The potential impact of industrial multiwalled carbon nanotubes (MWNTs) was investigated under normalized laboratory conditions according to the International Standard micronucleus assay ISO 21427-1 for 12 days of half-static exposure to 0.1, 1, 10 and 50 mg/l of MWNTs in water. Three different end points were carried out for 12 days of exposure: mortality, growth inhibition and micronuclei induction in erythrocytes of the circulating blood of larvae. Raman spectroscopy analysis was used to study the presence of carbon nanotubes in the biological samples. Considering the high diversity of carbon nanotubes according to their different characteristics, MWNTs were analyzed in Xenopus larvae, comparatively to double-walled carbon nanotubes used in a previous study in similar conditions. Growth inhibition in larvae exposed to 50 mg/l of MWNTs was evidenced; however, no genetoxicity (micronucleus assay) was noticed, at any concentration. Carbon nanotube localization in the larvae leads to different possible hypothesis of mechanisms explaining toxicity in Xenopus.

译文

:根据国际标准微核试验ISO 21427-1,在标准化实验室条件下研究了工业多壁碳纳米管(MWNT)对0.1、1、10和50 mg / l MWNTs半静态暴露12天的潜在影响。在水里。在暴露的12天中进行了三个不同的终点:幼虫循环血液中红细胞的死亡率,生长抑制和微核诱导。拉曼光谱分析用于研究生物样品中碳纳米管的存在。考虑到碳纳米管根据其不同特性的高度多样性,在非洲爪蟾幼虫中对MWNT进行了分析,与先前研究中在类似条件下使用的双壁碳纳米管相比。事实证明,暴露于50 mg / l MWNTs的幼虫具有生长抑制作用。但是,在任何浓度下都没有发现基因毒性(微核分析)。碳纳米管在幼虫中的定位导致不同的可能假说,解释了非洲爪蟾毒性的机理。

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