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Development of the adductome approach to detect DNA damage in humans.

机译:开发用于检测人类DNA损伤的加合物方法。

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摘要

The development of new strategies designed to detect DNA damage caused by oxidative stress and other means may advance our understanding of the roles of such types of damage in the etiology of cancers, in aging processes, and as biomarkers of exposure. A DNA adduct detection method that uses liquid chromatography coupled with electrospray ionization tandem mass spectrometry (LC/ESI-MS/MS) to detect multiple DNA adducts in human lung tissue is reported herein. This adductome analysis strategy is designed to detect the neutral loss of 2 -deoxyribose from positively ionized 2 -deoxynucleoside adducts in multiple reaction ion monitoring mode (MRM) transmitting the [M + H](+) > [M + H - 116](+) transition over a total of 374 transitions in the mass range from m/z 228.8 to m/z 602.8. Data analysis is optimized and coupled with a comprehensive manual screening process designed to minimize the number of artifactual adducts appearing in the final analysis. In the final analysis, putative adducts were organized into an adductome map and unambiguous confirmation of selected oxidative adducts were made by stable isotope dilution and comparison to authentic standards. The future applications of this method are discussed.
机译:旨在检测由氧化应激和其他方式引起的DNA损伤的新策略的开发可能会增进我们对这类损伤在癌症病因,衰老过程中以及作为暴露生物标志物的作用的理解。本文报道了一种DNA加合物检测方法,该方法使用液相色谱结合电喷雾电离串联质谱法(LC / ESI-MS / MS)来检测人肺组织中的多个DNA加合物。该加合物分析策略旨在检测正离子化2-脱氧核苷加合物在传输[M + H](+)> [M + H-116]的多反应离子监测模式(MRM)中的2-脱氧核糖中性损失。 +)在从m / z 228.8到m / z 602.8的质量范围内总共进行了374次过渡。数据分析经过优化,并与全面的手动筛选过程相结合,旨在最大程度地减少最终分析中出现的人为加合物的数量。在最终分析中,将推定的加合物组织到一个加合物组图中,并通过稳定的同位素稀释并与真实标准品进行比较来明确确认所选的氧化加合物。讨论了该方法的未来应用。

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