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J M Gutteridge

Showing results (81-90 of 217) with videos related to

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Medical Laboratory Sciences|October 1, 1976
Peroxidation of cell lipidsJ M Gutteridge, J Stocks
The International Journal of Biochemistry|January 1, 1982
Iron-dependent free radical damage to DNA and deoxyribose. Separation of TBA-reactive intermediatesJ M Gutteridge, D Toeg
FEBS Letters|January 25, 1982
Copper-dependent hydroxyl radical damage to ascorbic acid: formation of a thiobarbituric acid-reactive productJ M Gutteridge, S Wilkins
Biochimica Et Biophysica Acta|August 23, 1983
Copper salt-dependent hydroxyl radical formation. Damage to proteins acting as antioxidantsJ M Gutteridge, S Wilkins
Lancet (London, England)|September 4, 1982
Caeruloplasmin and the superoxide radicalB Halliwell, J M Gutteridge
Lancet (London, England)|November 10, 1984
Free radicals, lipid peroxidation, and cell damageB Halliwell, J M Gutteridge
Annals of the New York Academy of Sciences|June 23, 2000
Free radicals and antioxidants in the year 2000. A historical look to the futureJ M Gutteridge, B Halliwell
Journal of Neurochemistry|September 1, 1997
Lipid peroxidation in brain homogenates: the role of iron and hydroxyl radicalsB Halliwell, J M Gutteridge
Clinica Chimica Acta; International Journal of Clinical Chemistry|February 1, 1970
A simple and rapid thin-layer chromatographic technique for the detection of methylmalonic acid in urineJ M Gutteridge, E B Wright
Biochemical Medicine|October 1, 1980
Thiobarbituric acid reactivity of autoxidized candicidinJ M Gutteridge, A H Thomas
Pageof 22

Showing results (81-90 of 217) with videos related to

Sort By:
Pageof 22
Medical Laboratory Sciences|October 1, 1976
Peroxidation of cell lipidsJ M Gutteridge, J Stocks
The International Journal of Biochemistry|January 1, 1982
Iron-dependent free radical damage to DNA and deoxyribose. Separation of TBA-reactive intermediatesJ M Gutteridge, D Toeg
FEBS Letters|January 25, 1982
Copper-dependent hydroxyl radical damage to ascorbic acid: formation of a thiobarbituric acid-reactive productJ M Gutteridge, S Wilkins
Biochimica Et Biophysica Acta|August 23, 1983
Copper salt-dependent hydroxyl radical formation. Damage to proteins acting as antioxidantsJ M Gutteridge, S Wilkins
Lancet (London, England)|September 4, 1982
Caeruloplasmin and the superoxide radicalB Halliwell, J M Gutteridge
Lancet (London, England)|November 10, 1984
Free radicals, lipid peroxidation, and cell damageB Halliwell, J M Gutteridge
Annals of the New York Academy of Sciences|June 23, 2000
Free radicals and antioxidants in the year 2000. A historical look to the futureJ M Gutteridge, B Halliwell
Journal of Neurochemistry|September 1, 1997
Lipid peroxidation in brain homogenates: the role of iron and hydroxyl radicalsB Halliwell, J M Gutteridge
Clinica Chimica Acta; International Journal of Clinical Chemistry|February 1, 1970
A simple and rapid thin-layer chromatographic technique for the detection of methylmalonic acid in urineJ M Gutteridge, E B Wright
Biochemical Medicine|October 1, 1980
Thiobarbituric acid reactivity of autoxidized candicidinJ M Gutteridge, A H Thomas
Pageof 22