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Cytotoxicity Investigation on Cultured Human Blood Cells Treated with Single-Wall Carbon Nanotubes

机译:单壁碳纳米管对培养的人血细胞的细胞毒性研究

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摘要

The single-wall carbon nanotubes (SWCNTs) are one of the new materials of emerging technologies. They are becoming increasingly studied for the possible applications in electronics, optics and biology. In particular, very promising fields of application are the development of optical biosensors and the intracellular drug delivery. Nevertheless, there is a paucity of information on their toxicological properties and on potential human health risk. In the present study the SWCNTs were investigated for the possible induction of toxicity in human blood cells. Cell growth, viability, apoptosis and metabolic activity were evaluated in proliferating human peripheral blood lymphocytes. In un-stimulated human leukocytes primary DNA damage was also evaluated. SWCNTs concentrations ranging from 1 to 50 μg/ml were tested, and treatment duration varied from 6 to 72 h, in accordance with the biological target investigated. A statistically significant decrease in cell growth was found in cells treated with the highest concentrations (25 and 50 μg/ml). Such decrease was not associated to cell death or apoptosis, but it was demonstrated to be related to a decrease in metabolic activity, as assessed by resazurin assay. Moreover, treatments of 6 h with SWCNTs concentrations of 1, 5 and 10 μg/ml failed to induce primary DNA damage on the entire human leukocytes population.
机译:单壁碳纳米管(SWCNT)是新兴技术的新材料之一。为了在电子,光学和生物学中的可能应用,对它们进行了越来越多的研究。特别地,非常有前途的应用领域是光学生物传感器的开发和细胞内药物递送。然而,关于其毒理特性和潜在的人类健康风险的信息很少。在本研究中,研究了SWCNT在人血细胞中可能诱导的毒性。在增殖的人外周血淋巴细胞中评估了细胞生长,活力,凋亡和代谢活性。在未刺激的人白细胞中,也评估了原发性DNA损伤。根据所研究的生物学目标,测试了SWCNTs浓度范围为1至50μg/ ml,处理时间为6至72 h。在以最高浓度(25和50μg/ ml)处理的细胞中,发现细胞生长具有统计学上的显着下降。这种减少与细胞死亡或细胞凋亡无关,但据证实与代谢活性的减少有关,如刃天青测定所评估的。此外,用浓度分别为1、5和10μg/ ml的SWCNT处理6 h无法诱导整个人类白细胞群体发生初级DNA损伤。

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