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Biocompatible Gold Nanoparticles Ameliorate Retinoic Acid-Induced Cell Death and Induce Differentiation in F9 Teratocarcinoma Stem Cells

机译:生物相容性金纳米粒子改善视黄酸诱导的细胞死亡并诱导F9畸胎瘤干细胞分化。

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摘要

The unique properties of gold nanoparticles (AuNPs) have attracted much interest for a range of applications, including biomedical applications in the cosmetic industry. The current study assessed the anti-oxidative effect of AuNPs against retinoic acid (RA)-induced loss of cell viability; cell proliferation; expression of oxidative and anti-oxidative stress markers, pro- and anti-apoptotic genes, and differentiation markers; and mitochondrial dysfunction in F9 teratocarcinoma stem cells. AuNPs were prepared by reduction of gold salts using luteolin as a reducing and stabilizing agent. The prepared AuNPs were spherical in shape with an average diameter of 18 nm. F9 cells exposed to various concentrations of these AuNPs were not harmed, whereas cells exposed to RA exhibited a dose-dependent change in cell viability and cell proliferation. The RA-mediated toxicity was associated with increased leakage of lactate dehydrogenase, reactive oxygen species, increased levels of malondialdehyde and nitric oxide, loss of mitochondrial membrane potential, and a reduced level of ATP. Finally, RA increased the level of pro-apoptotic gene expression and decreased the expression of anti-apoptotic genes. Interestingly, the toxic effect of RA appeared to be decreased in cells treated with RA in the presence of AuNPs, which was coincident with the increased levels of anti-oxidant markers including thioredoxin, glutathione peroxidases, glutathione, glutathione disulfide, catalase, and superoxide dismutase. Concomitantly, AuNPs ameliorated the apoptotic response by decreasing the mRNA expression of p53, p21, Bax, Bak, caspase-3, caspase-9, and increasing the expressions of Bcl-2 and Bcl-Xl. Interestingly, AuNPs not only ameliorated oxidative stress but also induced differentiation in F9 cells by increasing the expression of differentiation markers including retinoic acid binding protein, laminin 1, collagen type IV, and Gata 6 and decreasing the expressions of markers of stem cell pluripotency including Nanog, Rex1, octamer-binding transcription factor 4, and Sox-2. These consistent cellular and biochemical data suggest that AuNPs could ameliorate RA-induced cell death and facilitate F9 cell differentiation. AuNPs could be suitable therapeutic agents for the treatment of oxidative stress-related diseases such as atherosclerosis, cancer, diabetes, rheumatoid arthritis, and neurodegenerative diseases.
机译:金纳米颗粒(AuNPs)的独特性能吸引了许多应用领域的兴趣,包括化妆品行业中的生物医学应用。目前的研究评估了AuNPs对视黄酸(RA)诱导的细胞活力丧失的抗氧化作用。细胞增殖;氧化和抗氧化应激标记,促凋亡和抗凋亡基因以及分化标记的表达;和F9畸胎瘤干细胞的线粒体功能障碍。通过使用木犀草素作为还原和稳定剂还原金盐来制备AuNP。制备的AuNP为球形,平均直径为18nm。暴露于不同浓度的这些AuNPs的F9细胞没有受到伤害,而暴露于RA的细胞在细胞活力和细胞增殖方面表现出剂量依赖性的变化。 RA介导的毒性与乳酸脱氢酶的泄漏增加,活性氧种类,丙二醛和一氧化氮水平升高,线粒体膜电位损失以及ATP水平降低有关。最后,RA增加了促凋亡基因表达的水平,并降低了抗凋亡基因的表达。有趣的是,在存在AuNPs的情况下,用RA处理的细胞中RA的毒性作用似乎降低了,这与抗氧化标记物(包括硫氧还蛋白,谷胱甘肽过氧化物酶,谷胱甘肽,谷胱甘肽二硫化物,过氧化氢酶和超氧化物歧化酶)水平升高相吻合。 。伴随地,AuNP通过降低p53,p21,Bax,Bak,caspase-3,caspase-9的mRNA表达并增加Bcl-2和Bcl-Xl的表达来改善细胞凋亡反应。有趣的是,AuNPs不仅可以减轻氧化应激,还可以通过增加包括维甲酸结合蛋白,层粘连蛋白1,IV型胶原和Gata 6在内的分化标志物的表达并降低包括Nanog在内的干细胞多能性标志物的表达来诱导F9细胞分化。 ,Rex1,octamer结合转录因子4和Sox-2。这些一致的细胞和生化数据表明,AuNPs可以改善RA诱导的细胞死亡并促进F9细胞分化。 AuNPs可以是用于治疗与氧化应激相关的疾病例如动脉粥样硬化,癌症,糖尿病,类风湿性关节炎和神经退行性疾病的合适治疗剂。

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