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The β-SiC Nanowires (~100 nm) Induce Apoptosis via Oxidative Stress in Mouse Osteoblastic Cell Line MC3T3-E1

机译:β-SiC纳米线(〜100 nm)通过氧化应激在小鼠成骨细胞MC3T3-E1中诱导凋亡。

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摘要

Silicon carbide (SiC), a compound of silicon and carbon, with chemical formula SiC, the beta modification (β-SiC), with a zinc blende crystal structure (similar to diamond), is formed at temperature below 1700°C. β-SiC will be the most suitable ceramic material for the future hard tissue replacement, such as bone and tooth. The in vitro cytotoxicity of β-SiC nanowires was investigated for the first time. Our results indicated that 100 nm long SiC nanowires could significantly induce the apoptosis in MC3T3-E1 cells, compared with 100 μm long SiC nanowires. And 100 nm long SiC nanowires increased oxidative stress in MC3T3-E1 cells, as determined by the concentrations of MDA (as a marker of lipid peroxidation) and 8-OHdG (indicator of oxidative DNA damage). Moreover, transmission electron microscopy (TEM) was performed to evaluate the morphological changes of MC3T3-E1 cells. After treatment with 100 nm long SiC nanowires, the mitochondria were swelled and disintegrated, and the production of ATP and the total oxygen uptake were also decreased significantly. Therefore, β-SiC nanowires may have limitations as medical material.
机译:碳化硅(SiC)是硅和碳的化合物,化学成分为SiC,β修饰(β-SiC),具有锌混合晶体结构(类似于金刚石),温度低于1700°C。 β-SiC将是最适合将来替代硬组织(例如骨骼和牙齿)的陶瓷材料。首次研究了β-SiC纳米线的体外细胞毒性。我们的结果表明,与100μm长的SiC纳米线相比,长100μm的SiC纳米线可以显着诱导MC3T3-E1细胞的凋亡。 100 nm长的SiC纳米线增加了MC3T3-E1细胞的氧化应激,这取决于MDA(脂质过氧化的标志物)和8-OHdG(氧化性DNA损伤的指标)的浓度。此外,进行了透射电子显微镜(TEM)以评估MC3T3-E1细胞的形态变化。用100 nm长的SiC纳米线处理后,线粒体溶胀并分解,ATP的产生和总氧的吸收也显着降低。因此,β-SiC纳米线作为医疗材料可能会受到限制。

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