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Biomedical subjects

S I Johannessen

Publications and source records attributed to S I Johannessen.

At least 19 recordsLinked to original sources

Pharmacokinetics of valproate in pregnancy: mother-foetus-newborn.

An increased risk of seizures during and immediately after labour has been observed in epileptic women, and it is recognized that serum levels of antiepileptic drugs may decrease in pregnancy. Several studies have suggested that total valproate levels fall, but that free fractions increase during pregnancy. Recent findings suggest that the actual metabolism of valproate is not altered by pregnancy and that the changes of the plasma clearance are due primarily to decreased protein binding. The levels of free drug will not change significantly as pregnancy advances. However, dose reduction after delivery may be necessary to avoid toxicity. Valproate and its metabolites undergo placental transfer. In the foetus the plasma level of valproate and the protein binding are higher than in maternal plasma, and the half-life of valproate following placental transfer is considerably longer than in adults. Only small amounts of valproate appear in breast milk and those are not likely to cause any problems. During pregnancy and the first month after delivery preferably both total and free valproate serum levels should be closely monitored to determine the lowest effective dose.

Anticonvulsants

[Role of drug assays in the treatment of epileptic patients].

Drug assays play an important role in the control of antiepileptic treatment because the relationship between the serum concentration of an active drug and its therapeutic effects and side-effects is closer than between dose and effect. Bioavailability, protein binding and drug elimination are subject to inter- and intraindividual variations. However, it is important to remember that the optimal therapeutic ranges reported for serum levels are only a guideline to drug therapy. It is the patient who must be treated and not the serum level.

Age Factors

Comparative steady state serum levels of valproic acid administered as two different formulations--Deprakine and Orfiril.

Plain tablets of sodium valproate (VPA), a useful antiepileptic drug, are bitter tasting and produce gastric irritation which leads to poor patient compliance. We have studied the steady state serum levels of VPA which can be produced in epileptic patients before and after a 1 week treatment with a plain tablet (Deprakine) versus an enteric coated tablet (Orfiril). The latter drug produced in most patients a higher drug fasting blood level than the uncoated preparation (22%). The enteric coated tablets appeared also better tolerated.

Absorption

Effect of carbamazepine, phenytoin and phenobarbitone on serum levels of thyroid hormones and thyrotropin in humans.

Patients on long-term treatment with either of the stereochemically related antiepileptic drugs phenytoin (DPH) or carbamazepine (CBZ) had similar changes in serum thyroid hormone concentrations. T4, FT4, FT4 index, T3, FT3, FT3 index and rT3 were reduced, whereas T3U and TSH were not significantly different from the reference group levels. Long-term phenobarbitone treatment had no convincing effect on the investigated parameters when used alone, but possibly potentiated the effect of CBZ. In patients starting on CBZ, T4 fell to a stable 70% of the basal level after 1--2 weeks. T3 decreased transitorily to 85% of the basal level. TSH showed a complementary but somewhat delayed transitory increase. T3U and TBG did not change significantly. The effect of CBZ and DPH can be explained by interference with thyroid hormone binding to TBG combined with enzyme-induced increased metabolic clearance rate of thyroid hormones without homeostatic maintenance of premedication levels of FT4 and FT3. We suggest that the regulated factor maintaining euthyroidism in these patients is the total quantity of thyroid hormones being degraded in the tissues per unit time. We conclude that serum concentrations of FT4 and FT3 do not reflect thyroid status adequately under all circumstances.

Adult

Lack of effect of clonazepam on serum levels of diphenylhydantoin, phenobarbital and carbamazepine.

The influence of clonazepam on steady-state serum levels of diphenylhydantoin, phenobarbital and carbamazepine was studied in 22 patients with epilepsy receiving one or two of these drugs. Clonazepam was given in slowly increasing doses for 2 weeks until a maximum dose of 4-6 mg per day was reached; thereafter the dose was kept constant. The serum levels of diphenylhydantoin, phenobarbital and carbamazepine were determined once a week for at least 6 weeks. During clonazepam medication in ordinary doses the serum levels of the drugs in question were unaltered. Thus, it is unlikely that the antiepileptic effect of clonazepam in these patients even partly may be due to increased serum levels of these other drugs mentioned.

Adolescent

Preliminary observations on valproic acid kinetics in patients with epilepsy.

A rapid gas chromatographic method for determination of sodium valproic acid (di-n-propylacetate, DPA) is described. A new sample can be injected every third min, and the reproducibility, in terms of the coefficient of variation, is better than 3%. The method has been used to study clinical pharmacokinetics of DPA in patients with epilepsy during long-term treatment. A poor correlation between daily dose (mg/kg) of DPA and steady state serum levels, attained within few days, was observed. A fixed sampling time in the individual patient, preferably before ingestion of the morning dose, is of great importance for DPA due to extended fluctuations of the serum levels during the day. Most patients had DPA serum levels in the order of 50 microng/ml. No constant relationship was found between increase of the dose and the corresponding increase of the serum levels. Interactions of clinical importance was observed between DPA and other antiepileptic drugs, as addition of DPA resulted in elevated serum levels of diphenylhydantoin and phenobarbital. Carbamazepine levels were unaltered. After withdrawal of DPA the half-life was about 14 h in adult patients. DPA levels in CSF were in the order of 10% of the corresponding serum levels.

Adult

Association between regularly occurring complex partial seizures and thyroid function parameters.

A 28-year-old man with regularly occurring clusters of complex partial seizures was studied over a total of 224 days. His seizure periods lasted 2-4 days and occurred at intervals of 5-6 weeks. Several parameters were studied. The most striking finding was an increase in the serum concentration of thyroxine prior to and during the seizure periods. The concentrations of urine catecholamines and serum cortisol also varied with the seizure periods, but these hormones increased after the seizure periods had begun. To determine if there is a general 4-6-week rhythm in thyroid hormone concentrations, 12 weekly blood samples from 10 healthy male students were analyzed. No rhythmicity was found.

Adult