The effect of cimetidine on cyclophosphamide metabolism in rabbits
- 1 January 1990
- journal article
- conference paper
- Published by Springer Nature in Cancer Chemotherapy and Pharmacology
- Vol. 27 (2) , 125-130
- https://doi.org/10.1007/bf00689096
Abstract
Six female rabbits were given 20 mg/kg cyclophosphamide (containing 100 μCi [3H-chloroethyl]-cyclophosphamide) alone or 1 h following 100 mg/kg cimetidine. Serial plasma and urine specimens were collected and levels of cyclophosphamide and its metabolites (4-hydroxycyclophosphamide, 4-ketocyclophosphamide, phosphoramide mustard, and carboxyphosphamide) were measured. 4-Ketocyclophosphamide was the major metabolite present in rabbit plasma and urine, with lesser amounts of 4-hydroxycyclophosphamide, carboxyphosphamide, and phosphoramide mustard also being identified. Cimetidine pretreatment resulted in prolongation of cyclophosphamide's half-life from 24.3±7.3 to 33.5±9.5 min (mean ± SD;P=0.036) but did not significantly alter the AUC0–8 h for the latter drug. Cimetidine pretreatment resulted in a significantly greater AUC0–8 h for 4-hydroxycyclophosphamide (189.4±77 vs 364.6±126.7 μmol min/l−1;P=0.016) as compared with control values. A higher AUC0–8 h value for phosphoramide mustard (53.7±69.2 vs 95.7±34.7 μmol min/l−1) was also observed after cimetidine dosing but the difference was not significant (P=0.21). Kinetics of 4-ketocyclophosphamide and carboxyphosphamide were not significantly affected by cimetidine treatment. Cimetidine was added to hepatic microsomes isolated from phenobarbital-treated rabbits; it did not inhibit cyclophosphamide's metabolism in vitro, suggesting that its in vivo effect may be mediated through mechanisms other than cytochrome P-450 inhibition. Cimetidine pretreatment increases exposure to cyclophosphamide and its major activated metabolite, 4-hydroxycyclophosphamide. Potentiation rather than inhibition of cyclophosphamide's pharmacodynamic effect is to be predicted when cimetidine is given concomitantly with the former. Alterations in hepatic blood flow or mechanisms other than microsomal inhibition by cimetidine may explain this potentiation.Keywords
This publication has 25 references indexed in Scilit:
- Metabolism of oxazaphosphorinesPharmacology & Therapeutics, 1988
- Spectroscopic detection of iminocyclophosphamide and its possible role in cyclophosphamide metabolismJournal of Medicinal Chemistry, 1987
- In situ preparation and fate of cis-4-hydroxycyclophosphamide and aldophosphamide: proton and phosphorus-31 NMR evidence for equilibration of cis- and trans-4-hydroxycyclophosphamide with aldophosphamide and its hydrate in aqueous solutionJournal of Medicinal Chemistry, 1984
- Purification and characterization of six cytochrome P-450 isozymes from human liver microsomesBiochemistry, 1983
- IMINOCYCLOPHOSPHAMIDE AS A CHEMICALLY REACTIVE METABOLITE OF CYCLOPHOSPHAMIDE1982
- Reduction of Liver Blood Flow and Propranolol Metabolism by CimetidineNew England Journal of Medicine, 1981
- Cyclophosphamide cystitis—Identification of acrolein as the causative agentBiochemical Pharmacology, 1979
- Metabolism of cyclophosphamide by sheepJournal of Agricultural and Food Chemistry, 1972
- PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENTJournal of Biological Chemistry, 1951