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Clinica Chimica Acta; International Journal of Clinical Chemistry|April 17, 1978
A simple colorimetric method for the estimation of plasma biliverdinT R Tickner, J M GutteridgeFree Radical Biology & Medicine|January 1, 1988
Hydroxyl radical generation by the tetracycline antibiotics with free radical damage to DNA, lipids and carbohydrate in the presence of iron and copper saltsG J Quinlan, J M GutteridgeBulletin of the World Health Organization|January 1, 1973
The international standard for rolitetracyclineJ W Lightbown, J M Bond, M V Mussett, et al.Food Additives and Contaminants|October 1, 1986
Carminic acid-promoted oxygen radical damage to lipid and carbohydrateJ M Gutteridge, G J QuinlanBiochimica Et Biophysica Acta|October 20, 1992
Antioxidant protection against organic and inorganic oxygen radicals by normal human plasma: the important primary role for iron-binding and iron-oxidising proteinsJ M Gutteridge, G J QuinlanThe Biochemical Journal|February 15, 1986
Copper + zinc and manganese superoxide dismutases inhibit deoxyribose degradation by the superoxide-driven Fenton reaction at two different stages. Implications for the redox states of copper and manganeseJ M Gutteridge, J V BannisterBiochimica Et Biophysica Acta|February 13, 1993
Antioxidant protection against organic and inorganic oxygen radicals by normal human plasma: the important primary role for iron-binding and iron-oxidising proteinsJ M Gutteridge, G J QuinlanAnalytical Biochemistry|November 1, 1978
The characterisation of thiobarbituric acid reactivity in human plasma and urineJ M Gutteridge, T R TicknerJournal of Applied Biochemistry|August 1, 1983
Malondialdehyde formation from lipid peroxides in the thiobarbituric acid test: the role of lipid radicals, iron salts, and metal chelatorsJ M Gutteridge, G J QuinlanFree Radical Research Communications|January 1, 1991
Bleomycin-detectable iron in brain tissueJ M Gutteridge, W Cao, M ChevionPageof 17