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R A Jufer

Publications and source records attributed to R A Jufer.

5 recordsLinked to original sources

Elimination of cocaine and metabolites in plasma, saliva, and urine following repeated oral administration to human volunteers.

Chronic administration of lipophilic drugs can result in accumulation and prolonged elimination during abstinence. It has been suggested that cocaine and/or metabolites can be detected in saliva and urine for an extended period following long-term, high-dose administration. The effects of chronic oral cocaine administration in healthy volunteer subjects with a history of cocaine abuse were investigated. Subjects were housed on a closed clinical ward and were administered oral cocaine in up to 16 daily sessions. In each session, volunteers received five equal doses of oral cocaine with 1 h between doses. Across sessions, cocaine was administered in ascending doses from an initial dose of 100 mg (500 mg/day) up to 400 mg (2 g/day), increasing by 25 mg/dose/session (125 mg/session). Participation in the study was terminated if cardiovascular safety parameters were exceeded. Plasma and saliva specimens were collected periodically during the dosing sessions and during the one-week withdrawal phase at the end of the study. All urine specimens were collected throughout the entire study. Specimens were analyzed for cocaine and metabolites by solid-phase extraction followed by gas chromatographic-mass spectrometric analysis in the SIM mode. The limit of detection for each analyte was approximately 1 ng/mL. The analytes measured included benzoylecgonine (BZE), ecgonine methyl ester, cocaine, benzoylnorecgonine, norcocaine, m- and p-hydroxycocaine, and m- and p-hydroxybenzoylecgonine. Noncompartmental analysis was employed for the determination of plasma and saliva pharmacokinetic parameters. Urinary elimination half-lives for cocaine and metabolites were determined by constructing ARE (amount remaining to be excreted) plots. Two phases of urinary elimination of cocaine and metabolites were observed. An initial elimination phase was observed during withdrawal that was similar to the elimination pattern observed after acute dosing. The mean (N = 6) plasma, saliva, and urine cocaine elimination half-lives were 1.5 +/- 0.1 h, 1.2 +/- 0.2 h, and 4.1 +/- 0.9 h, respectively. For three subjects, the mean cocaine urinary elimination half-life for the terminal phase was 19.0 +/- 4.2 h. There was some difficulty in determining if a terminal elimination phase for cocaine was present for the remaining three subjects because of interference by high concentrations of BZE. A terminal elimination phase was also observed for cocaine metabolites with half-life estimates ranging from 14.6 to 52.4 h. These terminal elimination half-lives greatly exceeded previous estimates from studies of acute cocaine administration. These data suggest that cocaine accumulates in the body with chronic use resulting in a prolonged terminal elimination phase for cocaine and metabolites.

Administration, Oral↗

Lamotrigine distribution in two postmortem cases.

Lamotrigine (Lamictal) is a new anticonvulsant drug recently approved for use in the United States. Although a therapeutic range for lamotrigine has not been definitively established, a range of between 2 and 14 mg/L has been reported. Two cases are presented in which lamotrigine was identified in cases investigated by the Office of the Chief Medical Examiner, State of Maryland. Lamotrigine was identified by gas chromatography-nitrogen-phosphorus detection following an alkaline extraction. A DB-5 column provided analytical separation; no derivatization was required. Confirmation was achieved by full scan electron ionization gas chromatography-mass spectrometry. In Case 1, primidone (11 mg/L) and phenobarbital (5.5 mg/L) were found in the heart blood in addition to lamotrigine (8.3 mg/L); in Case 2, no drugs other than lamotrigine (52 mg/L) were detected in the heart blood. The peripheral blood concentration in Case 2 was 54 mg/L. The liver lamotrigine concentrations in the two cases were 41 and 220 mg/kg. The medical examiner ruled that the cause of death in Case 1 was seizure disorder and the manner of death was natural. In Case 2, the medical examiner ruled that the cause of death was lamotrigine intoxication and the manner of death was undetermined.

Adult↗

Butyrylcholinesterase accelerates cocaine metabolism: in vitro and in vivo effects in nonhuman primates and humans.

Butyrylcholinesterase (BChE) is known to metabolize cocaine in humans. In the present study, three different experiments were performed to determine whether the addition of horse serum-derived BChE would accelerate the metabolism of cocaine. In the first experiment, the addition of BChE to squirrel monkey plasma in vitro reduced the half-life of cocaine by over 80%, decreased the production of the metabolic product benzoylecgonine, and increased ecgonine methyl ester formation. The effect of BChE on cocaine metabolism was reversed by a specific BChE inhibitor. In the second, in vivo, experiment, exogenously administered BChE reduced peak cocaine concentrations when given to anesthetized squirrel monkeys. Finally, incubation of cocaine with added BChE in human plasma in vitro resulted in a decrease in cocaine half-life similar to that observed with squirrel monkey plasma. The magnitude of the decrease in cocaine half-life was proportional to the amount of added BChE. Together, these results indicate that exogenously administered BChE can accelerate cocaine metabolism in such a way as to potentially lessen the behavioral and toxic effects of cocaine. Therefore, BChE may be useful as a treatment for cocaine addiction and toxicity.

Animals↗

Cocaine and metabolite concentrations in plasma during repeated oral administration: development of a human laboratory model of chronic cocaine use.

Long-term use of cocaine may produce neurophysiological and metabolic alterations that differ from acute drug use. A laboratory model that was capable of evaluating the effects of chronic cocaine administration in human subjects was needed. Chronic oral administration of cocaine was considered a feasible route because of the ease of administration, control of dosing patterns, and possible reduction in medical risks compared with the intravenous and smoked routes. This clinical study was conducted to evaluate chronically administered oral cocaine as a means of studying cocaine addiction and withdrawal in humans. Cocaine-abusing volunteers were given multiple doses of oral cocaine each day in up to 16 daily sessions (including three placebo sessions). In each daily session, volunteers received five equal doses separated by hourly intervals. Across sessions, the dose was increased from an initial dose of 100 mg (500 mg/day) to 400 mg (2000 mg/day) in the last session. The dose for each consecutive cocaine session was increased by 25 mg/dose/session (125-mg total increase per session). Twelve subjects were enrolled in the study; however, three subjects dropped out prior to completion of at least three sessions. Two subjects completed all 13 cocaine sessions. The remaining seven subjects completed from 3 to 11 sessions; their participation was terminated early for safety and behavioral reasons. Plasma was collected during all sessions and analyzed for cocaine and metabolites by solid-phase extraction followed by gas chromatography-mass spectrometry. Oral cocaine administration resulted in peak plasma concentrations of cocaine approximately 1 h after administration. Accumulation of cocaine was evident between hourly doses and there was evidence of dose-proportional increases in area under the curve (AUC) measures across sessions. A variety of cocaine metabolites was measured in plasma including benzoylecgonine, ecgonine methyl ester, norcocaine, benzoylnorecgonine, and p and m-hydroxy metabolites of cocaine and benzoylecgonine. During chronic oral dosing, there appeared to be a trend for AUC ratios (AUCmetabolite/AUCcocaine) of benzoylecgonine and ecgonine methyl ester to decrease and norcocaine to increase, indicating the possibility of dose-, time-, or route-dependent changes in the absorption and/or metabolism of cocaine. Overall, this study demonstrated that chronic oral dosing of cocaine produced dose-related increases in plasma cocaine concentration, and this model could be useful for studying the effects of chronic cocaine use in human subjects.

Administration, Oral↗