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BMJ (Clinical Research Ed.)|July 9, 1988
Poor sulphoxidation ability in patients with food sensitivityG K Scadding, R Ayesh, J Brostoff, et al.
Xenobiotica; the Fate of Foreign Compounds in Biological Systems|December 31, 1997
Metabolic disposition of [14C]-trimethylamine N-oxide in rat: variation with dose and route of administrationS C Mitchell, A Q Zhang, J M Noblet, et al.
British Journal of Rheumatology|June 1, 1987
Sodium aurothiomalate toxicity and sulphoxidation capacity in rheumatoid arthritic patientsR Ayesh, S C Mitchell, R H Waring, et al.
Xenobiotica; the Fate of Foreign Compounds in Biological Systems|May 1, 1985
Lack of congruence of S-carboxymethyl-L-cysteine sulphoxidation and debrisoquine 4-hydroxylation in a Caucasian populationC S Haley, R H Waring, S C Mitchell, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|August 12, 2004
The passage of trimethylamine across rat and human skinS Kenyon, P L Carmichael, S Khalaque, et al.
British Journal of Clinical Pharmacology|April 1, 1989
Variable metabolism of pinacidil: lack of correlation with the debrisoquine and trimethylamine C- and N-oxidative polymorphismsR Ayesh, M Al-Waiz, A McBurney, et al.
Xenobiotica; the Fate of Foreign Compounds in Biological Systems|August 1, 1983
The development of drug-metabolizing enzymes in the neonatal guinea-pigS C Mitchell
Current Drug Metabolism|May 14, 2008
Flavin mono-oxygenase (FMO)--the 'other' oxidaseS C Mitchell
Drug Metabolism and Drug Interactions|January 1, 1988
Biological consequences of drug sulphoxidationS C Mitchell
Current Drug Targets|October 5, 2006
Phenothiazine: the parent moleculeS C Mitchell
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