Search PubMed⌕ Search

Biomedical subjects

L Oreland

Publications and source records attributed to L Oreland.

247 records · Page 14Linked to original sources

Plasma levels and clinical effects of thioridazine and thiothixene.

The effects of thioridazine and thiothixene were studied by a double-blind technique on 40 schizophrenic patients. The doses were adjusted for optimal clinical and therapeutic effects and side effects were rated after three and eight weeks of treatment. No statistically significant differences were observed between the two drugs or between either of the two drugs and the previous medication. Plasma levels were estimated by a fluorometric technique after three and eight weeks of treatment. No correlation was found between plasma levels and clinical effects for either thioridazine or thiothixene. Plasma levels of both drugs were clearly correlated to dosage after three weeks of treatment. After eight weeks this correlation persisted for thioridazine but not for thiothixene. By that time plasma levels of thiothixene had decreased to about 30 per cent of the initial value, indicating strong enzyme induction.

Adult↗

A promoter polymorphism in the monoamine oxidase A gene and its relationships to monoamine metabolite concentrations in CSF of healthy volunteers.

Concentrations of monoamine metabolites (MM) in lumbar cerebrospinal fluid (CSF) have been used extensively as indirect estimates of monoamine turnover in the brain. We investigated possible relationships between a putative functional promoter polymorphism in the monoamine oxidase A (MAOA) gene and CSF concentrations of homovanillic acid (HVA), 5-hydroxyindoleacetic acid (5-HIAA), and 3-methoxy-4-hydroxyphenylglycol (MHPG) in healthy volunteers (n=88). Among women (n=37), those carrying at least one copy of the alleles associated with more efficient transcription displayed higher concentrations of HVA (p=0.01) and 5-HIAA (p=0.01). In men (n=51), however, there was a tendency in the opposite direction. The results suggest that MAOA genotypes may participate differentially in the regulation of dopamine and serotonin turnover rates under presumed steady state in the central nervous system. The results should be interpreted with caution until replicated because of the limited sample size.

Adult↗

Normalization of cytochrome-c oxidase activity in the rat brain by neuroleptics after chronic treatment with PCP or methamphetamine.

Previous studies, primarily involving the use of positron emission tomography (PET), have contributed to the hypothesis that a state of hypometabolism may underlie schizophrenia. The chronic use of methamphetamine (MAP) or phencyclidine (PCP), both of which have been shown to enhance dopaminergic function in the brain, leads to a psychotic state in man which has prompted the suggestion that these compounds may have utility as models of schizophrenia. In the present study, regional alterations in energy metabolism were examined in the rat brain using cytochrome-c oxidase (COX) and succinate dehydrogenase (SDH) histochemistry following chronic treatment with PCP and MAP. PCP and MAP were administered alone or in the presence of fluphenazine or clozapine to animals for 28 days, after which mitochondrial enzyme activities were estimated. Both PCP and MAP produced profoundly similar decreases in COX activity in a broad spectrum of regions. Most prominent in this regard were the caudate-putamen, nucleus accumbens and septum. No changes were noted in sections stained for SDH activity, suggesting that results were dependent upon neither a generalized mitochondrial dysfunction nor mitochondrial loss. Cell counts and TUNEL histochemistry also failed to reveal any significant differences between control and treated animals, implying that reductions were not a result of cell loss. Both clozapine and fluphenazine offered varying degrees of protection from the effects of PCP and MAP. The results provide evidence which implicates dopaminergic hyperactivity in the finding of reduced energy metabolism in the brains of schizophrenics.

Animals↗

Follow-up of plasma semicarbazide-sensitive amine oxidase activity and retinopathy in Type 2 diabetes mellitus.

Plasma activity of the enzyme semicarbazide-sensitive amine oxidase (SSAO) is high in diabetes. Production of angiotoxic substances (an aldehyde, hydrogen peroxide, and ammonia) in vessel walls is catalysed by SSAO, suggesting a role for SSAO in the development of complications of diabetes. The objective of the present study was to follow up plasma SSAO activity (measured radiometrically), HbA(1c) (using ion exchange chromatography), and retinopathy (by fundus photography) after 2.8 years, in 34 patients with Type 2 diabetes. We also measured urinary levels of an SSAO substrate, methylamine, by fluorometric high-performance liquid chromatography (HPLC). As at baseline, plasma SSAO activity was now higher in subjects with retinopathy (mean 19.5) than in subjects without retinopathy (mean 16.0), 95% confidence interval (CI) for difference 0.6-6.3 nmol benzylamine ml(-1) plasma h(-1). SSAO activity had not changed significantly since baseline, mean difference -1.65 and 95% CI for difference -3.76 to 0.46 nmol benzylamine ml(-1) plasma h(-1). Mean HbA(1c) level remained higher for patients with retinopathy (now 7.9%) compared to those without retinopathy (6.1%), 95% CI for difference 0.6-3.0%. Comparing baseline and the present study, retinopathy was nonproliferative; level had worsened for five and improved for two patients. Urinary methylamine/creatinine ratio was lower in the group of patients with retinopathy (mean 0.99) than in those without retinopathy (mean 1.78), 95% CI for difference 0.1-1.5 microg mg(-1). The results of the present study are compatible with a role for SSAO in the development of diabetic retinopathy.

Aged↗

Exploring the connections between platelet monoamine oxidase activity and behavior: relationships with performance in neuropsychological tasks.

Platelet MAO activity has been found to have behavioral (psychiatric and personality) correlates. The purpose of the present study was to explore the nature of the connections between platelet MAO activity and behavior by analyzing performance in neuropsychological tasks in relation to platelet MAO activity, measured in 37 male subjects. The following neuropsychological tests were given: a finger tapping and alternation test, a reaction time test, a perceptual maze test, a perspective fluctuation task (the Necker cube), and a lexical decision task. The reaction time tasks comprised a motor disinhibition task, in which auditory stimuli given simultaneously with light stimuli were signals for response inhibition. Significant relationships were obtained between low MAO activity and short response times and small variations in response times to left-sided visual stimuli, suggesting a readiness for higher right hemisphere activation in low MAO subjects, and between low platelet MAO activity and many perspective reversals, in line with expectations. Furthermore, high MAO subjects had equal tapping speed for both hands, which has been found in schizophrenic patients. Of special interest in the present results is the strong negative relationship obtained between platelet MAO activity and number of failed inhibitions in the motor disinhibition task, which in a multiple regression analysis highly significantly contributed to the prediction of platelet MAO activity. This finding is in line with the poor passive avoidance performance associated with serotonergic deficiency and syndromes of disinhibition, and thus supports the assumption that platelet MAO activity may be considered as a genetic marker for some properties of the central serotonergic system.

Adolescent↗

Studies on gamma-aminobutyrate aminotransferase (GABA-T) activities in human and rodent brain homogenates.

Differences in the kinetic properties of brain gamma-aminobutyrate aminotransferase (GABA-transaminase; GABA-T) in different species are described in the present investigation. In both rat and human brain enzymes, the effect of temperature on the activity was studied. The maximal activity, for a 30-min incubation period, was attained at an incubation temperature of 45 degrees C for rat and 56 degrees C for human brain tissue. The addition of plasma or plasma proteins was found to induce a two-fold increase of the activity of rat brain GABA-T, whereas a slight inhibitory effect on human brain enzyme and no effect on mouse brain enzyme was observed. The species differences are shown to be the results of differences in the binding of the cofactor pyridoxal phosphate to the apoprotein, which are revealed when the free concentration of pyridoxal phosphate is reduced by binding to serum albumin.

4-Aminobutyrate Transaminase↗