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Biomedical subjects

A Llerena

Publications and source records attributed to A Llerena.

At least 37 records · Page 2Linked to original sources

Relationship between personality and debrisoquine hydroxylation capacity. Suggestion of an endogenous neuroactive substrate or product of the cytochrome P4502D6.

We administered the Karolinska Scales of Personality to 225 healthy subjects in Spain selected from a group of 925 individuals previously phenotyped with regard to their capacity to hydroxylate debrisoquine. A significant relationship was found between the scores in as many as 4 of the 15 subscales (psychic anxiety, psychasthenia, inhibition of aggression and socialization) and the debrisoquine hydroxylation capacity. Poor metabolizers were more anxiety-prone and less successfully socialized than extensive metabolizers of debrisoquine. This and a previous study among subjects in Sweden suggest that there may be a relationship between personality and the activity of the enzyme hydroxylating debrisoquine (cytochrome P4502D6). This polymorphic enzyme may have an endogenous neuroactive substrate or product, such as a biogenic neurotransmitter amine.

Adolescent↗

Reproducibility over time of mephenytoin and debrisoquine hydroxylation phenotypes.

Mephenytoin and debrisoquine hydroxylation phenotypes were determined twice in 15 Spanish healthy volunteers with an interval of about one year. The phenotype assignment did not change in any subject for either debrisoquine or mephenytoin. Among extensive metabolisers of mephenytoin, there was a slight increase (P = 0.04) of the mephenytoin-S/R enantiomeric ratio over the study period. The family members of a poor metaboliser of mephenytoin were phenotyped, and the heterozygous extensive metabolisers were found to have higher mephenytoin-S/R ratios than other extensive metabolisers suggesting a correlation between the genotype and the S/R ratio.

Adult↗

Haloperidol disposition is dependent on debrisoquine hydroxylation phenotype.

To investigate the importance of genetic factors for the regulation of haloperidol metabolism, we studied the disposition of a single oral dose of this drug in a panel of six extensive (EM) and six poor (PM) metabolizers of debrisoquine. PM eliminated haloperidol significantly slower than EM, the plasma half-life being longer (mean 29.4 +/- S.D. 4.2 and 16.3 +/- 6.4 h; p less than 0.01) and the clearance lower (1.16 +/- 0.36 and 2.49 +/- 1.31 L/h/kg; p less than 0.05). A 4-mg dose of haloperidol was given to the first three PM, but all three developed side effects, and a 2-mg dose had to be given to the next three PM subjects. All EM received 4 mg haloperidol. The disposition of haloperidol is thus associated with the genetically determined capacity to hydroxylate debrisoquine. PM of debrisoquine (7% of Caucasian populations) might, therefore, on common doses of haloperidol, achieve high plasma concentrations and thereby have an increased risk of side effects. At the other extreme, very rapid metabolizers may need increased doses of haloperidol.

Adult↗

Haloperidol disposition is dependent on the debrisoquine hydroxylation phenotype: increased plasma levels of the reduced metabolite in poor metabolizers.

We have previously shown that the disposition of haloperidol is decreased in poor (PM) compared to extensive (EM) metabolizers of debrisoquine. We now report that the plasma levels of the reduced metabolite of haloperidol, after a single 2- or 4-mg oral dose of the parent drug, are significantly higher in PM than in EM of debrisoquine. As PM have higher concentrations of haloperidol than EM, more of the reduced metabolite should be formed, since the formation of reduced haloperidol from haloperidol seems to be independent of the debrisoquine hydroxylase (cytochrome P4502D6) activity. Another reason to explain the increased metabolite levels in PM may be a decreased reoxidation of the reduced metabolite to haloperidol, as this reaction is catalyzed by cytochrome P4502D6. A third reason might be that reduced haloperidol is transformed to other metabolites by this enzyme.

Chromatography, High Pressure Liquid↗

Polymorphic oxidation of debrisoquine in lung cancer patients.

Oxidative polymorphism of debrisoquine (DBQ) was assessed in 84 patients (81 male) with histologically proven bronchogenic carcinoma and in 143 healthy male smokers. 80 (95%) patients and 133 (93%) controls, with a metabolic ratio (MR) below 12.6, were classified as extensive metabolisers of DBQ (no significant difference between patients and controls). Only 1 of the 73 patients with epidermoid or microcytic carcinomas was classified as a poor metaboliser (PM) (P = 0.031 compared with controls). 63 patients (75%) and 110 controls (77%) showed a very fast oxidative rate, with MR values under 1 (not significant). The EM phenotype of DBQ might be a secondary genetic risk factor for developing bronchogenic carcinoma in male smokers.

Aged↗

Polymorphic oxidation of debrisoquine in women with breast cancer.

Oxidative polymorphism of debrisoquine (DBQ) was determined in 98 women with breast cancer (mean age 59.2 years, SD 10.7; 18 were premenopausal when diagnosed), and in 446 healthy control women (mean age 25.4 years, SD 9.15). All of them were free of drug interactions with oxidation of DBQ. Ten patients (10.2%), all of them postmenopausal when diagnosed, and 423 controls (5.2%), with values for metabolic ratio of DBQ greater than 12.6, were classified as poor metabolizers (PM) of DBQ (p = 0.006). Relative risk for developing breast cancer among women with PM phenotype was 2.09 (95% confidence limits 0.97-4.48). The PM status of DBQ might be a secondary risk factor for breast cancer in postmenopausal women.

Adult↗

Oxidative polymorphism of debrisoquine in Parkinson's disease.

