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Influence of TiO2 nanoparticles on glutathione in rat synovial cell line RSC-364

机译:TiO2纳米粒子对大鼠滑膜细胞系RSC-364谷胱甘肽的影响

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Nanobiomaterials have good prospect in application of biomedical products and orthopedic implants. However, increasing evidence suggest that the special physicochemical properties of nanobiomaterials pose potential risks to human health. For determining its cytotoxicity on rat synovial cell line (RSC-364), in this study, the effect of TiO2 nanoparticles(nano-TiO2) on glutathione in cells was evaluated. By incubating RSC-364 cells with nano-TiO2 in different concentration, the over-production of reactive oxygen species was determined by flow cytometry. The intracellular glutathione(GSH), gluta-thione-related antioxidants contents were assayed using biochemical methods to estimate the oxidative damage in cells. Total glutathione (T-GSH) and reduced GSH contents decreased in RSC-364 cells after exposure to nano-TiO2. This was in dose-dependent relationship. The oxidized glutathione level decreased too, indicating the serious damage in oxidant/antioxidant system. Results implied that nano-TiO2 exposure caused the oxidative stress in RSC-364 cells by overproduced free radicals. The cellular redox status was interrupted.
机译:纳米飞物质具有良好的应用生物医学产品和矫形植入物。然而,越来越多的证据表明纳米甲基材料的特殊物理化学特性对人体健康构成了潜在的风险。为了确定其对大鼠滑膜细胞系(RSC-364)的细胞毒性,在本研究中,评估TiO2纳米颗粒(Nano-TiO2)对细胞谷胱甘肽的影响。通过以不同浓度与纳米TiO 2一起孵育RSC-364细胞,通过流式细胞术测定反应性氧物质的过度产生。使用生物化学方法测定细胞内谷胱甘肽(GSH),无菌相关的抗氧化剂含量,以估计细胞中氧化损伤。在暴露于纳米TiO2后,RSC-364细胞中总谷胱甘肽(T-GSH)和降低的GSH含量降低。这是依赖的关系。氧化的谷胱甘肽水平也降低,表明氧化剂/抗氧化系统中的严重损伤。结果暗示纳米TiO2暴露通过过度使用的自由基引起RSC-364细胞中的氧化应激。蜂窝氧化还原状态中断。

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