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Biochemical Pharmacology|June 9, 1993
Dimethylamine formation in manA Q Zhang, S C Mitchell, R Ayesh, et al.International Journal of Andrology|March 21, 2012
Detection of endocrine disruptors - from simple assays to whole genome scanningE Sung, N Turan, P W-L Ho, et al.The Journal of Clinical Endocrinology and Metabolism|April 9, 2004
Phytoestrogens are potent inhibitors of estrogen sulfation: implications for breast cancer risk and treatmentR M Harris, D M Wood, L Bottomley, et al.Journal of Clinical Periodontology|May 1, 1994
Effectiveness of a calculus scaling gelG B Maynor, R S Wilder, S C Mitchell, et al.Toxicology|February 1, 1987
The relative importance of N-oxidation and N-demethylation in the metabolism of trimethylamine in manM Al-Waiz, S C Mitchell, J R Idle, et al.Optics Letters|December 12, 2007
183-W, M(2) = 2.4 Yb:YAG Q-switched laserE C Honea, R J Beach, S C Mitchell, et al.Human & Experimental Toxicology|August 1, 1994
Changes in debrisoquine hydroxylation capacity following liver surgeryS C Mitchell, R R Shah, D G Clements, et al.Xenobiotica; the Fate of Foreign Compounds in Biological Systems|May 1, 1987
The metabolism of 14C-labelled trimethylamine and its N-oxide in manM Al-Waiz, S C Mitchell, J R Idle, et al.Xenobiotica; the Fate of Foreign Compounds in Biological Systems|September 1, 1996
Use of site-specified tritium labelling to confirm the formation of 17-oxosparteine as a minor urinary metabolite of sparteine in manJ C Ritchie, S C Mitchell, R L Smith, et al.Journal of Hepatology|December 1, 1994
The adverse influence of pregnancy upon sulphation: a clue to the pathogenesis of intrahepatic cholestasis of pregnancy?M H Davies, J M Ngong, M Yucesoy, et al.Pageof 19