Spin trapping of superoxide and hydroxyl radical: practical aspects.
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E. Finkelstein | G. Rosen | E. Rauckman | G M Rosen | E J Rauckman | E Finkelstein | Gerald M. Rosen
[1] G. Rosen,et al. Selective bioreduction of nitroxides by rat liver microsomes , 1977 .
[2] G. Adams,et al. Reactivity of the Hydroxyl Radical in Aqueous Solutions. , 1973 .
[3] E. Sackmann,et al. Spin labels as enzyme substrates. Heterogeneous lipid distribution in liver microsomal membranes. , 1973, Biochimica et biophysica acta.
[4] T. Grover,et al. Hydroxyl radical production in a purified NADPH--cytochrome c (P-450) reductase system. , 1979, Archives of biochemistry and biophysics.
[5] J. Bolton,et al. THE INVOLVEMENT OF THE HYDROXYL RADICAL IN THE DESTRUCTIVE PHOTOOXIDATION OF CHLOROPHYLLS IN VIVO AND IN VITRO * , 1978 .
[6] R. Floyd,et al. Spin-trapping free radicals in the autooxidation of 6-hydroxydopamine , 1979 .
[7] L. Piette,et al. Hydroxyl radical production involved in lipid peroxidation of rat liver microsomes. , 1977, Biochemical and biophysical research communications.
[8] E. Janzen,et al. Synthesis and electron spin resonance chemistry of nitronyl labels for spin trapping. .alpha.-Phenyl N-[5-(5-methyl-2,2-dialkyl-1,3-dioxanyl)] nitrones and .alpha.-(N-alkylpyridinium) N-(tert-butyl) nitrones , 1979 .
[9] L. Piette,et al. Spin trapping and its application in the study of lipid peroxidation and free radical production with liver microsomes. , 1977, Archives of biochemistry and biophysics.
[10] L. Piette,et al. Spin-trapping studies of hydroxyl radical production involved in lipid peroxidation. , 1978, Archives of biochemistry and biophysics.
[11] R. Mason,et al. Inhibition of azoreductase by oxygen. The role of the azo anion free radical metabolite in the reduction of oxygen to superoxide. , 1978, Molecular pharmacology.
[12] G. Rosen,et al. Formation and reduction of a nitroxide radical by liver microsomes. , 1977, Biochemical pharmacology.
[13] L. Oberley,et al. Considerations in the spin trapping of superoxide and hydroxyl radical in aqueous systems using 5,5-dimethyl-1-pyrroline-1-oxide. , 1978, Biochemical and biophysical research communications.
[14] I. Yamazaki,et al. Mechanism of free radical formation and disappearance during the ascorbic acid oxidase and peroxidase reactions. , 1961, Biochimica et biophysica acta.
[15] A. Mackor,et al. C-nitroso compounds. Part III. Alkoxy-alkyl-nitroxides as intermediates in the reaction of alkoxy-radicals with nitroso compounds , 1967 .
[16] J. A. Wargon,et al. Electron spin resonance studies of radical trapping in the radiolysis of organic liquids. I. Evidence for the primary formation of the methoxy radical in methanol , 1972 .
[17] L. Oberley,et al. THE EFFECT OF IRON ON THE DISTRIBUTION OF SUPEROXIDE AND HYDROXYL RADICALS AS SEEN BY SPIN TRAPPING AND ON THE SUPEROXIDE DISMUTASE ASSAY , 1978, Photochemistry and photobiology.
[18] A. Cederbaum,et al. The effect of dimethylsulfoxide and other hydroxyl radical scavengers on the oxidation of ethanol by rat liver microsomes. , 1977, Biochemical and biophysical research communications.
[19] E. Janzen,et al. Spin trapping with .alpha.-pyridyl 1-oxide N-tert-butyl nitrones in aqueous solutions. A unique electron spin resonance spectrum for the hydroxyl radical adduct , 1978 .
[20] L. Oberley,et al. The production of hydroxyl radical by bleomycin and iron (II) , 1979, FEBS letters.
[21] L. Piette,et al. Further evidence for OH radical production in Fenton's reagent , 1979 .
[22] F. Sargent,et al. Spin trapping of radicals formed during radiolysis of aqueous solutions. Direct electron spin resonance observations , 1976 .
[23] H. S. Mason,et al. Identification, by electron paramagnetic resonance spectroscopy, of free radicals generated from substrates by peroxidase. , 1960, The Journal of biological chemistry.
[24] G. Rosen,et al. Superoxide radical as an intermediate in the oxidation of hydroxylamines by mixed function amine oxidase. , 1979, Molecular pharmacology.
[25] T. Iyanagi,et al. One-electron-transfer reactions in biochemical systems. II. The reaction of free radicals formed in the enzymic oxidation. , 1969, Biochimica et biophysica acta.
[26] J. Bolton,et al. An Electron Spin Resonance Study of the Spin Adducts of OH and HO2 Radicals with Nitrones in the Ultraviolet Photolysis of Aqueous Hydrogen Peroxide Solutions , 1974 .
