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Biomedical subjects

A S Troupin

Publications and source records attributed to A S Troupin.

At least 19 recordsLinked to original sources

Clinical pharmacology of mephenytoin and ethotoin.

Effective prescribing of anticonvulsants requires foreknowledge of baseline pharmacokinetic data. Little such information is available about the hydantoins other than phenytoin, although one of them, mephenytoin, is widely used. Useful pharmacokinetic data should be derived from patients already exposed to anticonvulsants to reflect the induction of hepatic oxidative enzymes. Single-dose studies of mephenytoin (Mesantoin) and ethotoin (Peganone) were performed in adult inpatients on stable regimens of other anticonvulsants. Five patients received mephenytoin, 7 mg per kilogram of body weight. Serial blood sampling was performed rigorously. The time to peak concentration (Tmax) for mephenytoin was 1 hour, with a half-life (T 1/2) of 7 hours; the T 1/2 of its metabolite, 5-ethyl-5-phenylhydantion, was 96 hours. Ethotoin administration was 25 mg per kilogram in 5 patients. Ethotoin Tmax was 2 hours, with a T 1/2 of 5 hours. Saliva accurately represented the unbound fraction for all three agents. Mean salivary levels (as percentage of total levels) were 61% for mephenytoin, 73% for its metabolite, and 54% for ethotoin. The implications for therapy are that following mephenytoin administration, the metabolite 5-ethyl-5-phenylhydantoin will provide anticonvulsant effectiveness, with its long half-life producing stable blood levels on simple dose schedules. Ethotoin, in contrast, has a short half-life and would require divided daily doses to achieve a steady state. This, rather than pharmacological ineffectiveness, limits its usefulness.

Biotransformation

Evaluation of clorazepate (Tranxene) as an anticonvulsant--a pilot study.

Desmethyldiazepam--providing the long-term anticonvulsant effect when diazepam is given orally--is conveniently administered as clorazepate (Tranxene). In this study, clorazepate was compared to phenobarbital as a secondary anticonvulsant in eight ambulatory, adult outpatients. Stable doses of phenytoin were maintained throughout. Drowsiness was present in all on phenobarbital, but there were no clorazepate-related side effects. Seizure control did not differ for each treatment. Addition of common side effects of phenytoin and phenobarbital limited the attained serum levels of each when used together. Clorazepate doses in the 0.56-mg-per-kilogram range gave desmethyldiazepam levels in the 1.0-microgram-per-milliliter range. Induction of metabolism was suggested by falling desmethyldiazepam levels despite increasing doses. Clorazepate is an effective, nontoxic secondary anticonvulsant.

Adolescent

Action myoclonus following acute cerebral anoxia.

Action myoclonus secondary to posthypoxic encephalopathy is being seen increasingly with improved resuscitation techniques. A case report describes 5 specific physical and occupational therapeutic techniques for achieving independence in ambulation, transfers and self-care: (1) analysis and segmentation of complex motions into small steps; (2) controlled progression of training; (3) voluntary cessation of abnormal activity (pacing); (4) progressive densensitization to external stimuli; and (5) quantification of progress. Literature review suggests that posthypoxic action myoclonus is secondary to a loss of inhibitory synapses in the brainstem reticular formation due to low serotonin levels. The proposed therapeutic effect of clonazepam, the drug used in this patient, is decreased serotinin degredation. L-5-hydroxytryptamine, an investigative drug, is also therapeutic, for it stimulates increased serotonin production.

Acute Disease

Clorazepate kinetics in treated epileptics.

Clorazepate is decarboxylated to form desmethyldiazepam and is a convenient way of administering it. Its kinetics were investigated in epileptic patients after single oral and multiple oral doses. Peak serum concentrations of demethyldiazepam occurred in 0.5 to 1 hr. There appeared to be a brief lag before rapid absorption. Because of the rapid absorption with resulting high serum levels, daily doses should be divided. Serum concentration/time curves were best fitted by the two-compartment open model. The apparent t1/2 of the distribution phase was 1.28 +/- 0.44 hr and the t1/2 of the disposition phase was 40.8 +/- 9.96 hr. Serum concentrations rose after meals. Whole body apparent volume of distribution (VB/F) was 1.63 +/- 0.24 L/kg. Total plasma clearance was 34.4 +/- 7.2 ml/min, which is greater than clearance levels for desmethyldiazepam in normals and reflects the greater hepatic metabolism which occurs in treated epileptics. The discrepancy illustrates the hazards of extrapolating data collected in normals to patients with multiple drug exposures.

Adult

Pharmacokinetic comparison of tablet and suspension dosage forms of carbamazepine.

