首页> 美国卫生研究院文献>Frontiers in Pharmacology >Cerium Oxide Nanoparticles Re-establish Cell Integrity Checkpoints and Apoptosis Competence in Irradiated HaCat Cells via Novel Redox-Independent Activity
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Cerium Oxide Nanoparticles Re-establish Cell Integrity Checkpoints and Apoptosis Competence in Irradiated HaCat Cells via Novel Redox-Independent Activity

机译:氧化铈纳米颗粒通过新颖的氧化还原独立活性在辐射的HaCat细胞中重建细胞完整性检查点和细胞凋亡能力。

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摘要

Cerium oxide nanoparticles (CNPs) are potent radical scavengers protecting cells from oxidative insults, including ionizing radiation. Here we show that CNPs prevent X-ray-induced oxidative imbalance reducing DNA breaks on HaCat keratinocytes, nearly abating mutagenesis. At the same time, and in spite of the reduced damage, CNPs strengthen radiation-induced cell cycle arrest and apoptosis outcome, dropping colony formation; notably, CNPs do not possess any intrinsic toxicity toward non-irradiated HaCat, indicating that they act on damaged cells. Thus CNPs, while exerting their antioxidant action, also reinforce the stringency of damage-induced cell integrity checkpoints, promoting elimination of the “tolerant” cells, being in fact radio-sensitizers. These two contrasting pathways are mediated by different activities of CNPs: indeed Sm-doped CNPs, which lack the Ce3+/Ce4+ redox switch and the correlated antioxidant action, fail to decrease radiation-induced superoxide formation, as expected, but surprisingly maintain the radio-sensitizing ability and the dramatic decrease of mutagenesis. The latter is thus attributable to elimination of damaged cells rather than decreased oxidative damage. This highlights a novel redox-independent activity of CNPs, allowing selectively eliminating heavily damaged cells through non-toxic mechanisms, rather reactivating endogenous anticancer pathways in transformed cells.
机译:氧化铈纳米粒子(CNP)是有效的自由基清除剂,可保护细胞免受氧化损伤,包括电离辐射。在这里,我们显示CNP可以防止X射线诱导的氧化不平衡,从而减少HaCat角质形成细胞上的DNA断裂,从而几乎消除了诱变作用。同时,尽管损伤减少,CNPs仍能增强辐射诱导的细胞周期停滞和凋亡结果,从而降低了菌落的形成。值得注意的是,CNP对未经辐照的HaCat没有任何内在的毒性,表明它们对受损的细胞起作用。因此,CNP在发挥其抗氧化作用的同时,也增强了损伤诱导的细胞完整性检查点的严格性,从而促进了对“耐受”细胞的清除,而这些细胞实际上是放射致敏剂。这两种相反的途径是由CNP的不同活性所介导的:确实是掺有Sm的CNP,它们缺乏Ce 3 + / Ce 4 + 氧化还原开关和相关的抗氧化作用,不能像预期的那样减少辐射诱导的超氧化物的形成,但是出人意料地保持了辐射敏化能力和诱变的急剧减少。因此,后者可归因于消除受损细胞而不是减少氧化损伤。这突显了CNP的一种新的氧化还原非依赖性活性,可通过无毒机制选择性清除严重受损的细胞,而在转化细胞中激活内源性抗癌途径。

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