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Atherosclerosis|May 1, 1992
The effect of EDTA on the oxidation of low density lipoproteinD J Lamb, D S LeakeFEBS Letters|January 31, 1994
Acidic pH enables caeruloplasmin to catalyse the modification of low-density lipoproteinD J Lamb, D S LeakeFEBS Letters|September 19, 1994
Iron released from transferrin at acidic pH can catalyse the oxidation of low density lipoproteinD J Lamb, D S LeakeAtherosclerosis|February 1, 1992
The oxidative modification of low density lipoprotein by human lymphocytesD J Lamb, G M Wilkins, D S LeakeFEBS Letters|October 23, 1995
Transition metal ions within human atherosclerotic lesions can catalyse the oxidation of low density lipoprotein by macrophagesD J Lamb, M J Mitchinson, D S LeakeFEBS Letters|October 10, 1997
Non-oxidative modification of low density lipoprotein by ruptured myocytesL C Bourne, D J Lamb, C S Collis, et al.Free Radical Research|May 8, 2000
Evidence for oxidised low density lipoprotein in synovial fluid from rheumatoid arthritis patientsL Dai, D J Lamb, D S Leake, et al.Atherosclerosis|March 21, 1997
Does an acidic pH explain why low density lipoprotein is oxidised in atherosclerotic lesions?D S LeakeFEBS Letters|November 1, 1993
Acidic pH increases the oxidation of LDL by macrophagesJ Morgan, D S LeakeJournal of Lipid Research|December 1, 1995
Oxidation of low density lipoprotein by iron or copper at acidic pHJ Morgan, D S LeakePageof 15