Department of Environmental Toxicology, The Institute of Environmental and Human Health, Texas Tech University , Lubbock, Texas United States.
Department of Electrical and Computer Engineering, Texas Tech University , Lubbock, Texas United States.
Environ Sci Technol. 2018 Jan 16;52(2):794-800. doi: 10.1021/acs.est.7b03522. Epub 2018 Jan 5.
The increase in use of nanomaterials such as multiwalled carbon nanotubes (MWCNTs) presents a need to study their interactions with the environment. Trophic transfer was measured between Daphnia magna and Pimephales promelas (fathead minnow, FHM) exposed to MWCNTs with different outer diameter (OD) sizes (MWCNT1 = 8-15 nm OD and MWCNT2 = 20-30 nm OD) in the presence and absence of copper. Pristine FHM were fed D. magna, previously exposed for 3 d to MWCNT1 or MWCNT2 (0.1 mg/L) and copper (0.01 mg/L), for 7 d. D. magna bioaccumulated less MWCNT1 (0.02 μg/g) than MWCNT2 (0.06 μg/g), whereas FHM accumulated more MWCNT1 (0.81 μg/g) than MWCNT2 (0.04 μg/g). In the presence of copper, MWCNT bioaccumulation showed an opposite trend. Mostly MWCNT1 (0.03 μg/g) bioaccumulated in D. magna, however less MWCNT1 (0.21 μg/g) than MWCNT2 (0.32 μg/g) bioaccumulated in FHM. Bioaccumulation factors were higher for MWCNT1s than MWCNT2. However, an opposite trend was observed when copper was added. Plasma metallothionein-2 was measured among treatments; however concentrations were not statistically different from the control. This study demonstrates that trophic transfer of MWCNTs is possible in the aquatic environment and further exploration with mixtures can strengthen the understanding of MWCNT environmental behavior.
多壁碳纳米管(MWCNT)等纳米材料的使用增加,需要研究其与环境的相互作用。在存在和不存在铜的情况下,用不同外径(OD)尺寸的 MWCNT(MWCNT1=8-15nmOD 和 MWCNT2=20-30nmOD)对大型溞(Daphnia magna)和褐翻车鱼(Pimephales promelas,胖头鱼,FHM)进行了营养转移测量。将之前暴露于 MWCNT1 或 MWCNT2(0.1mg/L)和铜(0.01mg/L)3 天的大型溞喂养给未受污染的胖头鱼,持续 7 天。大型溞生物积累的 MWCNT1 (0.02μg/g)少于 MWCNT2(0.06μg/g),而胖头鱼积累的 MWCNT1 (0.81μg/g)多于 MWCNT2(0.04μg/g)。在铜存在的情况下,MWCNT 生物积累呈现出相反的趋势。MWCNT1(0.03μg/g)主要在大型溞中积累,而 MWCNT2(0.32μg/g)在胖头鱼中的积累少于 MWCNT1(0.21μg/g)。MWCNT1 的生物积累因子高于 MWCNT2。然而,当添加铜时,观察到相反的趋势。在处理组中测量了血浆金属硫蛋白-2;但是浓度与对照组没有统计学差异。本研究表明,MWCNT 在水生态系统中的营养转移是可能的,进一步用混合物进行探索可以加强对 MWCNT 环境行为的理解。