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Free Radical Research|November 1, 1994
Free radical inactivation of rabbit muscle creatinine kinase: catalysis by physiological and hydrolyzed ICRF-187 (ICRF-198) iron chelatesC Thomas, A C Carr, C C WinterbournThe Biochemical Journal|June 15, 1984
Oxidative interactions between haemoglobin and membrane lipid. A liposome modelJ Szebeni, C C Winterbourn, R W CarrellThe Journal of Biological Chemistry|March 20, 2009
Superoxide-mediated formation of tyrosine hydroperoxides and methionine sulfoxide in peptides through radical addition and intramolecular oxygen transferPéter Nagy, Anthony J Kettle, Christine C WinterbournBiochemical Pharmacology|May 25, 1993
The hydrolysis product of ICRF-187 promotes iron-catalysed hydroxyl radical production via the Fenton reactionC Thomas, G F Vile, C C WinterbournArchives of Biochemistry and Biophysics|February 1, 1997
Myeloperoxidase-dependent generation of a tyrosine peroxide by neutrophilsC C Winterbourn, H Pichorner, A J KettleFEBS Letters|June 14, 2002
Interaction with substrate sensitises caspase-3 to inactivation by hydrogen peroxideMark B Hampton, Ivan Stamenkovic, Christine C WinterbournJournal of Free Radicals in Biology & Medicine|January 1, 1985
Doxorubicin-dependent lipid peroxidation at low partial pressures of O2C C Winterbourn, J M Gutteridge, B HalliwellArchives of Biochemistry and Biophysics|February 1, 1992
Different effects of hypochlorous acid on human neutrophil metalloproteinases: activation of collagenase and inactivation of collagenase and gelatinaseJ Michaelis, M C Vissers, C C WinterbournIUBMB Life|May 1, 2001
Living with a killer: the effects of hypochlorous acid on mammalian cellsJ M Pullar, M C Vissers, C C WinterbournChemical Research in Toxicology|October 14, 2009
Kinetics and mechanisms of the reaction of hypothiocyanous acid with 5-thio-2-nitrobenzoic acid and reduced glutathionePéter Nagy, Guy N L Jameson, Christine C WinterbournPageof 31