Future Environmental Research Center, Korea Institute of Toxicology, Jinju, Gyeongsangnam-do, Republic of Korea.
PLoS One. 2018 Mar 29;13(3):e0194935. doi: 10.1371/journal.pone.0194935. eCollection 2018.
Increased production of carbon nanotubes (CNTs) and their widespread application in industrial and consumer products have led to a rise in the release of CNTs into the aquatic environment. CNTs have a very strong adsorption affinity for various environmental contaminants; therefore, they may also influence the toxic effects of other pollutants, such as toxic metals. In this study, the effect of two different functionalized carbon nanotubes, carboxylate and polyethyleneimine modified multi-walled carbon nanotubes (C-MWCNTs and N-MWCNT, respectively) on lead toxicity and bioaccumulation was investigated with a freshwater zooplankton Daphnia magna. The acute toxicity results indicate that the different surface properties of the two types of MWCNTs have different effects on lead toxicity to D. magna. The negatively charged C-MWCNT showed a notable decrease in lead toxicity (LC50 value increased from 0.15 mg L-1 to 1.08 mg L-1 in the presence of 10 mg L-1 C-MWCNT), whereas the positively charged N-MWCNT had only a slight effect on lead toxicity (LC50 value increased from 0.15 mg L-1 to 0.16 mg L-1 in the presence of 10 mg L-1 N-MWCNT). The decrease of lead toxicity was related with the reduced bioavailability of free metal form (Pb2+) caused by greater adsorption of lead onto the MWCNTs. The present study suggests that there is a need to consider carefully the complex interaction of CNTs with toxic metals in future ecotoxicological studies.
随着碳纳米管(CNTs)产量的增加及其在工业和消费产品中的广泛应用,CNTs 被释放到水生态环境中的风险也随之增加。CNTs 对各种环境污染物具有很强的吸附亲和力;因此,它们也可能影响其他污染物(如有毒金属)的毒性效应。在这项研究中,我们用淡水浮游动物大型溞(Daphnia magna)研究了两种不同功能化的碳纳米管(羧基化和聚乙烯亚胺修饰的多壁碳纳米管,分别记为 C-MWCNTs 和 N-MWCNT)对铅毒性和生物累积的影响。急性毒性结果表明,这两种 MWCNTs 的不同表面性质对铅毒性对大型溞的影响不同。带负电荷的 C-MWCNT 表现出明显降低铅毒性的作用(在 10mg/L C-MWCNT 存在下,LC50 值从 0.15mg/L 增加到 1.08mg/L),而带正电荷的 N-MWCNT 对铅毒性只有轻微影响(在 10mg/L N-MWCNT 存在下,LC50 值从 0.15mg/L 增加到 0.16mg/L)。铅毒性的降低与由于更多的铅被吸附到 MWCNTs 上导致自由金属形式(Pb2+)的生物可利用性降低有关。本研究表明,在未来的生态毒理学研究中,需要仔细考虑 CNTs 与有毒金属的复杂相互作用。