Article ID Journal Published Year Pages File Type
1196164 Journal of the American Society for Mass Spectrometry 2006 6 Pages PDF
Abstract

Lipid peroxidation induced etheno-DNA adducts are promutagenic and have been suggested to play a causal role in the development of human cancers. Therefore, human biomonitoring of etheno-DNA adducts in urine has been suggested as a potential marker for oxidative stress-related DNA damage. For quantitative determination, a column-switching LC/APCI-MS/MS method was developed for simultaneous analysis of εAde, εdC, and εdA in human urine. Quantitative validation parameters (precision, within-day repeatability, and between-day reproducibility) yielded satisfactory results below 10%. Limit of quantification for εAde, εdC, and εdA was 5.3 fmol, 7.5 fmol, and 1.3 fmol on column, respectively. Mean urinary excretion rates of a six healthy volunteers were 45.8 pmol εAde/24 h, 96.8 pmol εdC/24 h, and 18.1 pmol εdA/24 h. The demonstrated levels of performance suggest a future applicability of this method to studies of cancer and other diseases related to oxidative stress in humans. To our knowledge, this is the first method described that allows simultaneous determination of εAde, εdC, and εdA in human urine samples.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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