 mRNA 浓度来定量。结果表明,这两种银形态之间存在可区分的毒性指纹。虽然 Ag-NPs 导致细胞和 DNA 损伤以及致癌和氧化应激,但也诱导了与金属解毒/代谢调节和自由基清除作用相关的基因。相比之下,离子银导致暴露于鱼肝脏中的炎症反应和金属解毒过程的诱导,但与 Ag-NPs 相比,整体应激反应较低。