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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Quiescence induced by iron challenge protects neuroblastoma cells from oxidative stress.
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Quiescence induced by iron challenge protects neuroblastoma cells from oxidative stress.

机译:铁挑战诱导的静止状态可保护神经母细胞瘤细胞免受氧化应激。

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The brain uses massive amounts of oxygen, generating large quantities of reactive oxygen species (ROS). Because of its lipid composition, rich in unsaturated fatty acids, the brain is especially vulnerable to ROS. Furthermore, oxidative damage in the brain is often associated with iron, which has pro-oxidative properties. Iron-mediated oxidative damage in the brain is compounded by the fact that brain iron distribution is non-uniform, being particularly high in areas sensitive to neurodegeneration. This work was aimed to further our understanding of the cellular mechanisms by which SHSY5Y neuroblastoma cells adapt to, and survive increasing iron loads. Using an iron accumulation protocol that kills about 50% of the cell population, we found by cell sorting analysis that the SHSY5Y sub-population that survived the iron loading arrested in the G(0) phase of the cell cycle. These cells expressed neuronal markers, while their electrical properties remained largely unaltered. These results suggest that uponiron challenge, neuroblastoma cells respond by entering the G(0) phase, somehow rendering them resistant to oxidative stress. A similar physiological condition might be involved in neuronal survival in tissues known to accumulate iron with age, such as the hippocampus and the substantia nigra pars compacta.
机译:大脑使用大量的氧气,从而产生大量的活性氧(ROS)。由于其脂质成分富含不饱和脂肪酸,因此大脑特别容易受到ROS的伤害。此外,大脑中的氧化损伤通常与铁有关,铁具有促氧化特性。脑中铁的分布不均匀的事实加剧了铁介导的大脑氧化损伤,在对神经变性敏感的区域尤其如此。这项工作旨在进一步了解SHSY5Y神经母细胞瘤细胞适应铁负荷并在其中生存的细胞机制。使用一种杀死大约50%细胞群体的铁蓄积方案,我们通过细胞分选分析发现,幸存下来的铁负载在细胞周期G(0)期中存活的SHSY5Y亚群。这些细胞表达神经元标志物,而它们的电特性基本上保持不变。这些结果表明,在受到铁离子攻击后,神经母细胞瘤细胞会通过进入G(0)相作出反应,从而使它们抗氧化应激。已知会随着年龄而积累铁的组织(例如海马和黑质致密组织)的神经元存活可能与类似的生理状况有关。

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