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Radiation Research|August 1, 1996
Radiation-induced cell killing is highly dependent upon buffer treatment (filtration compared to autoclaving) due to metal-catalyzed formation of hypochlorite: a cautionary noteM Saran, U Hamm, A A Friedl, et al.International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|May 1, 1980
Formation of ethylene from methionine. Reactivity of radiolytically produced oxygen radicals and effect of substrate activationM Saran, W Bors, C Michel, et al.Archives of Biochemistry and Biophysics|April 1, 1990
Calcium in lipid peroxidation: does calcium interact with superoxide?W Bors, G R Buettner, C Michel, et al.Free Radical Research Communications|January 1, 1987
The reaction of sulfite radical anion with nucleic acid componentsM Erben-Russ, C Michel, W Bors, et al.European Journal of Biochemistry|August 15, 1978
Oxygen activation in isolated chloroplasts. Mechanism of ferredoxin-dependent ethylene formation from methionineE F Elstner, M Saran, W Bors, et al.Free Radical Biology & Medicine|January 1, 1988
A critical reevaluation of some assay methods for superoxide dismutase activityS Goldstein, C Michel, W Bors, et al.International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|October 1, 1975
Pulse-radiolytic investigations of catechols and catecholamines. I. Adrenaline and adrenochromeW Bors, M Saran, C Michel, et al.Chemical Research in Toxicology|May 1, 1993
Radical intermediates during the oxidation of nitropropanes. The formation of NO2 from 2-nitropropane, its reactivity with nucleosides, and implications for the genotoxicity of 2-nitropropaneW Bors, C Michel, C Dalke, et al.Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie|June 1, 1975
Superoxide dismutase activity of Cu(Tyr)2 and Cu, Co-erythrocupreinR Brigelius, H J Hartmann, W Bors, et al.Free Radical Biology & Medicine|January 21, 2000
Antioxidant capacity of flavanols and gallate esters: pulse radiolysis studiesW Bors, C MichelPageof 8