2008
DOI: 10.1080/15257770701795797
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“One-Pot” Syntheses of Malondialdehyde Adducts of Nucleosides

Abstract: Short, "one-pot" syntheses of malondialdehyde adducts of deoxyguanosine, deoxyadenosine, and deoxycytidine are described. These syntheses proceed in improved yield and easier purification than previous syntheses and are well suited for the preparation of isotopically labeled nucleoside adducts for biomarker and metabolic studies.

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Cited by 19 publications
(21 citation statements)
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“…[ 15 N 5 ]-6-oxo-M 1 dG was synthesized as described previously by substituting [ 15 N 5 ]-dG (Cambridge Isotope Laboratories, Andover, MA, USA) for dG ( 15 ). Similarly, [ 13 C, 15 N 2 ]-M 1 dG was synthesized as described previously by substituting [ 13 C, 15 N 2 ]-dG (Cambridge Isotope Laboratories, Andover, MA, USA) for dG ( 27 ).…”
Section: Methodsmentioning
confidence: 99%
“…[ 15 N 5 ]-6-oxo-M 1 dG was synthesized as described previously by substituting [ 15 N 5 ]-dG (Cambridge Isotope Laboratories, Andover, MA, USA) for dG ( 15 ). Similarly, [ 13 C, 15 N 2 ]-M 1 dG was synthesized as described previously by substituting [ 13 C, 15 N 2 ]-dG (Cambridge Isotope Laboratories, Andover, MA, USA) for dG ( 27 ).…”
Section: Methodsmentioning
confidence: 99%
“…Section 1734 solely to indicate this fact. (21). Briefly, [8][9][10][11][12][13][14] C]2Ј-deoxyguanosine ( 14 C-dG) was obtained from Sigma (0.2 mCi, 55 mCi/mmol) as a solution in ethanol/ water (1:1).…”
Section: Methodsmentioning
confidence: 99%
“…The major product ion was at m/z 79 which can be explained by a six‐membered ring and is expected to be the most stable of the product ions. The two larger product ions have been identified by Szekely et al during the analysis of the corresponding nucleoside, M 1 dG, using multi‐stage MS/MS analysis. Protonated M 1 dG has an m/z of 304 and neutral loss of the deoxyribose unit (116 Da) occurred to give the protonated ion of M 1 G ( m/z 188) which is the starting point of our analyses.…”
Section: Resultsmentioning
confidence: 99%