Park Sun-Young, Chung Jiwoong, Colman Benjamin P, Matson Cole W, Kim Younghun, Lee Byung-Cheon, Kim Phil-Je, Choi Kyunghee, Choi Jinhee
School of Environmental Engineering, Graduate School of Energy and Environmental System Engineering, University of Seoul, Seoul, South Korea.
Department of Biology, Duke University, Durham, North Carolina, USA.
Environ Toxicol Chem. 2015 Sep;34(9):2023-32. doi: 10.1002/etc.3019.
Although sediment is generally considered to be the major sink for nanomaterials in aquatic environments, few studies have addressed the ecotoxicity of nanomaterials in the presence of sediment. In the present study, the ecotoxicity of silver nanoparticles (AgNPs) with a range of organic coatings was examined in a freshwater sediment-dwelling organism, Chironomus riparius, using acute and chronic ecotoxicity endpoints, including molecular indicators. The toxicity of AgNPs coated with different organic materials, such as polyvinylpyrrolidone, gum arabic, and citrate, to C. riparius was compared with that of bare-AgNPs and AgNO3 (ionic silver). Total silver concentration was also measured to monitor the behavior of the AgNPs in water and sediment and to determine how ion dissolution affects the toxicity of all AgNPs. The coated- and bare-AgNPs caused DNA damage and oxidative stress-related gene expression. In addition, the bare-AgNPs and AgNO3 had a significant effect on development and reproduction. The surface coatings generally mitigated the toxicity of AgNPs to C. riparius, which can be explained by the reduced number of ions released from coated-AgNPs. Citrate-AgNPs caused the most significant alteration at the molecular level, but this did not translate to higher-level effects. Finally, comparing previously conducted studies on AgNP-induced gene expression without sediments, the authors show that the presence of sediment appears to mitigate the toxicity of AgNPs.
尽管沉积物通常被认为是水生环境中纳米材料的主要汇,但很少有研究涉及纳米材料在沉积物存在下的生态毒性。在本研究中,使用包括分子指标在内的急性和慢性生态毒性终点,在淡水沉积物栖息生物摇蚊中检测了一系列有机涂层的银纳米颗粒(AgNP)的生态毒性。将涂覆有不同有机材料(如聚乙烯吡咯烷酮、阿拉伯胶和柠檬酸盐)的AgNP对摇蚊的毒性与裸AgNP和AgNO₃(离子银)的毒性进行了比较。还测量了总银浓度,以监测AgNP在水和沉积物中的行为,并确定离子溶解如何影响所有AgNP的毒性。涂覆和裸AgNP均导致DNA损伤和氧化应激相关基因表达。此外,裸AgNP和AgNO₃对发育和繁殖有显著影响。表面涂层通常会减轻AgNP对摇蚊的毒性,这可以通过涂覆AgNP释放的离子数量减少来解释。柠檬酸盐-AgNP在分子水平上引起了最显著的变化,但这并未转化为更高水平的影响。最后,比较之前在没有沉积物的情况下进行的关于AgNP诱导基因表达的研究,作者表明沉积物的存在似乎减轻了AgNP的毒性。