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Metabolic toxicology

Ekins S. In silica approaches to predicting metabolism, toxicology and beyond. Biochem Soc Trans 2003 31 611-4. [Pg.463]

Ekins, S. (2003) In silico approaches to predicting drug metabolism, toxicology and beyond. Biochemical Society Transactions, 31, 611-614. [Pg.124]

LameshRA. 1992. Polychlorinated biphenyls An overview of metabolic toxicologic and health consequences. Vet Hum Toxicol 34 256-260. [Pg.437]

Johanson, G. Filser, J.G. (1996) PBPK model for butadiene metabolism to epoxides quantitative species differences in metabolism. Toxicology, 113,40-47... [Pg.211]

The chemistry, biochemistry, metabolism, toxicology and structure-activity relationships have been comprehensively reviewed (B-74MI10701, B-73MI10701). [Pg.195]

Thomas, D.J. (2007) Molecular processes in cellular arsenic metabolism. Toxicology and Applied Pharmacology, 222(3), 365-73. [Pg.272]

Marks, F., Muller-Decker, K., and Furstenberger, G., A causal relationship between unscheduled eicosanoid signaling and tumor development cancer chemoprevention by inhibitors of arachidonic acid metabolism, Toxicology, 153, 11, 2000. [Pg.337]

R.K. Zalups and M.G. Cherian, Renal metallothionein metabolism after a reduction of renal mass. I Effect of unilateral nephrectomy and compensatory renal growth on basal and metal induced renal metallothionein metabolism. Toxicology 71 83-102, 1992. [Pg.406]

J. C. Dearden, Expert Opinion on Drug Metabolism Toxicology, 2007, 3, 635-639. [Pg.293]

Wolfgang GH, Gandolfi AJ, Stevens JL, and Brendel K. N-acetyl S-(l,2-dichlorovinyl)-L-cysteine produces a similar toxicity to S-(l,2-dichlorovinyl)-L-cysteinein rabbit renal slices differential transport and metabolism. Toxicology and Applied Pharmacology 101 205-219,1989. [Pg.80]

Munro IC, Bernt WO, Borzella JF, et al. Erythritol an interpretive summary of biochemical, metabolic, toxicologic and chemical data. Food Chem Toxicol 1998 36(12) 1139—1174. [Pg.267]

Liver Primary rat hepatocytes, H4IIE (rat), HepG2 (human), or HepG2/ C3A (human) cells are generally used to study xenobiotic metabolism, toxicology, and liver function. [Pg.703]

Bergstrom, C.A.S. (2005) Computational models to predict aqueous drug solubility, permeability and intestinal absorption. Expert Opinion on Drug Metabolism Toxicology, 1 (4), 613-627. [Pg.67]

Ghersi-Egea. J.F.. Leininger-Muller. B.. Cecchelli. R.. and Fenstermacher. J.D. (1995) Blood-brain interfaces relevance to cerebral drug metabolism. Toxicology Letters, 82—83, 645—653. [Pg.297]


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