[27] K. Ingold,et al. KINETIC APPLICATIONS OF ELECTRON PARAMAGNETIC RESONANCE SPECTROSCOPY. III. SELF-REACTIONS OF DIALKYL NITROXIDE RADICALS. , 1971 .
[28] J. Harbour,et al. Detection of superoxide ions in nonaqueous media. Generation by photolysis of pigment dispersions , 1978 .
[29] T. Kikuchi,et al. Formation of superoxide and hydroxy radicals in iron(II)-bleomycin-oxygen system: electron spin resonance detection by spin trapping. , 1978, The Journal of antibiotics.
[30] L. Oberley,et al. Superoxide formation by protoporphyrin as seen by spin trapping , 1979, FEBS letters.
[31] C. Wolf,et al. Characterization of the free radical formed in aerobic microsomal incubations containing carbon tetrachloride and NADPH. , 1979, Biochemical and biophysical research communications.
[32] E. R. Davis,et al. Spin-trapping of the trichloromethyl radical produced during enzymic NADPH oxidation in the presence of carbon tetrachloride or bromotrichloromethane. , 1978, Biochimica et biophysica acta.
[33] W. Koppenol,et al. The kinetics of the reduction of cytochrome c by the superoxide anion radical. , 1976, Biochimica et biophysica acta.
[34] J. Lown,,et al. Hydroxyl radical production by free and DNA-bound aminoquinone antibiotics and its role in DNA degradation. Electron spin resonance detection of hydroxyl radicals by spin trapping. , 1978, Canadian journal of biochemistry.
[35] J. S. Goldberg,et al. Bioreduction of nitroxides by Staphylococcus aureus. , 1977, Biochemical and biophysical research communications.
[36] K. Ingold,et al. Kinetic applications of electron paramagnetic resonance spectroscopy. I. Self-reactions of diethyl nitroxide radicals , 1971 .
[37] W. Bors,et al. DETECTION OF OXYGEN RADICALS IN BIOLOGICAL REACTIONS , 1978, Photochemistry and photobiology.
[38] R. Mason,et al. The mechanism of microsomal and mitochondrial nitroreductase. Electron spin resonance evidence for nitroaromatic free radical intermediates. , 1975, Biochemistry.
[39] E. Finkelstein,et al. Spin trapping of superoxide. , 1979, Molecular pharmacology.
[40] L. Oberley,et al. The production of hydroxyl radical by tallysomycin and copper(II) , 1979, FEBS letters.
[41] J. Rabani,et al. Acid dissociation constant and decay kinetics of the perhydroxyl radical , 1970 .
[42] A. Lindberg,et al. Trapping of Short-Lived Free Radicals as Nitroxide Radicals Detectable by ESR Spectroscopy. The Radicals Formed in the Reaction between OH-Radicals and Some Sulphoxides and Sulphones. , 1969 .
[43] B. Halliwell. Superoxide‐dependent formation of hydroxyl radicals in the presence of iron chelates , 1978, FEBS letters.
[44] J. Bolton,et al. Superoxide formation in spinach chloroplasts: electron spin resonance detection by spin trapping. , 1975, Biochemical and biophysical research communications.
[45] J. Harbour,et al. Superoxide generation in the photolysis of aqueous cadmium sulfide dispersions. Detection by spin trapping , 1977 .
[46] A. Segal,et al. The production of hydroxyl and superoxide radicals by stimulated human neutrophils — measurements by EPR spectroscopy , 1979, FEBS letters.
[47] R. Mason,et al. The role of catalytic superoxide formation in the O2 inhibition of nitroreductase. , 1975, Biochemical and biophysical research communications.
[48] H. Swartz,et al. Electron spin resonance-spin trapping. Detection of superoxide formation during aerobic microsomal reduction of nitro-compounds. , 1978, Biochemical and biophysical research communications.
[49] E. R. Davis,et al. On spin trapping hydroxyl and hydroperoxyl radicals , 1978 .
[50] R. Floyd,et al. Spin trapping in biological systems. Oxidation of the spin trap 5,5-dimethyl-1-pyrroline-1-oxide by a hydroperoxide-hematin-system. , 1977, Biochemical and biophysical research communications.
[51] R. Floyd,et al. SPIN TRAPPING OF FREE RADICALS PRODUCED FROM NITROSOAMINE CARCINOGENS , 1978, Photochemistry and photobiology.
[52] K. Ingold,et al. Kinetic applications of electron paramagnetic resonance spectroscopy. II. Self-reactions of N-alkyl nitroxides and N-phenyl nitroxide , 1971 .
[53] K. Rajagopalan,et al. The role of superoxide anion generation in phagocytic bactericidal activity. Studies with normal and chronic granulomatous disease leukocytes. , 1975, The Journal of clinical investigation.
[54] R. F. Brown,et al. 427. Experiments towards the synthesis of corrins. Part VI. The dimerisation of Δ1-pyrroline 1-oxides to 2-(1′-hydroxypyrrolidin-2′-yl)-Δ1-pyrroline 1-oxides , 1959 .