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Free Radical Research Communications|January 1, 1990
The action of hydrogen peroxide on the formation of thiobarbituric acid-reactive material from microsomes, liposomes or from DNA damaged by bleomycin or phenanthroline. Artefacts in the thiobarbituric acid testR Cecchini, O I Aruoma, B HalliwellFEBS Letters|March 28, 1994
Peroxynitrite releases copper from caeruloplasmin: implications for atherosclerosisJ A Swain, V Darley-Usmar, J M GutteridgeBiochemistry International|March 1, 1985
Catalase enhances damage to DNA by bleomycin-iron(II): the role of hydroxyl radicalsJ M Gutteridge, A P Beard, G J QuinlanBiochimica Et Biophysica Acta|April 18, 1998
Reactive iron species in biological fluids activate the iron-sulphur cluster of aconitaseS Mumby, M Koizumi, N Taniguchi, et al.Thrombosis Et Diathesis Haemorrhagica|April 30, 1975
The effect of fatty-acid autoxidation products on blood coagulationT W Barrowcliffe, J M Gutteridge, T L DormandyJournal of Neurochemistry|July 19, 2000
No evidence for increased oxidative damage to lipids, proteins, or DNA in Huntington's diseaseZ I Alam, B Halliwell, P JennerFree Radical Research Communications|January 1, 1989
Non-caeruloplasmin copper and ferroxidase activity in mammalian serum. Ferroxidase activity and phenanthroline-detectable copper in human serum in Wilson's diseaseP J Evans, A Bomford, B HalliwellJournal of the Royal Society of Health|October 1, 1991
Oxygen free radicals and human diseasesO I Aruoma, H Kaur, B HalliwellThe Journal of Biological Chemistry|August 5, 1989
Iron ion-dependent modification of bases in DNA by the superoxide radical-generating system hypoxanthine/xanthine oxidaseO I Aruoma, B Halliwell, M DizdarogluCurrent Medicinal Chemistry|May 29, 2001
Thiols in cellular redox signalling and controlL K Moran, J M Gutteridge, G J QuinlanPageof 46