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Relationship between levels of oxidative DNA damage, lipid peroxidation and mitochondrial membrane potential in young and old F344 rats

机译:幼老F344大鼠氧化DNA损伤水平,脂质过氧化与线粒体膜电位的关系。

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The extent of in vivo oxidative damage has been known to be cumulative over the period of the life of mammals. Our hypothesis is that there should be a positive correlation between the levels of 8-hydroxy-20-deoxyguanosine (8OHdG) and 8-iso-prostaglandin F-2 alpha (8-iso-PGF(2 alpha)) in major rat tissues. We also investigated whether increased level of oxidative stress causes a decrease in the mitochondrial membrane potential of peripheral lymphocytes of old rats using the MitoTracker Red fluorochrome. Our results show positive correlations between 8OHdG and 8-iso-PGF(2 alpha) for liver, brain and kidney measured by HPLC-UV-ECD (electrochemical detector) and EIA methods, respectively. However, heart tissues show a negative correlation. The mitochondrial membrane potential of old rat lymphocytes records significant decrease compared with the young lymphocytes. Based on our results, we conclude that in ageing studies, specific tissues need to be examined in order to measure the localised DNA damage and lipid peroxidation as different tissues display different extent of oxidative damage. We believe this approach of using combined markers is useful to verify the true efficacy of health intervention studies in animals and humans. In addition, the isoprostane assay can be further developed looking at lipid peroxidation as a potential marker in ageing studies.
机译:已知体内氧化损伤的程度在哺乳动物的生命周期内是累积的。我们的假设是在主要大鼠组织中8-羟基-20-脱氧鸟苷(8OHdG)和8-异前列腺素F-2α(8-iso-PGF(2 alpha))的含量之间应存在正相关。我们还使用MitoTracker Red荧光染料研究了氧化应激水平升高是否导致老年大鼠外周血淋巴细胞的线粒体膜电位降低。我们的结果表明,分别通过HPLC-UV-ECD(电化学检测器)和EIA方法测得的肝,脑和肾中8OHdG与8-iso-PGF(2 alpha)之间呈正相关。但是,心脏组织显示出负相关。与年轻淋巴细胞相比,旧大鼠淋巴细胞的线粒体膜电位记录显着降低。根据我们的结果,我们得出结论,在衰老研究中,由于不同的组织表现出不同程度的氧化损伤,因此需要检查特定组织以测量局部DNA损伤和脂质过氧化作用。我们相信这种使用组合标记的方法对于验证动物和人类健康干预研究的真正功效是有用的。此外,可以将脂质过氧化作为老化研究中的潜在标志物,进一步开发异前列腺素测定法。

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