Quantification of the 2-Deoxyribonolactone and Nucleoside 5 '-Aldehyde Products of 2-Deoxyribose Oxidation in DNA and Cells by Isotope-Dilution Gas Chromatography Mass Spectrometry: Differential Effects of gamma-Radiation and Fe[superscript 2+]-EDTA
The oxidation of 2-deoxyribose in DNA has emerged as a critical determinant of the cellular toxicity of oxidative damage to DNA, with oxidation of each carbon producing a unique spectrum of electrophilic products. We have developed and validated an isotope-dilution gas chromatography-coupled mass sp...
Main Authors: | Chan, Wan Simon (Contributor), Chen, Bingzi (Contributor), Wang, Lianrong (Contributor), Taghizadeh, Koli (Contributor), Demott, Michael S. (Contributor), Dedon, Peter C. (Contributor) |
---|---|
Other Authors: | Massachusetts Institute of Technology. Department of Biological Engineering (Contributor), Massachusetts Institute of Technology. Department of Civil and Environmental Engineering (Contributor) |
Format: | Article |
Language: | English |
Published: |
American Chemical Society,
2011-11-21T17:48:36Z.
|
Subjects: | |
Online Access: | Get fulltext |
Similar Items
-
Dosimetry of N[superscript 6]-Formyllysine Adducts Following [[superscript 13]C[superscript 2]H[subscript 2]]-Formaldehyde Exposures in Rats
by: Edrissi, Bahar, et al.
Published: (2013) -
Synthesis and Study of Rigidified Nucleosides Analogues for Probing the Importance of the Deoxyribose DNA Backbone
by: Yueh, Han
Published: (2012) -
Gas chromatographic studies : I. Pyrolysis gas chromatography of several purines, pyrimidines, nucleosides and deoxyribose nucleic acids ; II. Schizophrenic's sweat
by: Hollenberg, Morley D.,
Published: (2012) -
Gas chromatographic studies : I. Pyrolysis gas chromatography of several purines, pyrimidines, nucleosides and deoxyribose nucleic acids ; II. Schizophrenic's sweat
by: Hollenberg, Morley D.,
Published: (2012) -
Effect of Selected Plant Phenolics on Fe2+-EDTA-H2O2 System Mediated Deoxyribose Oxidation: Molecular Structure-Derived Relationships of Anti- and Pro-Oxidant Actions
by: Jeffrey de Graft-Johnson, et al.
Published: (2016-12-01)