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首页> 外文期刊>Cancer Cell International >Dissociation of DNA damage and mitochondrial injury caused by hydrogen peroxide in SV-40 transformed lung epithelial cells
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Dissociation of DNA damage and mitochondrial injury caused by hydrogen peroxide in SV-40 transformed lung epithelial cells

机译:SV-40转化的肺上皮细胞中过氧化氢引起的DNA损伤和线粒体损伤的解离

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Background Since lung epithelial cells are constantly being exposed to reactive oxygen intermediates (ROIs), the alveolar surface is a major site of oxidative stress, and each cell type may respond differently to oxidative stress. We compared the extent of oxidative DNA damage with that of mitochondrial injury in lung epithelial cells at the single cell level. Result DNA damage and mitochondrial injury were measured after oxidative stress in the SV-40 transformed lung epithelial cell line challenged with hydrogen peroxide (H2O2). Single cell analysis of DNA damage was determined by assessing the number of 8-oxo-2-deoxyguanosine (8-oxo-dG) positive cells, a marker of DNA modification, and the length of a comet tail. Mitochondrial membrane potential, ΔΨm, was determined using JC-1. A 1 h pulse of H2O2 induced small amounts of apoptosis (3%). 8-oxo-dG-positive cells and the length of the comet tail increased within 1 h of exposure to H2O2. The number of cells with reduced ΔΨm increased after the addition of H2O2 in a concentration-dependent manner. In spite of a continual loss of ΔΨm, DNA fragmentation was reduced 2 h after exposure to H2O2. Conclusion The data suggest that SV-40 transformed lung epithelial cells are resistant to oxidative stress, showing that DNA damage can be dissociated from mitochondrial injury.
机译:背景技术由于肺上皮细胞不断地暴露于活性氧中间体(ROIs),因此肺泡表面是氧化应激的主要部位,每种细胞类型对氧化应激的反应可能不同。我们在单个细胞水平上比较了肺上皮细胞中的氧化性DNA损伤程度与线粒体损伤程度。结果氧化应激后,用过氧化氢(H 2 O 2 )攻击SV-40转化的肺上皮细胞系,测定DNA损伤和线粒体损伤。通过评估8-oxo-2-deoxyguanosine(8-oxo-dG)阳性细胞的数量,DNA修饰的标记和彗尾的长度来确定DNA损伤的单细胞分析。使用JC-1测定线粒体膜电位ΔΨm。 H 2 O 2 1 h脉冲诱导少量凋亡(3%)。在暴露于H 2 O 2 1小时内,8-oxo-dG阳性细胞和彗尾的长度增加。加入H 2 O 2 后,ΔΨm减少的细胞数量以浓度依赖的方式增加。尽管ΔΨm持续损失,但在暴露于H 2 O 2 2小时后,DNA片段减少了。结论数据表明SV-40转化的肺上皮细胞对氧化应激具有抗性,表明线粒体损伤可消除DNA损伤。

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