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Drug Metabolism and Disposition: the Biological Fate of Chemicals|November 1, 1976
Effect of sex hormones on the disposition in rats of 1-aminocyclohexane carboxylic acid, a metabolite of semisynthetic penicillinF W Janssen, E M Young, H W RueliusXenobiotica; the Fate of Foreign Compounds in Biological Systems|December 1, 1987
Interactions between oxaprozin glucuronide and human serum albuminD S Wells, F W Janssen, H W RueliusDrug Metabolism and Disposition: the Biological Fate of Chemicals|July 1, 1978
Disposition of 4,5-diphenyl-2-oxazolepropionic acid (oxaprozin) in beagle dogs and rhesus monkeysF W Janssen, S K Kirkman, J A Knowles, et al.Agents and Actions|April 1, 1982
Protein binding and clearance of oxaprozin, a highly bound anti-inflammatory agentC A Homon, E R Fluck, F W Janssen, et al.Advances in Experimental Medicine and Biology|January 1, 1986
Reactions of oxaprozin-1-O-acyl glucuronide in solutions of human plasma and albuminH W Ruelius, S K Kirkman, E M Young, et al.Xenobiotica; the Fate of Foreign Compounds in Biological Systems|March 1, 1987
Extrapolation from animals to man: predictions, pitfalls and perspectivesH W RueliusThe Journal of Clinical Psychiatry|October 1, 1978
Comparative metabolism of lorazepam in man and four animal speciesH W RueliusDrug Metabolism and Disposition: the Biological Fate of Chemicals|November 1, 1982
Metabolic formation of N- and O-glucuronides of 3-(p-chlorophenyl)thiazolo[3,2-a]benzimidazole-2-acetic acid. Rearrangement of the 1-o-acyl glucuronideF W Janssen, S K Kirkman, C Fenselau, et al.Clinical Pharmacology and Therapeutics|March 1, 1980
Metabolism and kinetics of oxaprozin in normal subjectsF W Janssen, W J Jusko, S T Chiang, et al.Chemico-Biological Interactions|November 1, 1976
Evaluation of a DNA polymerase-deficient mutant of E. coli for the rapid detection of carcinogensE R Fluck, L A Poirier, H W RueliusPageof 5