The bioavailability of two preparations of carbamazepine--the tablet and a new syrup-was studied in 9 adult male volunteers by measuring saliva and serum levels. Peak time was significantly earlier and peak level significantly higher in serum for syrup as compared to tablet. Levels remained higher for syrup for 12 hr. Saliva was contaminated for up to 2 hr by syrup ingestion, possibly for a half hour by the tablet. Beyond that, saliva/serum ratios remained stable. Saliva level variation was too large for pharmacokinetic studies but acceptable for clinical purposes if sampling was long enough after the last dose.

Adult

Carbamazepine and the electroencephalogram of epileptics: a double blind study in comparison to phenytoin.

In double blind crossover 4 month trials, carbamazepine was compared to phenytoin as sole treatment for 45 patients with uncontrolled partial and generalized epilepsy. EEGs performed at the end of these trials revealed that while using carbamazepine the patients manifested a significant overall increase in diffuse slow waves and an increase in generalized epileptiform discharges without significant accompanying changes in seizure incidence. Also, during the carbamazepine trial generalized epileptiform discharges activated by hyperventilation were more frequent in patients with a higher seizure incidence compared to subjects with a lower seizure incidence of patients taking phenytoin. No significant focal EEG changes occurred.

Adult

Psychotropic effects of carbamazepine in epilepsy: a double-blind comparison with phenytoin.

The "psychotropic" effects of carbamazepine were evaluated with phenytoin (Dilantin) as reference agent in a counterbalanced, crossover study. Forty adult epileptics were given a series of neuropsychologic tests and the MMPI after 4 months on each agent. Most abilities were much the same with either anticonvulsant, but there were fewer errors with carbamazepine on mental tasks requiring attention and problem solving, and some improvement in emotional status was suggested. The findings were consistent with patient reports of improvement in alertness and mental functioning. These results combine with the excellent anticonvulsant properties of carbamazepine to support its use as an anticonvulsant.

Adult

Clinical pharmacology of anti-epileptic drugs: a summary of current information.

This compendium represents what we believe to be the most current and reliable pharmacological data on anticonvulsant drugs. The information presented is derived from determinations of the drugs in plasma or serum by gas--liquid chromatography in studies of the efficacy of anti-epileptic agents. We present information on the limitations of therapeutic concentration ranges, half-lives, active and inactive metabolites, and structure/activity relationships of anticonvulsant drugs. This report provides answers to many of the questions clinicians direct to anticonvulsant-monitoring laboratories. Information on other pharmacoloical variables supplements this review in the interest of the clinical investigator.

Adult

Prophylactic effects of phenytoin, phenobarbital, and carbamazepine examined in kindling cat preparations.

Prophylactic effects of phenobarbital, phenytoin (diphenylhydantoin), and carbamazepine were examined in amygdaloid kindling preparations in cats. Daily electrical stimulation was delivered at the time of peak plasma levels. Comparative examination of the chronological pattern of the clinical seizure development, after discharge growth, and formation of distant independent spike foci was made between periods of kindling with chronic drug administration and of rekindling without drugs. Both phenobarbital and carbamazepine were effective, but phenytoin was totally ineffective. Prophylactic action of phenobarbital and carbamazepine was mainly through the suppression of the development of motor seizures manifestations in the former and the same with the development of sustained after discharge in the latter. The kindling preparation appears to possess many desirable features as an ideal model of human epilepsy for the purpose of assessment and recruitment of potential antiepileptic drugs and development of a rational pharmacotherapeutic approach for the management and prevention of seizure disorder.

Animals

Seizures and adaptive abilities. A case of identical twins.

The effects of seizures on performance were investigated in a pair of identical twins who were concordant for incidence of epilepsy, but who had highly contrasting histories of seizure frequency. An evaluation of abilities focused on intelligence, academic achievement, neuropsychologic functions, and emotional and social adjustments. While both twins showed some disabilities, the twin with the larger number of seizures was less able in every area examined. The results suggest that the greater seizure frequency is related to the lesser abilities.

Adaptation, Psychological

Acute anticonvulsant effects of diphenylhydantoin, phenobarbital, and carbamazepine: a combined electroclinical and serum level study in amygdaloid kindled cats and baboons.

This preliminary study utilizing the kindling model of established epilepsy has provided information about the most effective routes of administration for diphenylhydantoin, phenobarbital, and carbamazepine in baboons and cats. The time of peak plasma levels for these drugs has been demonstrated in these animals so that experimental protocols can be designed to deliver the agents at appropriate times prior to the kindling stimulation. In addition, dose-effectiveness data is presented for these species. In 1 baboon, phenobarbital was also seen to suppress photosensitive seizures. The potential usefulness of the kindling model in anticonvulsant research is suggested.

