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DNA damage in embryonic stem cells caused by nanodiamonds

机译:纳米金刚石对胚胎干细胞的DNA损伤

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Because of their unique photoluminescence and magnetic properties, nanodiamonds (NDs) are promising for biomedical imaging and therapeutical applications. However, these biomedical applications will hardly be realized unless the potential hazards of NDs to humans and other biological systems are ascertained. Previous studies performed in our group and others have demonstrated the excellent biocompatibility of NDs in a variety of cell lines without noticeable cytotoxicity. In the present paper, we report the first genotoxicity study on NDs. Our results showed that incubation of embryonic stem cells with NDs led to slightly increased expression of DNA repair proteins, such as p53 and MOGG-1. Oxidized nanodiamonds (O-NDs) were demonstrated to cause more DNA damage than the pristine/raw NDs (R-NDs), showing the surface chemistry specific genotoxicity. However, the DNA damages caused by either the O-NDs or the R-NDs are much less severe than those caused by multiwalled carbon nanotubes (MWNTs) observed in our previous study. These findings should have important implications for future applications of NDs in biological applications.
机译:由于其独特的光致发光和磁性,纳米金刚石(NDs)在生物医学成像和治疗应用中很有前途。但是,除非确定NDs对人类和其他生物系统的潜在危害,否则将很难实现这些生物医学应用。在我们小组及其他小组中进行的先前研究表明,NDs在多种细胞系中均具有出色的生物相容性,而没有明显的细胞毒性。在本文中,我们报告了关于ND的首次遗传毒性研究。我们的结果表明,将胚胎干细胞与ND一起孵育会导致DNA修复蛋白(例如p53和MOGG-1)的表达略有增加。氧化纳米金刚石(O-NDs)被证明比原始/原始NDs(R-NDs)引起更多的DNA损伤,显示了表面化学特异性的遗传毒性。然而,由O-ND或R-ND引起的DNA损伤远没有我们先前研究中观察到的由多壁碳纳米管(MWNT)引起的DNA损伤严重。这些发现应该对ND在生物应用中的未来应用具有重要意义。

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