Because of their outstanding properties, carbon nanotubes (CNTs) are being assessed for inclusion in many manufactured products. Due to their massive production and growing number of potential applications, the impact of CNTs on the environment must be taken into consideration. The present investigation evaluates the ecotoxicological potential of double-walled carbon nanotubes (DWNTs) in the amphibian larvae Xenopus laevis at a large range of concentrations in water (from 10 to 500 mgL(-1)). Acute toxicity and genotoxicity were analysed after 12 days of static exposure in laboratory conditions. Acute toxicity was evaluated according to the mortality and the growth of larvae. The genotoxic effects were analysed by scoring the micronucleated erythrocytes of the circulating blood of larvae according to the International Standard micronucleus assay. Moreover, histological preparations of larval intestine were prepared after 12 days of exposure for observation using optical and transmission electron microscopy (TEM). Finally, the intestine of an exposed larva was prepared on a slide for analyse by Raman imaging. The results showed no genotoxicity in erythrocytes of larvae exposed to DWNTs in water, but acute toxicity at every concentration of DWNTs studied which was related to physical blockage of the gills and/or digestive tract. Indeed, black masses suggesting the presence of CNTs were observed inside the intestine using optical microscopy and TEM, and confirmed by Raman spectroscopy analysis. Assessing the risks of CNTs requires better understanding, especially including mechanistic and environmental investigations.

译文

:由于其优异的性能,碳纳米管(CNT)被评估为包含在许多制成品中。由于它们的大量生产和越来越多的潜在应用,必须考虑CNT对环境的影响。本研究评估了在水的较大浓度范围(10至500 mgL(-1))中两栖幼虫非洲爪蟾中的双壁碳纳米管(DWNT)的生态毒理潜力。在实验室条件下静态暴露12天后,分析了急性毒性和遗传毒性。根据幼虫的死亡率和生长情况评估其急性毒性。根据国际标准微核试验,通过对幼虫循环血液中的微核红细胞进行评分,来分析其遗传毒性作用。此外,在暴露12天后制备幼虫肠道的组织学制剂,以使用光学和透射电子显微镜(TEM)观察。最后,在载玻片上制备暴露幼虫的肠,以通过拉曼成像进行分析。结果表明,在水中暴露于DWNTs的幼虫的红细胞没有遗传毒性,但是在所研究的每种DWNTs浓度下,其急性毒性都与physical和/或消化道的物理阻塞有关。确实,使用光学显微镜和TEM在肠道内观察到黑色物质,表明存在CNT,并通过拉曼光谱分析得到了证实。评估碳纳米管的风险需要更好的理解,尤其是包括机械和环境调查。

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