Nanosafety Research Center, Finnish Institute of Occupational Health, FI-00250 Helsinki, Finland; Safe New Technologies, Work Environment Development, Finnish Institute of Occupational Health, FI-00250 Helsinki, Finland.
Toxicology. 2013 Nov 8;313(1):24-37. doi: 10.1016/j.tox.2012.12.008. Epub 2012 Dec 21.
Although some types of carbon nanotubes (CNTs) have been described to induce mesothelioma in rodents and genotoxic effects in various cell systems, there are few previous studies on the genotoxicity of CNTs in mesothelial cells. Here, we examined in vitro DNA damage induction by short multi-wall CNTs (MWCNTs; 10-30 nm × 1-2 μm) and single-wall CNTs (SWCNTs; >50% SWCNTs, ~40% other CNTs; <2 nm × 1-5 μm) in human mesothelial (MeT-5A) cells and bronchial epithelial (BEAS 2B) cells, using the single cell gel electrophoresis (comet) assay and the immunoslot blot assay for the detection of malondialdehyde (M1dG) DNA adducts. In BEAS 2B cells, we also studied the induction of micronuclei (MN) by the CNTs using the cytokinesis-block method. The cells were exposed to the CNTs (5-200 μg/cm(2), corresponding to 19-760 μg/ml) for 24 and 48h in the comet assay and for 48 and 72 h in the MN and M1dG assays. Transmission electron microscopy (TEM) showed more MWCNT fibres and SWCNT clusters in BEAS 2B than MeT-5A cells, but no significant differences were seen in intracellular dose expressed as area of SWCNT clusters between TEM sections of the cell lines. In MeT-5A cells, both CNTs caused a dose-dependent induction of DNA damage (% DNA in comet tail) in the 48-h treatment and SWCNTs additionally in the 24-h treatment, with a statistically significant increase at 40 μg/cm(2) of SWCNTs and (after 48 h) 80 μg/cm(2) of both CNTs. SWCNTs also elevated the level of M1dG DNA adducts at 1, 5, 10 and 40 μg/cm(2) after the 48-h treatment, but both CNTs decreased M1dG adduct level at several doses after the 72-h treatment. In BEAS 2B cells, SWCNTs induced a statistically significant increase in DNA damage at 80 and 120 μg/cm(2) after the 24-h treatment and in M1dG adduct level at 5 μg/cm(2) after 48 h and 10 and 40 μg/cm(2) after 72 h; MWCNTs did not affect the level of DNA damage but produced a decrease in M1dG adducts in the 72-h treatment. The CNTs did not affect the level of MN. In conclusion, MWCNTs and SWCNTs induced DNA damage in MeT-5A cells but showed a lower (SWCNTs) or no (MWCNTs) effect in BEAS 2B cells, suggesting that MeT-5A cells were more sensitive to the DNA-damaging effect of CNTs than BEAS 2B cells, despite the fact that more CNT fibres or clusters were seen in BEAS 2B than MeT-5A cells. M1dG DNA adducts were induced by SWCNTs but decreased after a 3-day exposure to MWCNTs and (in MeT-5A cells) SWCNTs, indicating that CNTs may lead to alterations in oxidative effects within the cells. Neither of the CNTs was able to produce chromosomal damage (MN).
尽管已经有一些类型的碳纳米管(CNT)被描述为在啮齿动物中诱导间皮瘤和在各种细胞系统中诱导遗传毒性,但关于 CNT 在间皮细胞中的遗传毒性的先前研究较少。在这里,我们研究了短多壁 CNT(MWCNT;10-30nm×1-2μm)和单壁 CNT(SWCNT;>50%SWCNT,~40%其他 CNT;<2nm×1-5μm)在人间皮细胞(MeT-5A)和支气管上皮细胞(BEAS 2B)中的体外 DNA 损伤诱导作用,使用单细胞凝胶电泳(彗星)试验和免疫槽印迹试验检测丙二醛(M1dG)DNA 加合物。在 BEAS 2B 细胞中,我们还使用细胞分裂阻断法研究了 CNT 对微核(MN)的诱导作用。将细胞暴露于 CNT(5-200μg/cm2,相当于 19-760μg/ml)24 和 48h 用于彗星试验,48 和 72h 用于 MN 和 M1dG 试验。透射电子显微镜(TEM)显示 BEAS 2B 细胞中的 MWCNT 纤维和 SWCNT 簇比 MeT-5A 细胞多,但在 TEM 切片中,细胞系之间 SWCNT 簇的细胞内剂量(以 SWCNT 簇面积表示)没有明显差异。在 MeT-5A 细胞中,两种 CNT 在 48 小时的处理中均引起 DNA 损伤的剂量依赖性诱导(彗星尾巴中的%DNA),并且 SWCNTs 在 24 小时的处理中也引起 DNA 损伤,SWCNTs 的 40μg/cm2 以及(48 小时后)两种 CNT 的 80μg/cm2 具有统计学意义的增加。SWCNTs 在 48 小时处理后还分别在 1、5、10 和 40μg/cm2 时升高了 M1dG DNA 加合物的水平,但两种 CNT 在 72 小时处理后在几个剂量下降低了 M1dG 加合物的水平。在 BEAS 2B 细胞中,SWCNTs 在 24 小时处理后在 80 和 120μg/cm2 时以及在 48 小时处理后在 5μg/cm2 时以及在 72 小时处理后在 10 和 40μg/cm2 时,均引起 DNA 损伤的统计学显著增加;MWCNTs 不影响 DNA 损伤水平,但在 72 小时处理中降低了 M1dG 加合物的水平。CNTs 不影响 MN 的水平。总之,MWCNTs 和 SWCNTs 诱导 MeT-5A 细胞中的 DNA 损伤,但在 BEAS 2B 细胞中表现出较低(SWCNTs)或没有(MWCNTs)作用,这表明与 BEAS 2B 细胞相比,MeT-5A 细胞对 CNT 的 DNA 损伤作用更为敏感,尽管在 BEAS 2B 细胞中看到的 CNT 纤维或簇比 MeT-5A 细胞多。SWCNTs 诱导了 M1dG DNA 加合物,但在暴露于 MWCNTs 3 天后以及(在 MeT-5A 细胞中)SWCNTs 后减少,表明 CNTs 可能导致细胞内氧化作用的改变。两种 CNT 均不能产生染色体损伤(MN)。