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Biomedical subjects

R Volmat

Publications and source records attributed to R Volmat.

At least 19 recordsLinked to original sources

Debrisoquine oxidative phenotyping and psychiatric drug treatment.

The debrisoquine/sparteine phenotype was determined in 51 patients with depression, who were subdivided into 3 groups in terms of their drug treatment. Log (MR) for each group was compared. Patients treated with benzodiazepines had the same distribution of log (MR) as the healthy population, but the distribution was shifted towards higher values in patients treated with neuroleptics and antidepressants. It appears that the phenotypic expression of debrisoquine oxidation may be modified by drugs whose metabolism follows the same route as debrisoquine. The debrisoquine test must be carefully interpreted in patients receiving several drugs in the same time.

Adolescent↗

Amitriptyline: linear or nonlinear kinetics in every day practice?

The linearity of the (AMT) kinetics of amitriptyline has been tested in 135 depressed dosed twice daily by measuring plasma. Their (AMT) and nortriptyline (NT) levels under steady-state conditions. The AMT concentration/dose ratios at low and high dosages were not significantly different and there was a linear relationship between the dose ratios and the concentration ratios. No change in the metabolic ratio (AMT/NT) was observed between the two dosages. Although the results are consistent with linear AMT kinetics, there may have been nonlinear kinetics in some patients as the ratio between the concentration/dose ratios in them at low and high dosages was greater than one. Those patients were characterized by a low concentration/dose ratio at low dosage. No clinical adverse effect appeared in the study.

Amitriptyline↗

Desipramine dose prediction based on 24-hour single-dose levels: feasibility and validity.

The authors present a prospective study of a rapid desipramine dose adjustment on the basis of a 24-hour plasma concentration after a single 150 mg dose. For this, they use a prediction table constructed from data in the literature showing strong correlation between steady-state plasma levels and 24-hour single-dose levels. Despite the fact that desipramine action is not always linear, the method appears to be feasible and valid. In an attempt to reach a 150 ng/ml level, the authors obtained steady-state levels ranging from 85 to 317 ng/ml, with 14 of the 19 patients in the range between 125 and 250 ng/ml. Moreover, 11 of the 19 patients received a daily dose of 250 mg or more desipramine from the third day of treatment onward; in ten of these cases, this dose had been adapted.

Adult↗

Biotransformation of amitriptyline in man: interaction with phenothiazines.

The biotransformation modification of amitriptyline by phenothiazines has been studied in 65 depressive inpatients. Thirty-four of them were treated with oral amitriptyline and 31 with a combination of amitriptyline and phenothiazine. Urinary and plasmatic results showed a decrease in hydroxylated metabolites of amitriptyline (OHAMTc and OHAMT) in patients with added phenothiazine.

Adult↗

Biological markers in depression. Monoamine metabolites in urine of depressed patients and normal subjects.

Urinary elimination of HVA, MHPG and 5-HIAA was studied in 22 depressed inpatients before and after 28 days of antidepressant treatment. Mean values did not change significantly during treatment, and were not related significantly to recovery in patients. Some marked changes in urinary metabolite levels were, however, observed in individual patients, and could be related to changes in their depression. The direction of change in urinary monoamine metabolites during treatment was associated with pretreatment levels, in that high pretreatment values tended to decrease whereas low pretreatment levels tended to increase.

Adult↗

[Interaction between tiapride and alcohol in man].

Results of a study in nine alcoholic patients designed to investigate the effects on wakefulness of tiapride combined with alcohol are presented. Each patient was given successively alcohol, tiapride, and both. Changes in certain psychomotor performances during each of these three periods are described. In the study patients, the tiapride-alcohol combination produced no detrimental effect on wakefulness; on the contrary, results of one of the tests were improved.

Arousal↗

Metabolism of amitriptyline in patients with chronic renal failure.

The metabolism of amitriptyline (AMT) has been studied in two groups of depressed in-patients on long term AMT therapy: 11 patients with no other major disease and 8 patients with chronic renal failure, who were being dialysed. The patients with renal insufficiency had decreased concentrations of AMT, nortriptyline (NT) and their unconjugated hydroxymetabolites compared to patients with normal kidney function. The plasma levels of conjugated products were extremely high in the uraemics. The latter metabolites are probably inert. The reduced concentration of unconjugated hydroxymetabolites , which are active compounds, may decrease the clinical effectiveness of the drug.