Amygdala

Mephenytoin: a reappraisal.

Serum levels of mephenytoin (Mesantoin) and its metabolite nirvanol were correlated with effectiveness and side effects in 93 patients. Mean mephenytoin level was 8% of the combined mephenytoin plus nirvanol levels. "Total mephenytoin" level should be used clinically, as neither individual component is as well correlated with clinical phenomena. Serum levels of 25 to 40 mug/ml usually yield improvement in seizure control without discomfort, and three-quarters of patients had fewer seizures. Side effects frequently associated with phenytoin were absent, but drowsiness, an occasional rash, and a single, fatal case of aplastic anemia were found. Performance on psychological tests of cognitive-attentional skills showed a modest improvement during mephenytoin administration. The drug merits wider employment in refractory seizure problems, but vigilant follow-up is required.

Adolescent

Methysergide in the treatment of narcolepsy.

Five patients with narcolepsy (four with the allied symptom of cataplexy) were treated with the serotonin antagonist methysergide. All patients had as good control of their sleep attacks while on methysergide therapy as on a control period of dextroamphetamine therapy. The cataplexy was less well controlled by methysergide than by dextroamphetamine, but improved when compared to a period without medication. Two patients developed severe calf claudication while on methysergide.

Adult

Pharmacokinetics of carbamazepine in normal man.

The bioavailability of commercial carbamazepine talbets with and without meals was compared to a propylene glycol solution respect to extent of absorption in 6 normal humans after a dose of 6 MG/KG. The presence of dose-dependent kinetics within a clinically sigificant range was also investigated. Serum and urine samples were assayed by gal-liquid chromatography (GLC). Carbamazepine is rapidly absorbed from the propylene glycol solution. Eight per cent of the dose was absorbed from the commercial tablet, resulting in therapeutic serum concentrations(30 to 6 mcg/ni). The data were consitent with disolution rate-limited absorption. Mean half-lives ranged from 31 to 35 hr. No dose-dependent kinetics were observed following administration of does of 3. 6. or 9 mg/kg. The fraction of dose abosrbed, the fraction excredted unchanged in urine, the time of maxium serum concentration, and absorption and elimination half-lives appear to be independent of dose. The time course of side effects could not be correlated with serum carbamazepine levels, suggesting that metabolities contributed to side effects.

Adult

Effects of repeated administrations of a comprehensive neuropsychological battery among chronic epileptics.

Effects of repeated administrations of the neuropsychological battery originated by Halstead and developed by Reitan were assessed by administration of the battery on four occasions at 6- to 12-month intervals to 17 epileptics with stable neurological dysfunction. Changes in drug regimen complicated interpretation to some degree, but it appeared that: a) the majority of the neuropsychological measures did not demonstrate significant practice effects; and b) there were statistically and clinically significant practice effects on some of Halstead's most sensitive measures (Category Test, Tactual Performance Test--Localization, Impairment Index). In addition, the question was raised as to whether or not the Wechsler Adult Intelligence Scale may be more effected by the administration of anticonvulsants than are many of the other neuropsychological procedures. Caution was urged in interpretation when the battery is used on a repeated basis.

Adult

Paradoxical intoxication--a complication of anticonvulsant administration.

A new syndrome, paradoxical intoxication, has been defined in which high levels of hydantoins, and in one instance carbamazepine, produced an increase in seizures with little or no evidence of intoxication; a decrease in these levels produced an improvement in seizure control. This syndrome occurs often but not exclusively in those people who are less astute in assessing their neurologic status and therefore may experience unexpectedly higher blood levels of their anticonvulsants. Instances have been documented with serum levels above 40 mugm/ml for phenytoin or mephenytoin alone, or above 50 mugm/ml of combined hydantoins phenytoin and mephenytoin, and when the level is in the range of 20 mugm/ml and above for carbamazepine. Possible mechanisms underlying the syndrome are reviewed. Appropriate therapy is a reduction of the dose of the drug in question.

Carbamazepine

Anticonvulsant level in saliva, serum, and cerebrospinal fluid.

Levels of four anticonvulsant drugs were measured simultaneously in saliva, spinal fluid, and dialyzed serum, i.e., free drug in serum. The level of diphenylhydantoin and possibly of carbamazepine was the same in the three body fluids. The leves of phenobarbital was the same in spinal fluid and dialyzed serum, but was lower in saliva. The level of primidone was different in each body fluid. The technique is simple (flow of saliva stimulated when the subject chews candle was or Teflon) and will be useful to determine the level of free diphenylhydantoin and carbamazepine, which is more closely related to intoxication or drug failure than is the total level of drug.

Carbamazepine