INERIS (Unités EXES, ECOT et NOVA), Parc Technologique Alata, BP2, 60550 Verneuil-en-Halatte, France.
Environ Pollut. 2013 Sep;180:63-70. doi: 10.1016/j.envpol.2013.04.040. Epub 2013 May 31.
The ecotoxicity of artificially alterated cerium dioxide nanoparticles (nano-CeO2) suspensions was determined using the freshwater microalgae growth inhibition test. The agglomeration or aggregation state of the alterated suspensions was followed because it represents one of the obvious modifications when nanoparticles reached the environment. In addition, its influence on the ecotoxicity of nanoparticles is currently not well-addressed. Our results showed that the suspensions were stable within the first 24 h and then agglomerate up to 10 μm after 3 and 30 days. The inhibitory effect on the growth of exposed algae was however similar whatever the tested suspension. This supports the fact that the agglomeration state of nano-CeO2, in our conditions, has few influences on the ecotoxicity toward these organisms. The EC50 values were 5.6; 4.1 and 6.2 mg L(-1), after exposure to non aged, 3 and 30 days aged suspensions respectively. The interaction between algal cells and nano-CeO2 was also addressed.
采用淡水微藻生长抑制试验测定了人工修饰的二氧化铈纳米粒子(nano-CeO2)悬浮液的生态毒性。修饰悬浮液的团聚或聚集状态受到关注,因为这是纳米颗粒到达环境时发生的明显变化之一。此外,其对纳米颗粒生态毒性的影响目前尚未得到很好的解决。我们的结果表明,悬浮液在最初的 24 小时内是稳定的,然后在 3 天和 30 天后团聚至 10μm。然而,暴露于受测试悬浮液中的藻类的生长抑制作用相似。这支持了在我们的条件下,nano-CeO2 的团聚状态对这些生物的生态毒性影响较小的事实。分别暴露于未老化、3 天老化和 30 天老化悬浮液后,EC50 值分别为 5.6、4.1 和 6.2mg/L。还研究了藻类细胞与 nano-CeO2 之间的相互作用。