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Talanta|April 1, 1992
A quantitative investigation of proton- and lead(II)-dithioerythritol complex equilibria under physiological conditionsN Gnonlonfoun, L Lambs, G BerthonAnnals of Clinical and Laboratory Science|March 1, 1996
Aluminum-succinate complex equilibria and their potential implications for aluminum metabolismN Alliey, M Venturini-Soriano, G BerthonJournal of Inorganic Biochemistry|August 1, 1980
Computer simulation of metal ion equilibria in biofluids. Part 3. Trace metal supplementation in total parenteral nutritionG Berthon, C Matuchansky, P M MayExperientia|July 15, 1981
Trace metal requirements in total parenteral nutrition: a theoretical approach by mathematical modelingG Berthon, P M May, C MatuchanskyFree Radical Research|April 15, 2000
Copper--ligand interactions and the physiological free radical processes. Part 3. Influence of histidine, salicylic acid and anthranilic acid on copper-driven Fenton chemistry in vitroS Gaubert, M Bouchaut, V Brumas, et al.Agents and Actions|December 1, 1987
Histamine as a ligand in blood plasma. Part 7. Malate, malonate, maleate and tartrate as adjuvants of zinc to favour histamine tissue diffusion through mixed-ligand coordination. In vitro tests on lymphocyte proliferationG Berthon, A Varsamidis, C Blaquiere, et al.Agents and Actions|July 1, 1992
Can N-acetyl-L-cysteine affect zinc metabolism when used as a paracetamol antidote?V Brumas, B Hacht, M Filella, et al.Journal of Inorganic Biochemistry|December 1, 1989
Quantitative investigation of copper(II) and zinc(II) complexes with S-carboxymethyl-L-cysteine and computer-simulated appraisal of their potential significance in vivoV Brumas, M Venturini, M Filella, et al.Free Radical Research Communications|January 1, 1992
Copper-ligand interactions and physiological free radical processes. pH-dependent influence of Cu2+ ions on Fe2(+)-driven OH. generationP Maestre, L Lambs, J P Thouvenot, et al.Free Radical Research|April 1, 1994
Copper-ligand interactions and physiological free radical processes. Part 2. Influence of Cu2+ ions on Cu(+)-driven .OH generation and comparison with their effects on Fe(2+)-driven .OH productionP Maestre, L Lambs, J P Thouvenot, et al.Pageof 4