Behavioural reactions to triazolam.
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Biomedical subjects
Publications and source records attributed to R I Shader.
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Benzodiazepine derivatives are the most commonly prescribed anti-anxiety agents in clinical practice. Six benzodiazepine anxiolytics are now available in the United States. Additional drugs are used in other parts of the world, and many others are in various stages of clinical testing. All these benzodiazepine derivatives have similar neuropharmacological properties--they reduce anxiety, produce sedation and sleep, have anticonvulsant effects, and can produce muscle relaxation. Faced with this bewildering array of drugs from the same class which are very similar in intrinsic effects upon the brain, the clinician may well ask how best to make a rational choice among the available derivatives. Despite neuropharmacological similarities, there are differences among benzodiazepines in patterns of absorption, distribution, and elimination by the human body. These pharmacokinetic differences may in turn lead to apparent differences in clinical action. This review summarizes pertinent pharmacokinetic characteristics of benzodiazepine anti-anxiety agents.
Lorazepam is a 3-hydroxy-1,4-benzodiazepine derivative biotransformed by glucuronide conjugation, followed by urinary excretion of the glucuronide metabolite. The kinetic properties of single 1.5- to 3.0-mg doses of intravenous lorazepam were assessed in 15 healthy elderly subjects, 60 to 84 yr of age, and in 15 healthy young subjects, 19 to 38 yr of age. Volumes of distribution for lorazepam in the elderly group (mean, 0.99 1/kg), were slightly but significantly smaller than in the young group (1.11 1/kg), suggesting less extensive drug distribution in the elderly. Values of elimination half-life (t1/2beta) in the elderly (15.9 hr) did not differ significantly from those in the young group (14.1 hr), but total clearance in the elderly (0.77 ml/min/kg) was 22% less (p less than 0.05) than in the young subjects (0.99 ml/min/kg). Age differences in lorazepam clearance were partly explained by more frequent cigarette smoking in the young subjects. Gender had no apparent relationship to kinetics. The rate and completeness of absorption of intramuscular (IM) and oral loraxepam was assessed in 10 of the elderly subjects. Deltoid IM injection and oral administration of tablets in the fasting state led to rapid absorption of lorazepam into the systemic circulation. Peak plasma lorazepam concentrations were always reached within 2.5 hr, and values of absorption half-life (t1/2a) did not exceed 45 min. Absorption of IM and oral lorazepam was 80% to 100% complete. Thus, the aging process is associated with small changes in the kinetics of lorazepam. IM and oral administration of lorazepam in elderly persons, as in the case of young individuals, leads to rapid and nearly complete absorption into the systemic circulation.
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Plasma concentrations of desmethyldiazepam (DMDZ) and intensity of self-rated sedation (SRS) were measured at multiple points in time during 6 h after a single 15 mg oral dose of clorazepate dipotassium. Mean plasma DMDZ levels and mean SRS scores both became maximal at 1.0--2.5 h after drug dosage. By 6 h, however, mean SRS had returned to the predrug baseline score while mean DMDZ concentration fell only slighty from the maximum value. Disappearance of SRS despite persistence of high DMDZ levels might be due to adaptation or tolerance. If this is the case, subjective effects of benzodiazepines may depend upon duration of drug exposure as well as dose and concentration.
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Potential predictors of outcome following acute glutethimide overdosage were assessed in 63 patients hospitalized with this diagnosis at a large urban medical center between 1962 and 1975. Their mean age was 34 years (range, 15 to 84 years) and 62% were female. Assisted ventilation was required in 59% of cases, and 32% developed hypotension. Six patients died, including all three aged 60 years or older. Multiple regression analysis confirmed that age was the major identifiable determinant of survival, regardless of other factors. Among identifiable determinants of coma grade, glutethimide dose, glutethimide plasma concentration, and coingestion of barbiturates were the most important. An ingested dose of 10 g or more, or a plasma concentration exceeding 30 microgram/ml, was almost always associated with deep coma. However, a relatively small ingested dose or a low plasma level by no means ruled out development of serious intoxication, particularly in those patients who also ingested barbiturates. Thus elderly individuals are at high risk for fatal outcome following glutethimide overdosage and should receive priority for intensive care and monitoring. Glutethimide dose, plasma concentration, and history of coingestion of barbiturates are of value in predicting development of deep coma. These items of information should be obtained on admission whenever possible.
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Two patients were hospitalized in moderately deep coma after ingestion of large doses of diazepam (500 and 2,000 mg) with suicidal intent. Neither patient experienced important complications; both recovered fully and were discharged within 48 hours. Concentrations of diazepam and its three pharmacologically active metabolites (desmethyldiazepam, temazepam, and oxazepam) were determined in multiple samples drawn during and after hospitalization. High concentrations of all four compounds were present in early samples, then declined slowly during the next one to two weeks. Rapid clinical recovery after diazepam overdose is not attributable to rapid elimination of active compounds from the body, but more likely to adaptation or tolerance to their depressant effects.
This paper describes a rapid and sensitive method for analysis of lorazepam and its glucuronide metabolite in plasma and urine following therapeutic doses of lorazepam in humans. After addition of the structurally related benzodiazepine derivative, oxazepam, as the internal standard, 1-ml samples of plasma or urine are extracted twice at neutral pH with benzene (containing 1.5% isoamyl alcohol). The combined extracts are evaporated to dryness, reconstituted, and subjected to gas chromatographic analysis using a 3% OV-17 column and an electron-capture detector. Lorazepam glucuronide in urine is similarly analyzed following enzymatic cleavage with Glusulase. The sensitivity limits are 1--3 ng of analyzed following enzymatic cleavage with Glusulase. The sensitivity limits are 1--3 ng of lorazepam per ml of original sample, and the variability of identical samples is 5% or less. The applicability of the method to pharmacokinetic studies of lorazepam is demonstrated.
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Ten healthy volunteers ingested single 15-mg doses of clorazepate dipotassium (CZP) with 60 ml of water, or with 60 ml of magnesium aluminum hydroxide (Maalox), on two occasions in a randomized, two-way crossover study. Plasma concentrations of desmethyldiazepam (DMDZ) were determined in multiple samples drawn during 48 hr after each dose. Mean kinetic variables for DMDZ in CZP-water and CZP-magnesium aluminum hydroxide treatment conditions, respectively, were: peak measured concentration, 273 and 188 ng/ml (p 0.001); time of peak concentration, 1.8 and 2.8 hr after dose (p less than 0.01); apparent absorption half-life, 14.8 and 30.7 min (p less than 0.02); area under the 48-hr plasma concentration curve, 6,028 and 5,433 ng/ml X hr (p less than 0.02). Self-rated sensations of feedling "spacey," "thinking slowed down," and of generalized sedation, were reported with both treatment conditions, but these subjective effects occurred earlier and were more profound when CZP was taken with water as opposed to magnesium aluminum hydroxide. Thus administration of single doses of CZP with usual doses of a commonly prescribed antacid reduces the rate and extent of appearance in blood of DMDZ (the compound responsible for clinical activity) and attenuates self-rated clinical effects.
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