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羧化纳米金刚石可作为体外纳米遗传毒性研究的阴性对照。

Carboxylated nanodiamonds can be used as negative reference in in vitro nanogenotoxicity studies.

作者信息

Moche H, Paget V, Chevalier D, Lorge E, Claude N, Girard H A, Arnault J C, Chevillard S, Nesslany F

机构信息

Institut Pasteur de Lille, Laboratory of Genetic Toxicology, F-59019, Lille, France.

Servier Group, F-45520, Gidy, France.

出版信息

J Appl Toxicol. 2017 Aug;37(8):954-961. doi: 10.1002/jat.3443. Epub 2017 Feb 6.

Abstract

Nanodiamonds (NDs) are promising nanomaterials for biomedical applications. However, a few studies highlighted an in vitro genotoxic activity for detonation NDs, which was not evidenced in one of our previous work quantifying γ-H2Ax after 20 and 100 nm high-pressure high-temperature ND exposures of several cell lines. To confirm these results, in the present work, we investigated the genotoxicity of the same 20 and 100 nm NDs and added intermediate-sized NDs of 50 nm. Conventional in vitro genotoxicity tests were used, i.e., the in vitro micronucleus and comet assays that are recommended by the French National Agency for Medicines and Health Products Safety for the toxicological evaluation of nanomedicines. In vitro micronucleus and in vitro comet assays (standard and hOGG1-modified) were therefore performed in two human cell lines, the bronchial epithelial 16HBE14o- cells and the colon carcinoma T84 cells. Our results did not show any genotoxic activity, whatever the test, the cell line or the size of carboxylated NDs. Even though these in vitro results should be confirmed in vivo, they reinforce the potential interest of carboxylated NDs for biomedical applications or even as a negative reference nanoparticle in nanotoxicology. Copyright © 2017 John Wiley & Sons, Ltd.

摘要

纳米金刚石(NDs)是用于生物医学应用的有前景的纳米材料。然而,一些研究强调了爆轰纳米金刚石的体外遗传毒性活性,而在我们之前的一项工作中,对几种细胞系进行20和100纳米高压高温纳米金刚石暴露后定量γ-H2Ax时并未证实这一点。为了证实这些结果,在本研究中,我们研究了相同的20和100纳米纳米金刚石的遗传毒性,并添加了50纳米的中等尺寸纳米金刚石。使用了传统的体外遗传毒性试验,即法国国家药品和健康产品安全局推荐用于纳米药物毒理学评估的体外微核试验和彗星试验。因此,在两种人类细胞系,即支气管上皮16HBE14o-细胞和结肠癌T84细胞中进行了体外微核试验和体外彗星试验(标准试验和hOGG1修饰试验)。无论试验、细胞系或羧化纳米金刚石的尺寸如何,我们的结果均未显示任何遗传毒性活性。尽管这些体外结果应在体内得到证实,但它们增强了羧化纳米金刚石在生物医学应用中的潜在价值,甚至在纳米毒理学中作为阴性参考纳米颗粒的潜在价值。版权所有© 2017约翰·威利父子有限公司。

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