Reconciling the chemistry and biology of reactive oxygen species CC Winterbourn Nature chemical biology 4 (5), 278-286, 2008 | 2763 | 2008 |
Inside the neutrophil phagosome: oxidants, myeloperoxidase, and bacterial killing MB Hampton, AJ Kettle, CC Winterbourn Blood, The journal of the american society of hematology 92 (9), 3007-3017, 1998 | 2286 | 1998 |
Toxicity of iron and hydrogen peroxide: the Fenton reaction CC Winterbourn Toxicology letters 82, 969-974, 1995 | 1643 | 1995 |
Thiol chemistry and specificity in redox signaling CC Winterbourn, MB Hampton Free Radical Biology and Medicine 45 (5), 549-561, 2008 | 1538 | 2008 |
The estimation of red cell superoxide dismutase activity CC Winterbourn, RE Hawkins, M Brian, RW Carrell The Journal of laboratory and clinical medicine 85 (2), 337-341, 1975 | 1517 | 1975 |
Defining roles of specific reactive oxygen species (ROS) in cell biology and physiology H Sies, VV Belousov, NS Chandel, MJ Davies, DP Jones, GE Mann, ... Nature reviews Molecular cell biology 23 (7), 499-515, 2022 | 1026 | 2022 |
Reactivity of biologically important thiol compounds with superoxide and hydrogen peroxide CC Winterbourn, D Metodiewa Free Radical Biology and Medicine 27 (3-4), 322-328, 1999 | 958 | 1999 |
Unraveling the biological roles of reactive oxygen species MP Murphy, A Holmgren, NG Larsson, B Halliwell, CJ Chang, ... Cell metabolism 13 (4), 361-366, 2011 | 929 | 2011 |
Reactive oxygen species and neutrophil function CC Winterbourn, AJ Kettle, MB Hampton Annual review of biochemistry 85 (1), 765-792, 2016 | 899 | 2016 |
Protein carbonyl measurement by a sensitive ELISA method H Buss, TP Chan, KB Sluis, NM Domigan, CC Winterbourn Free Radical Biology and Medicine 23 (3), 361-366, 1997 | 887 | 1997 |
Myeloperoxidase: a key regulator of neutrophil oxidant production AJ Kettle, CC Winterbourn Redox Report 3 (1), 3-15, 1997 | 836 | 1997 |
Guidelines for measuring reactive oxygen species and oxidative damage in cells and in vivo MP Murphy, H Bayir, V Belousov, CJ Chang, KJA Davies, MJ Davies, ... Nature metabolism 4 (6), 651-662, 2022 | 765 | 2022 |
Myeloperoxidase: a front-line defender against phagocytosed microorganisms SJ Klebanoff, AJ Kettle, H Rosen, CC Winterbourn, WM Nauseef Journal of leukocyte biology 93 (2), 185-198, 2013 | 761 | 2013 |
Modeling the reactions of superoxide and myeloperoxidase in the neutrophil phagosome: implications for microbial killing CC Winterbourn, MB Hampton, JH Livesey, AJ Kettle Journal of Biological Chemistry 281 (52), 39860-39869, 2006 | 734 | 2006 |
A microtiter plate assay for superoxide dismutase using a water-soluble tetrazolium salt (WST-1) AV Peskin, CC Winterbourn Clinica chimica acta 293 (1-2), 157-166, 2000 | 635 | 2000 |
Mitochondrial peroxiredoxin involvement in antioxidant defence and redox signalling AG Cox, CC Winterbourn, MB Hampton Biochemical Journal 425 (2), 313-325, 2010 | 604 | 2010 |
Comparative reactivities of various biological compounds with myeloperoxidase-hydrogen peroxide-chloride, and similarity of oxidant to hypochlorite CC Winterbourn Biochimica et Biophysica Acta (BBA)-General Subjects 840 (2), 204-210, 1985 | 585 | 1985 |
The biological chemistry of hydrogen peroxide CC Winterbourn Methods in enzymology 528, 3-25, 2013 | 546 | 2013 |
Redox reactions and microbial killing in the neutrophil phagosome CC Winterbourn, AJ Kettle Antioxidants & redox signaling 18 (6), 642-660, 2013 | 534 | 2013 |
[26] Oxidative reactions of hemoglobin CC Winterbourn Methods in enzymology 186, 265-272, 1990 | 524 | 1990 |