1986Clinical and Experimental Pharmacology and PhysiologyRequires access

ACUTE TOLERANCE TO DIAZEPAM IN MICE: PHARMACOKINETIC CONSIDERATIONS

Y. L. Yoong, Hwang Sheng Lee, M.C.E. Gwee, Peter T.‐H. Wong

Open publisher page 10 citations

Abstract

The tolerance to the hypnotic effect of diazepam developed after a single exposure to diazepam in the presence or absence of cycloheximide, which blocks liver enzyme induction, was studied. At the high dose (30-35 mg/kg) used in this study, diazepam was found to be metabolized very rapidly in mice, consistent with previous findings using a much smaller dose (5 mg/kg). There was no significant difference in the pharmacokinetics of diazepam in control and tolerant mice as observed by monitoring the plasma and brain concentrations of diazepam and N-desmethyldiazepam. It is concluded that acute tolerance to diazepam in mice may not be attributed to changes in pharmacokinetic factors.

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What this paper is about

The tolerance to the hypnotic effect of diazepam developed after a single exposure to diazepam in the presence or absence of cycloheximide, which blocks liver enzyme induction, was studied. At the high dose (30-35 mg/kg) used in this study, diazepam was found to be metabolized very rapidly in mice, consistent with previous findings using a much smaller dose (5 mg/kg). There was no significant difference in the pharmacokinetics of diazepam in control and tolerant mice as observed by monitoring the plasma and brain concentrations of diazepam and N-desmethyldiazepam. It is concluded that acute tolerance to diazepam in mice may not be attributed to changes in pharmacokinetic factors.

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Available abstract

The tolerance to the hypnotic effect of diazepam developed after a single exposure to diazepam in the presence or absence of cycloheximide, which blocks liver enzyme induction, was studied. At the high dose (30-35 mg/kg) used in this study, diazepam was found to be metabolized very rapidly in mice, consistent with previous findings using a much smaller dose (5 mg/kg). There was no significant difference in the pharmacokinetics of diazepam in control and tolerant mice as observed by monitoring the plasma and brain concentrations of diazepam and N-desmethyldiazepam. It is concluded that acute tolerance to diazepam in mice may not be attributed to changes in pharmacokinetic factors.

Key concepts: Diazepam, Pharmacokinetics, Pharmacology, Hypnotic, Chemistry, Cycloheximide, Medicine, Biochemistry

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