State Key Laboratory of Marine Pollution and Department of Chemistry, City University of Hong Kong, Hong Kong, China.
The Swire Institute of Marine Science and School of Biological Sciences, The University of Hong Kong, Hong Kong, China.
Environ Sci Technol. 2021 May 18;55(10):6917-6925. doi: 10.1021/acs.est.1c01300. Epub 2021 May 7.
Coated zinc oxide nanoparticles (ZnO-NPs) are more commonly applied in commercial products but current risk assessments mostly focus on bare ZnO-NPs. To investigate the impacts of surface coatings, this study examined acute and chronic toxicities of six chemicals, including bare ZnO-NPs, ZnO-NPs with three silane coatings of different hydrophobicity, zinc oxide bulk particles (ZnO-BKs), and zinc ions (Zn-IONs), toward a marine copepod, . In acute tests, bare ZnO-NPs and hydrophobic ZnO-NPs were less toxic than hydrophilic ZnO-NPs. Analyses of the copepod's antioxidant gene expression suggested that such differences were governed by hydrodynamic size and ion dissolution of the particles, which affected zinc bioaccumulation in copepods. Conversely, all test particles, except the least toxic hydrophobic ZnO-NPs, shared similar chronic toxicity as Zn-IONs because they mostly dissolved into zinc ions at low test concentrations. The metadata analysis, together with our test results, further suggested that the toxicity of coated metal-associated nanoparticles could be predicted by the hydrophobicity and density of their surface coatings. This study evidenced the influence of surface coatings on the physicochemical properties, toxicity, and toxic mechanisms of ZnO-NPs and provided insights into the toxicity prediction of coated nanoparticles from their coating properties to improve their future risk assessment and management.
涂层氧化锌纳米颗粒(ZnO-NPs)在商业产品中更为常见,但目前的风险评估主要集中在裸露的 ZnO-NPs 上。为了研究表面涂层的影响,本研究考察了六种化学物质(包括裸露的 ZnO-NPs、三种不同疏水性的硅烷涂层的 ZnO-NPs、氧化锌块状颗粒(ZnO-BKs)和锌离子(Zn-IONs))对海洋桡足类动物的急性和慢性毒性。在急性试验中,裸露的 ZnO-NPs 和疏水性 ZnO-NPs 的毒性低于亲水性 ZnO-NPs。对桡足类动物抗氧化基因表达的分析表明,这种差异是由颗粒的水动力大小和离子溶解决定的,这影响了锌在桡足类动物中的生物积累。相反,除了毒性最低的疏水性 ZnO-NPs 之外,所有测试颗粒在低测试浓度下主要溶解为锌离子,因此它们具有相似的慢性毒性,与 Zn-IONs 相似。元数据分析和我们的测试结果进一步表明,涂层金属相关纳米颗粒的毒性可以通过其表面涂层的疏水性和密度来预测。本研究证明了表面涂层对 ZnO-NPs 的物理化学性质、毒性和毒性机制的影响,并为从涂层特性预测涂层纳米颗粒的毒性提供了思路,以改善其未来的风险评估和管理。