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Assays for urinary biomarkers of oxidatively damaged nucleic acids

机译:氧化受损核酸的尿液生物标志物测定

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The analysis of oxidized nucleic acid metabolites can be performed by a variety of methodologies: liquid chromatography coupled with electrochemical or mass-spectrometry detection, gas chromatography coupled with mass spectrometry, capillary electrophoresis and ELISA (Enzyme-linked immunosorbent assay). The major analytical challenge is specificity. The best combination of selectivity and speed of analysis can be obtained by liquid chromatography coupled with tandem mass spectrometric detection. This, however, is also the most demanding technique with regard to price, complexity and skills requirement. The available ELISA methods present considerable specificity problems and cannot be recommended at present. The oxidized nucleic acid metabolites in urine are assumed to originate from the DNA and RNA. However, direct evidence is not available. A possible contribution from the nucleotide pools is most probably minimal, if existing. Recent investigation on RNA oxidation has shown conditions where RNA oxidation but not DNA oxidation is prominent, and while investigation on DNA is of huge interest, RNA oxidation may be overlooked. The methods for analyzing oxidized deoxynucleosides can easily be expanded to analyze the oxidized ribonucleosides. The urinary measurement of oxidized nucleic acid metabolites provides a non-invasive measurement of oxidative stress to DNA and RNA.
机译:氧化核酸代谢产物的分析可以通过多种方法进行:液相色谱结合电化学或质谱检测,气相色谱结合质谱,毛细管电泳和ELISA(酶联免疫吸附测定)。主要的分析挑战是特异性。选择性和分析速度的最佳组合可以通过液相色谱结合串联质谱检测获得。但是,对于价格,复杂性和技能要求,这也是最苛刻的技术。可用的ELISA方法存在相当大的特异性问题,目前尚不推荐。假定尿液中的氧化核酸代谢产物源自DNA和RNA。但是,没有直接的证据。如果存在,核苷酸库的可能贡献极小。最近对RNA氧化的研究表明,RNA氧化而不是DNA氧化是突出的条件,尽管对DNA的研究引起了广泛兴趣,但RNA氧化可能被忽略了。用于分析氧化的脱氧核苷的方法可以容易地扩展到分析氧化的核糖核苷。尿液中氧化的核酸代谢产物的测定提供了对DNA和RNA氧化应激的非侵入性测定。

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