Oxidative phenotype and metabolic ratio (MR) of debrisoquine (DBQ) have been determined in 87 patients with Parkinson's disease and in 556 healthy control subjects. Three patients (3.45%) and 34 control subjects (6.12%), having an MR greater than 12.6, were classified as poor metabolisers (PM) of DBQ (ns). The distribution of MR values in the 84 Parkinsonian patients classified as extensive metabolisers (EM) showed a less efficient oxidative rate when compared with controls of the same phenotype (p less than 0.001). This difference may be due to enzymatic inhibition caused by drug treatment in 40 of these patients. As in patients not taking any drug known to inhibit the oxidation of DBQ, distribution of MR values was not different from that in controls. A negative correlation (r = -0.36, p less than 0.02) was found between MR of DBQ and age at onset of disease in patients free of drugs known to interact with DBQ metabolism. A higher rate of DBQ oxidation could be a genetic factor that delays the clinical onset of Parkinson's disease in predisposed people.

Adult↗

Polymorphic oxidation of debrisoquine in bladder cancer.

The oxidative polymorphism of debrisoquine has been determined in 125 patients with bladder cancer and in 556 healthy control subjects; 96.6% of patients and 93.9% of controls with a metabolic ratio of debrisoquine less than 12.6 were classified as extensive metabolizers of debrisoquine (P = NS). The distribution of frequencies of metabolic ratio values tended to have lower values in the patients (P less than 0.05), reflecting a higher oxidative rate of debrisoquine in urothelioma patients that cannot be explained solely in terms of enzymatic induction by drugs, tobacco or alcohol. Patients with a high occupational risk for urothelioma had lower metabolic ratio values (P = 0.03). Our results suggest that oxidative polymorphism of debrisoquine might be related to the pathogenesis of bladder cancer.

Aged↗

Acetylator polymorphism in Parkinson's disease.

Acetylator phenotype has been determined using sulphamethazine in 100 patients with Parkinson's disease and in 93 age-matched normal control subjects. Sixty-nine patients and 54 control subjects were classified as slow acetylators (NS). No relation was found among acetylator polymorphism and age at onset or clinical stage of disease. Amongst slow acetylators, the percentage of acetylated sulphamethazine in plasma was significantly lower in patients than in controls. Despite this finding, the results do not support any relationship between acetylator polymorphism and the risk of developing Parkinson's disease.

Acetylation↗

Assessment of the debrisoquin and dextromethorphan phenotyping tests by gaussian mixture distributions analysis.

From a sample of 149 unrelated Spaniards, individuals were phenotyped for their ability to hydroxylate debrisoquin and O-demethylate dextromethorphan. The distribution of urinary metabolic ratios for each test was analyzed by univariate gaussian mixture distributions analysis to determine the number of populations, the mean and standard deviation of the metabolic ratios for each population, and the proportion belonging to each population. For the 124 subjects phenotyped with both the debrisoquin and dextromethorphan tests a bivariate analysis was performed. The results demonstrate that both tests similarly separated this sample into two populations, with 10% belonging to poor metabolizer phenotypes. In addition, the correlation between the metabolic ratios from each test is significant, indicating that they are measuring the same biologic trait and the certainty of correctly identifying the debrisoquin oxidation phenotype of an individual is improved by using the results of both tests.

Debrisoquin↗

Interethnic differences in drug metabolism: influence of genetic and environmental factors on debrisoquine hydroxylation phenotype.

Genetic and environmental factors are determinants of the interindividual and interethnic variability in drug metabolism. The metabolism of several important drugs (e.g. haloperidol) cosegregates with that of debrisoquine. Thus, interethnic differences in debrisoquine hydroxylation polymorphism (CYP2D6) might be partly responsible for the variation in haloperidol disposition between races. The influence of tobacco, ethanol, caffeine, gender, and oral contraceptive use on the debrisoquine metabolic ratio (MR) has been analyzed in 633 Spanish healthy volunteers. MR was also determined in panels of healthy volunteers. 18 smokers were studied during a tobacco abstinence period, and 31 women three times during the same menstrual cycle. Among EMs, debrisoquine MR was significantly (P < 0.05) lower during smoking cessation (mean antilog +/- SD, 0.48 +/- 0.29) compared to a smoking period (0.61 +/- 0.23). During the lutheal phase of the menstrual cycle, debrisoquine MR was also significantly (P < 0.01) lower (0.33 +/- 0.41) compared to the ovulatory-phase (0.41 +/- 0.34) and the phase before ovulation (0.44 +/- 0.36). Among EMs, it is suggested that debrisoquine MR may be modified by tobacco smoking and sexual hormones. The clinical relevance of these findings remains unclear.

Adolescent↗

[Prevalence of polydipsia and water intoxication in psychiatric inpatients].

INTRODUCTION: The prevalence of polydipsia and water intoxication among psychiatric inpatients has been described in different countries, however few studies have been conducted in Europe. The present study was aimed at evaluating the prevalence of polydipsia and water intoxication in an European Psychiatric Hospital. METHODS: SPGU (Specific Gravity of Urine) and Normalised Diurnal Weight Gain (NDWG) were evaluated among 201 inpatients. RESULTS: Risk of polydipsia and water intoxication were found among 51% of all patients. Risk of primary polydipsia was present in 25% of patients, and primary polydipsia and risk of water intoxication among 25% of all patients. CONCLUSIONS: This is one of the unique studies of polydipsia and water intoxication in psychiatric inpatients in Europe, and the first one conducted in Spain. The development of specific preventative and clinical programmes in psychiatric patients is suggested due to the clinical relevance and high prevalence of this pathology.

Adult↗