Department of Environmental Science and Engineering, School of Energy and Environment, Wuxi Engineering Research Center of Taihu Lake Water Environment, Southeast University, Nanjing, 210096, China.
Department of Environmental Science and Engineering, School of Energy and Environment, Wuxi Engineering Research Center of Taihu Lake Water Environment, Southeast University, Nanjing, 210096, China.
Chemosphere. 2016 Jun;153:187-97. doi: 10.1016/j.chemosphere.2016.03.065. Epub 2016 Mar 24.
Although the widely used metal oxide nanoparticles (NPs) titanium dioxide NPs (n-TiO2), cerium dioxide NPs (n-CeO2), and zinc oxide NPs (n-ZnO) have been well known for their potential cytotoxicities to environmental organisms, their combined effects have seldom been investigated. In this study, the short-term binary effect of n-CeO2 and n-TiO2 or n-ZnO on a model ammonia oxidizing bacterium, Nitrosomonas europaea were evaluated based on the examinations of cells' physiological, metabolic, and transcriptional responses. The addition of n-TiO2 mitigated the negative effect of more toxic n-CeO2 and the binary toxicity (antagonistic toxicity) of n-TiO2 and n-CeO2 was generally lower than the single NPs induced one. While the n-CeO2/n-ZnO mixture exerted higher cytotoxicity (synergistic cytotoxicity) than that from single NPs. The increased addition of the less toxic n-CeO2 exaggerated the binary toxicity of n-CeO2/n-ZnO mixture although the solubility of n-ZnO was not significantly affected, which excluded the contribution of the dissolved Zn ions to the enhancement of the combined cytotoxicity. The cell membrane disturbances and NP internalizations were detected for all the NP impacted cultures and the electrostatic interactions among the two distinct NPs and the cells were expected to play a key role in mediating their direct contacts and the eventual binary nanotoxicity to the cells.
虽然广泛使用的金属氧化物纳米颗粒(NPs),如二氧化钛纳米颗粒(n-TiO2)、二氧化铈纳米颗粒(n-CeO2)和氧化锌纳米颗粒(n-ZnO),已经因其对环境生物的潜在细胞毒性而为人所知,但它们的联合效应很少被研究。在这项研究中,基于对细胞生理、代谢和转录响应的研究,评估了 n-CeO2 和 n-TiO2 或 n-ZnO 的短期二元效应,对模式氨氧化细菌,Nitrosomonas europaea 的影响。添加 n-TiO2 减轻了毒性更大的 n-CeO2 的负面影响,n-TiO2 和 n-CeO2 的二元毒性(拮抗毒性)通常低于单一 NPs 引起的毒性。而 n-CeO2/n-ZnO 混合物表现出比单一 NPs 更高的细胞毒性(协同细胞毒性)。虽然 n-ZnO 的溶解度没有显著影响,但添加较少毒性的 n-CeO2 会加剧 n-CeO2/n-ZnO 混合物的二元毒性,从而排除了溶解 Zn 离子对增强联合细胞毒性的贡献。所有受 NP 影响的培养物中都检测到了细胞膜紊乱和 NP 内化,预计两种不同的 NPs 之间的静电相互作用以及它们与细胞之间的静电相互作用将在介导它们的直接接触和最终对细胞的二元纳米毒性方面发挥关键作用。