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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >XPF plays an indispensable role in relieving silver nanoparticle induced DNA damage stress in human cells
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XPF plays an indispensable role in relieving silver nanoparticle induced DNA damage stress in human cells

机译:XPF在缓解银纳米粒子诱导的人体细胞中的DNA损伤胁迫方面发挥不可或缺的作用

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Due to the specific antimicrobial activity of silver nanoparticles (AgNPs), they are widely used in wound dressings, coatings in medical devices and household products. In spite of the well-documented genotoxicity of AgNPs, the molecular mechanisms of relieving AgNP-induced DNA damage stress remain poorly understood. We report here that one of the DNA repair factors, XPF, plays a crucial role in resisting AgNP-induced DNA damage stress in human cells. Following culture with AgNP-containing media, severely decreased colony forming abilities have been observed in XPF mutant and knockdown cells compared with wild type or control cells respectively, demonstrating that XPF is required to resist the AgNP-induced stress. By employing the comet assays, we confirmed that DNA damages were produced in all tested cells following their exposure to AgNPs for 48 h. However, more DNA damage accumulations were observed in XPF mutant and knockdown cells than wild type or control cells respectively. Moreover, severe DNA damage response and the activation of p53-mediated DNA damage response network result from mutated XPF or significantly reduced XPF level in human cells. Together, our results illustrate that XPF is the indispensable factor involved in relieving AgNP-induced DNA damage stress in human cells.
机译:由于银纳米颗粒(AgNP)的特异性抗微生物活性,它们广泛用于伤口敷料,医疗器械和家用产品中的涂料。尽管agnps的良好良好的遗传毒性,缓解AgNP诱导的DNA损伤应激的分子机制仍然明白。我们在此报告称,其中一个DNA修复因子XPF在抵抗人体细胞中抵抗AgNP诱导的DNA损伤胁迫方面起着至关重要的作用。在含有AgNP的培养基中,在XPF突变体和敲除细胞中,分别观察到含有AgNP培养基的培养物,分别观察到与野生型或对照细胞相比,证明XPF是抵抗AgNP诱导的应力。通过采用彗星测定,我们证实在其暴露于AgNP的所有测试细胞中产生DNA损伤48小时。然而,分别在XPF突变体和敲低的细胞中观察到更多DNA损伤累积,而不是野生型或对照细胞。此外,严重的DNA损伤响应和P53介导的DNA损伤响应网络的激活是由突变的XPF产生的,或者在人体细胞中显着降低XPF水平。我们的结果表明,XPF是促进人细胞中AgNP诱导的DNA损伤应激所涉及的不可或缺的因素。

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