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Journal of the American Chemical Society|August 5, 2004
Spermine participates in oxidative damage of guanosine and 8-oxoguanosine leading to deoxyribosylurea formationMandy E Hosford, James G Muller, Cynthia J BurrowsJournal of Physical Organic Chemistry|August 23, 2014
Single-molecule detection of a guanine(C8) - thymine(N3) cross-link using ion channel recordingAnna H Wolna, Aaron M Fleming, Cynthia J BurrowsBiorxiv : the Preprint Server for Biology|September 10, 2024
CO2 protects cells from iron-Fenton oxidative DNA damage in E. coli and humansAaron M Fleming, Justin C Dingman, Cynthia J BurrowsChemistry (Weinheim an Der Bergstrasse, Germany)|December 17, 2025
APE1 Activity is Controlled by Non-G-Quadruplex Conformations in Single- and Double-Stranded G-Quadruplex ConstructsBrianna L Trabucco, Aaron M Fleming, Cynthia J BurrowsChemical Research in Toxicology|June 1, 2022
Identification of the Major Product of Guanine Oxidation in DNA by OzoneMichael B Chabot, Aaron M Fleming, Cynthia J BurrowsBiochemistry|November 20, 2014
Single-molecule analysis of thymine dimer-containing G-quadruplexes formed from the human telomere sequenceAnna H Wolna, Aaron M Fleming, Cynthia J BurrowsThe Journal of Organic Chemistry|June 21, 2015
5-Carboxamido-5-formamido-2-iminohydantoin, in Addition to 8-oxo-7,8-Dihydroguanine, Is the Major Product of the Iron-Fenton or X-ray Radiation-Induced Oxidation of Guanine under Aerobic Reducing Conditions in Nucleoside and DNA ContextsOmar R Alshykhly, Aaron M Fleming, Cynthia J BurrowsRSC Chemical Biology|July 13, 2026
Ribosomal RNA tentacles are targets of free radical damage in mammalian cells during oxidative and inflammatory stressAaron M Fleming, Justin C Dingman, Cynthia J BurrowsChemical Research in Toxicology|August 28, 2015
Guanine oxidation product 5-carboxamido-5-formamido-2-iminohydantoin induces mutations when bypassed by DNA polymerases and is a substrate for base excision repairOmar R Alshykhly, Aaron M Fleming, Cynthia J BurrowsBiophysical Journal|April 26, 2018
Unusual Isothermal Hysteresis in DNA i-Motif pH Transitions: A Study of the RAD17 Promoter SequenceR Aaron Rogers, Aaron M Fleming, Cynthia J BurrowsPageof 17