School of Environmental Science and Engineering , Guangdong University of Technology , Guangzhou 510000 , P.R. China.
Graduate School at Shenzhen , Tsinghua University , Shenzhen 518055 , P.R. China.
Environ Sci Technol. 2018 Dec 18;52(24):14445-14451. doi: 10.1021/acs.est.8b04235. Epub 2018 Dec 7.
Carbon quantum dots (CQDs) have high hydrophilicity, high cell permeability, and are frequently used in water-based and biorelated applications, yet studies concerning the ecological risks of CQDs in aquatic environments are largely insufficient. In the present study, the toxicity of CQDs to zebrafish ( Danio rerio), zooplankton ( Daphnia magna), and phytoplankton ( Scenedesmus obliquus) were assessed for the first time. The results indicated that CQDs (up to 200 mg/L) could be depurated by D. rerio with negligible toxicity. In comparison, CQDs induced mortality and immobility in D. magna with a 48-h EC value and LC value of 97.5 and 160.3 mg/L, respectively. In S. obliquus, CQDs inhibited photosynthesis and nutrition absorption in a dose- and time-dependent manner, and the growth of algae was also inhibited with a 96-h EC value of 74.8 mg/L, suggesting that S. obliquus, the lowest trophic level in this study, was most sensitive to CQDs exposure. Further investigations revealed that CQDs induced an increase in oxidative stress in algae cells and a decrease in pH value of an algae medium, indicating that oxidative stress and water acidification may be the mechanisms underlying the toxicity of CQDs to S. obliquus.
碳量子点 (CQDs) 具有高亲水性、高细胞通透性,常用于水基和生物相关应用,但有关 CQDs 在水生环境中的生态风险的研究还远远不够。本研究首次评估了 CQDs 对斑马鱼(Danio rerio)、浮游动物(Daphnia magna)和浮游植物(Scenedesmus obliquus)的毒性。结果表明,CQDs(高达 200mg/L)可被斑马鱼净化,几乎没有毒性。相比之下,CQDs 以 48h 的 EC 值和 LC 值分别为 97.5 和 160.3mg/L,导致 D. magna 死亡和不动。在 S. obliquus 中,CQDs 以剂量和时间依赖的方式抑制光合作用和营养吸收,藻类的生长也受到抑制,其 96h 的 EC 值为 74.8mg/L,表明本研究中营养水平最低的 S. obliquus 对 CQDs 暴露最敏感。进一步的研究表明,CQDs 诱导藻类细胞氧化应激增加和藻类培养基 pH 值降低,表明氧化应激和水酸化可能是 CQDs 对 S. obliquus 毒性的机制。