Nanomedicine and Nanotoxicology Group, Physics Institute of São Carlos (IFSC), University of São Paulo (USP), Avenida Trabalhador Sãocarlense, 400, São Carlos, SP, 13560-970, Brazil.
Environ Sci Pollut Res Int. 2021 May;28(20):25316-25326. doi: 10.1007/s11356-021-12423-w. Epub 2021 Jan 16.
Gold nanorods (AuNRs) are rod-shaped nanoparticles (NPs) with special optical properties that allow their application in several areas including photothermal therapy, diagnosis, drug and gene delivery, cellular imaging, and biosensors. Their high potential for many applications increases the possibility of release in aquatic environments, which can cause risks to organisms. In this study, we evaluated toxic effects of AuNRs on cladoceran and fish (Ceriodaphnia dubia and Danio rerio) and their recovery after post-exposure periods. The EC of 0.03 mg L was found for C. dubia in the acute exposure. There was a significant decrease in the number of neonates produced and in the filtration rate of C. dubia after sub-lethal exposure to AuNRs. The toxic mechanism of these NPs to cladocerans was attributed to increases in the reactive oxygen species (ROS) generation. After 4 h of recovery in clean medium, C. dubia were able to reestablish the filtration rate. Enzymatic biomarkers for D. rerio showed significant increases in the activity of superoxide dismutase, catalase, and lipid peroxidation after sub-lethal exposure to AuNRs. These biomarkers were recovered after 168 h in clean water. These results are pivotal on the comprehension of AuNR toxicity to aquatic organisms and are useful in assessing this novel nanomaterial impacts on aquatic biota.
金纳米棒(AuNRs)是一种具有特殊光学性质的棒状纳米颗粒(NPs),可应用于多个领域,包括光热治疗、诊断、药物和基因递送、细胞成像和生物传感器。由于其在许多应用中的巨大潜力,它们有可能在水生环境中释放,从而对生物造成风险。在这项研究中,我们评估了 AuNRs 对枝角类动物(水蚤)和鱼类(斑马鱼)的毒性影响及其暴露后恢复期的恢复情况。在急性暴露中,我们发现水蚤的 EC为 0.03mg/L。亚致死暴露于 AuNRs 后,水蚤的幼体数量和滤水率显著下降。这些 NPs 对枝角类动物的毒性机制归因于活性氧(ROS)生成的增加。在清洁介质中恢复 4 小时后,水蚤能够重新建立滤水率。斑马鱼的酶生物标志物显示,亚致死暴露于 AuNRs 后,超氧化物歧化酶、过氧化氢酶和脂质过氧化的活性显著增加。在清洁水中恢复 168 小时后,这些生物标志物得到了恢复。这些结果对于理解 AuNR 对水生生物的毒性至关重要,并有助于评估这种新型纳米材料对水生生物群的影响。