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Quantitative determination of oxidative base damage in DNA by stable isotope‐dilution mass spectrometry

机译:稳定同位素稀释质谱法定量测定DNA中的氧化性碱基损伤

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>For understanding of the role of oxidative DNA damage in biological processes such as mutagenesis and carcinogenesis, it is essential to identify and quantify this type of DNA damage in cells. This can be achieved by gas chromatography/mass spectrometry. The present study describes the quantification of modified bases in DNA by isotope-dilution mass spectrometry with the use of stable isotope-labeled analogues as internal standards. A number of isotopically labeled DNA bases were synthesized. The mass spectra of their trimethylsilyl derivatives were recorded. Calibration plots were obtained for known quantities of modified bases and their isotope-labeled analogues. Quantification of various modified DNA bases by isotope-dilution mass spectrometry was demonstrated in isolated chromatin exposed to ionizing radiation. The results indicate that gas chromatography/stable isotope-dilution mass spectrometry is an ideally suited technique for selective and sensitive quantification of modified bases in DNA.
机译:>为了解氧化性DNA损伤在诱变和致癌等生物学过程中的作用,必须鉴定和定量细胞中此类DNA损伤。这可以通过气相色谱/质谱法来实现。本研究描述了使用稳定同位素标记的类似物作为内标通过同位素稀释质谱法对DNA中修饰碱基的定量。合成了许多同位素标记的DNA碱基。记录其三甲基甲硅烷基衍生物的质谱。获得已知量的修饰碱基及其同位素标记类似物的校准图。在暴露于电离辐射的分离染色质中证明了通过同位素稀释质谱法对各种修饰的DNA碱基的定量。结果表明,气相色谱/稳定同位素稀释质谱法是对DNA中修饰碱基进行选择性和灵敏定量的理想选择。

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