Adult↗

Biotransformation of amitriptyline in alcoholic depressive patients.

The biotransformation of amitriptyline (AMT) during steady state conditions was studied in plasma and urine from 11 nonalcoholic and 10 alcoholic depressive inpatients treated with oral AMT. The 2 groups of patients had a different pattern of biotransformation. The Demethylation of AMT was lower in alcoholic than in nonalcoholic depressive patients, and conjugation and hydroxylation of AMT were also more marked in the former group. The results may be of clinical relevance since the conjugates of AMT are inactive.

Adult↗

Biotransformation of amitriptyline in depressive patients: urinary excretion of seven metabolites.

The urinary excretion of amitriptyline (AMT) and seven of its metabolites was studied by mass spectrometry in 10 depressive in-patients treated to steady-state condition with oral amitriptyline. An average of 68.3% of the dose was recovered in the urine, of which 68.6% was present as conjugates. Hydroxynortriptyline and its conjugate represented 54% of the total recovery. There was marked variation in metabolite pattern between patients. The variations were not due to concomitant medication with benzodiazepines. There was no correlation between the plasma and urine concentrations of AMT and its metabolites, except for amitriptyline conjugates. Two groups of patients could be distinguished - low and high excretors, who displayed alternative routes of metabolism. The disappearance rate of AMT from plasma was determined by the metabolic clearance of AMT to its metabolites. It varied considerably between patients.

Adult↗

Relationship between the plasma concentration of clomipramine and desmethylclomipramine in depressive patients and the clinical response.

Thirty one in-patients suffering from depression were treated orally with clomipramine (C1) at various dosage, for 28 days, after a "wash-out" period of three days. In 17 patients receiving 75 mg per day of C1, steady state plasma levels of C1 were reached at Day 14, and steady state plasma levels of its active metabolite, desmethylclomipramine (DMC1), were reached at Day 21. In contrast, in 7 other patients receiving a dosage increasing to 150 mg per day at Day 7, mean plasma levels of C1 and DMC1 continued to rise during the entire treatment period. At the steady state, a correlation was found between C1 dosage expressed as mg kg body weight and the plasma concentration of C1 and DMC1. Factors such as tobacco and alcohol consumption seem to modify the C1/DMC1 ratio. A comparison of clinical response with plasma levels of C1, DMC1 and C1 + DMC1 showed a significant negative linear correlation.

Adult↗

Clinical pharmacology of viloxazine hydrochloride.

Plasma concentrations of viloxazine were determined in twenty depressed inpatients during 4 weeks of treatment with progressively increasing dosage. Viloxazine plasma levels varied markedly during the day, due to the short half-life of the drug. Plasma levels rose to peak values after 7-10 days of treatment and then decreased, perhaps due to enzymatic induction by viloxazine. A negative linear correlation was found between the plasma concentration of viloxazine and its clinical effect, with the best clinical improvement in patients whose plasma concentration was 20-500 ng/ml at 7 a.m. Performance in psychomotor tests (visual reaction time and ring of Pierron was improved in many patients after treatment and was correlated with the plasma viloxazine level and the Hamilton Rating score. Assessment of viloxazine effects of electroencephalogram showed a decrease in EEG amplitude in the eight clinically improved patients.

Depressive Disorder↗

[Clomipramine and desmethylclomipramine: relationship between plasma levels and clinical effect (author's transl)].

Pharmacokinetic can perhaps explain that about 30% of depressed patients do not respond to tricyclic antidepressants. Studies of the relationship between the pharmacokinetic and pharmacological effects of the tricyclic antidepressants are particularly important. Clomipramine is a tricyclic antidepressant widely used. But there are disparities in various findings on relationship between plasma levels of this drug and clinical effect. Forty in-patients, with an endogenous or exogenous depressive syndrome, received clomipramine orally. In 19 patients treated by 75 mg per day of clomipramine, there was a great interindividual variability of the plasma levels at the 28 day treatment. A comparison of clinical response with plasma levels of clomipramine and desmethylclomipramine, showed a significant negative linear correlation at day 28.

Adjustment Disorders↗