Influence of allylisopropylacetamide and phenobarbital treatment on in vivo antipyrine metabolite formation in rats
- 1 January 1983
- journal article
- research article
- Published by Taylor & Francis in Xenobiotica
- Vol. 13 (8) , 497-502
- https://doi.org/10.3109/00498258309052289
Abstract
1. The influence of pretreatment with allylisopropylacetamide (AIA) and phenobarbital (PB) on the pharmacokinetics and metabolite profile of antipyrine was studied in rats in vivo. Antipyrine concentrations were measured in blood and urine, and four metabolites (4-hydroxyantipyrine, norantipyrine, 3-hydroxymethylantipyrine and 4,4′-dihydroxyantipy-rine) were determined in urine. 2. Treatment with PB increased antipyrine blood clearance from 11.1 to 59.1 ml/min per kg. The clearances for production of metabolites all increased between four- and five-fold, indicating non-selective induction. 3. Treatment with AIA resulted in a reduction of antipyrine clearance to 5.6 ml/min per kg. The clearances to all four metabolites were decreased to about the same extent (52–65% of control values) indicating non-selective inhibition. 4. Treatment with AIA after PB treatment strongly inhibited drug-metabolizing enzyme activity. Blood clearance of antipyrine was reduced from 59.1 to 12.3 ml/min per kg. Clearances to the metabolites were again inhibited non-selectively (to 20–28% of PB-induced values). 5. In contrast to previous reports, AIA in this study inhibited non-induced oxidative microsomal enzyme activity. This inhibition closely resembled AIA inhibition of PB-induced cytochromes. Therefore it is concluded that in untreated rats antipyrine is predominantly metabolized by PB-types of cytochrome P-450.This publication has 15 references indexed in Scilit:
- Influence of 9-hydroxyellipticine and 3-methylcholanthrene treatment on antipyrine metabolite formation in rats in vivoXenobiotica, 1983
- Quantitation and urinary pattern of 4,4′-dihydroxyantipyrine, 4-hydroxy-antipyrine and 3-hydroxymethyl-antipyrine, as main metabolites of antipyrine in man and ratJournal of Pharmacy and Pharmacology, 1982
- Differential effects of 3-methylcholanthrene and phenobarbitone treatment on the oxidative metabolism of antipyrinein vitroby microsomal fractions of rat liverXenobiotica, 1982
- 3-Hydroxymethyl Antipyrine Excretion in Urine after an Oral Dose of AntipyrinePharmacology, 1982
- Antipyrine metabolism in the rat by three hepatic monooxygenasesLife Sciences, 1980
- Studies on the Different Metabolic Pathways of Antipyrine in Rats: Influence of Phenobarbital and 3-Methylcholanthrene TreatmentXenobiotica, 1979
- Assay of Antipyrine and Its Primary Metabolites in Plasma, Saliva and Urine by High-Performance Liquid Chromatography and Some Preliminary Results in ManPharmacology, 1979
- Destruction of endogenous and exogenous haem by 2-allyl-2-isopropylacetamide: Role of the liver cytochrome p-450 which is inducible by phenobarbitoneInternational Journal of Biochemistry, 1978
- Metabolism of Drugs. LXX. Further Study on Antipyrine MetabolismCHEMICAL & PHARMACEUTICAL BULLETIN, 1971
- III. Ueber des 1‐Phenyl‐2,3 ‐dimethyl‐4‐oxy‐5‐ pyrazolon1) (4‐Oxyantipyrin)European Journal of Organic Chemistry, 1896