Institute of Biomedical and Environmental Health Research, School of Science, University of the West of Scotland, Paisley, UK.
Ecotoxicology Research and Innovation Centre, School of Biomedical and Biological, Sciences, University of Plymouth, Devon, UK.
Aquat Toxicol. 2014 Jul;152:318-23. doi: 10.1016/j.aquatox.2014.04.022. Epub 2014 Apr 25.
The unique physicochemistry and potential toxicity of manufactured nanoparticles (NPs) requires innovative approaches for the assessment of toxicity to aquatic organisms. Here, the toxicity of Cu-NPs, Ag-NPs and TiO2-NPs on the lateral line system of free-swimming zebrafish embryos was investigated and compared to appropriate metal salts or bulk material controls. Fish were exposed for 4h at 96-h post-fertilization. Metal salt (CuSO4 and AgNO3) controls reduced the number of functional lateral line neuromasts (LLN) to <5% of unexposed controls, but no effect on LLN was observed for TiO2-NPs or Ag-NPs. Exposure to Cu-NPs caused only a 15% reduction in LLN. Performance of positive rheotaxis was reduced by Cu-NPs, Ag-NPs, and the metal salt controls. The data show that some metal NPs can affect LLN and fish behaviour (rheotaxis) important for survival, and that effects were different from those of comparable metal ion controls. Capsule: We demonstrate that behaviour is a particularly sensitive indicator of metal NP exposure in fish and highlight the interaction between behaviour and external tissue surfaces.
制造纳米颗粒(NPs)具有独特的物理化学性质和潜在的毒性,因此需要创新的方法来评估其对水生生物的毒性。在这里,我们研究了 Cu-NPs、Ag-NPs 和 TiO2-NPs 对自由游动斑马鱼胚胎侧线系统的毒性,并将其与适当的金属盐或体材料对照进行了比较。鱼在受精后 96 小时进行 4 小时暴露。金属盐(CuSO4 和 AgNO3)对照将功能性侧线感觉小体(LLN)的数量减少到未暴露对照的<5%,但 TiO2-NPs 或 Ag-NPs 对 LLN 没有影响。Cu-NPs 的暴露仅导致 LLN 减少 15%。Cu-NPs、Ag-NPs 和金属盐对照均降低了正趋流性的性能。数据表明,一些金属 NPs 会影响对生存至关重要的 LLN 和鱼类行为(趋流性),并且其影响与可比金属离子对照不同。总结:我们证明行为是鱼类金属 NP 暴露的一个特别敏感的指标,并强调了行为与外部组织表面之间的相互作用。