Kong In Chul, Ko Kyung-Seok, Koh Dong-Chan
Department of Environmental Engineering, Yeungnam University, Gyungsan 38541, Korea.
Geologic Environment Division, Korea Institute of Geoscience & Mineral Resources (KIGAM), Daejeon 34132, Korea.
Nanomaterials (Basel). 2021 Jun 23;11(7):1653. doi: 10.3390/nano11071653.
We evaluated the toxicity of five metal oxide nanoparticles (NPs) in single or binary mixtures based on root and shoot growth of two plant species under non-shaking and shaking conditions. The effects of NPs on root and shoot growth differed depending on the NP type, incubation condition, and plant type. The half maximal effective concentration (EC) of NPs based on root growth were significantly lower, by 2.6-9.8 times, under shaking than non-shaking conditions ( = 0.0138). The magnitude of the effects of NPs followed the order CuO > ZnO > NiO >> AlO, TiO. In addition, L. was more sensitive to the tested NPs than L., with an EC 0.2-0.7 times lower ( = 0.0267). The observed effects of 12 combinations of binary NP mixtures were slightly, albeit non-significantly, lower than expected, indicative of an additive effect of the individual NPs in the mixtures. The results emphasize the importance of careful plant model selection, appropriate application of incubation conditions, and consideration of chemical mixtures rather than single compounds when evaluating the effects of metal oxide NPs.
我们基于两种植物在非振荡和振荡条件下的根和茎生长情况,评估了五种金属氧化物纳米颗粒(NPs)单一或二元混合物的毒性。NPs对根和茎生长的影响因NP类型、培养条件和植物类型而异。基于根生长的NPs半数最大效应浓度(EC)在振荡条件下比非振荡条件下显著降低,降低了2.6至9.8倍(P = 0.0138)。NPs的效应大小顺序为CuO > ZnO > NiO >> Al2O3、TiO2。此外,生菜对测试的NPs比黑麦草更敏感,其EC低0.2至0.7倍(P = 0.0267)。观察到的二元NP混合物12种组合的效应略低于预期,尽管不显著,这表明混合物中各单个NP具有加和效应。结果强调了在评估金属氧化物NPs的影响时,仔细选择植物模型、适当应用培养条件以及考虑化学混合物而非单一化合物的重要性。