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Biomedical subjects

K Tekes

Publications and source records attributed to K Tekes.

At least 37 records · Page 2Linked to original sources

Platelet rich plasma serotonin content in patients suffering from different psychiatric disorders.

Platelet rich plasma serotonin contents were examined using HPLC-EC method in patients suffering from different anxiety states and compared to age matched healthy controls. We have found significant increase of PRP serotonin level in the group of schizophrenic patients and in patients suffering from dementia compared to controls. PRP serotonin content was significantly lower in heavy drinkers but in patients suffering from panic disorder did not differ significantly from the controls.

Alcoholism↗

Comparative study of platelet 3H-paroxetine and 3H-imipramine binding in panic disorder patients and healthy controls.

High affinity 3H-paroxetine and 3H-imipramine binding sites were simultaneously studied in platelets of 29 untreated patients with panic disorder and 12 healthy controls. The maximum number of binding sites (Bmax) was found to be significantly lower in the panic patients compared to the controls using either ligand. No difference in the Kd values between the groups of subjects was found. The disturbance of serotonin neurotransmission in panic disorder--decrease in Bmax values--may be either a consequence or a reason of serotonergic dysfunction.

Adult↗

Further proof that (-)deprenyl fails to facilitate mesolimbic dopaminergic activity.

The selective monaminooxidase (MAO)-B inhibitor (-)deprenyl facilitates the nigrostriatal dopamine (DA)-ergic system by a complex mechanism that includes inhibition of DA reuptake and increase of DA turnover. In this study, DA reuptake and DA turnover were measured in the olfactory tubercle of rats treated with 0.25 mg/kg (-)deprenyl for 28 days. There was no difference between these rats and the saline-treated group. In another series of experiments, we analysed how (-)deprenyl influences the action of some indirectly acting DA agonists, such as amphetamine (AM) and phenylethylamine (PEA). The effect on different behavioural patterns related either to the nigrostriatal (stereotyped behaviour) or the mesolimbic (rearing, locomotion) DAergic system was investigated. As expected, the PEA-induced stereotyped behaviour was tremendously potentiated by (-)deprenyl and the AM-induced stereotypy was reduced. At the same time there was no change in locomotion and rearing. The results give further biochemical and behavioural proof that (-)deprenyl enhances the function of the nigrostriatal DAergic system and leaves the mesolimbic DAergic neurons unaffected.

Amphetamine↗

Serotonergic interhemispheric asymmetry: neurochemical and pharmaco-EEG evidence.

1. Postmortem neurochemical investigations revealed interhemispheric asymmetry in the mediofrontal region of human brain. Significantly higher right hemisphere serotonin metabolite (5HIAA) content as well as increased maximal imipramine binding (IB) were found in the right hemisphere than in the left side. 2. IB did not show a gender difference in the mediofrontal area. However, women had higher IB in the right orbital frontal cortex than did men. 3. In vivo pharmaco-EEG results tend to support the postmortem neurochemical data. Intravenous chlorimipramine resulted in an asymmetric topographic distribution of the P300 auditory evoked potential, peak amplitudes were shifted to the right hemisphere.

Adult↗

Serotonergic interhemispheric asymmetry: gender difference in the orbital cortex.

The asymmetry of tritiated imipramine (IMI) binding sites (which are associated with serotonergic mechanisms) were investigated in the orbital frontal cortex in 6 women and men who died of natural causes, and who did not have a history of mental disorders. There was significant interhemispheric asymmetry in both sexes, higher Bmax on the right side compared with the left. The Bmax values of IMI binding in the right orbital cortex in women were significantly higher than in men. Our preliminary findings--gender difference of serotonergic mechanisms in some area of the human brain--are in accordance with the observed gender differences in a variety of serotonin-regulated behaviors (sexual behavior, aggression and impulse control), and serotonergic mental disorders (eating disorders, suicidal behavior, anxiety disorders and depression).

Aged↗

Comparison of serotonin agonistic and antagonistic activities of a new antidepressant agent Trelibet (EGYT-475) and its metabolite EGYT-2760 on isolated rat fundus.

The effects of Trelibet (EGYT-475, N-benzyl-piperazine-picolinyl-fumarate) and its active metabolite (EGYT-2760, N-benzyl-piperazine) on the serotoninergic responses of rat stomach fundus were investigated and compared with those of MCPP (m-chlorophenyl-piperazine) which is the common metabolite of the arylpiperazine antidepressants Trazodone and Etoperidone. The contraction inhibitory potencies of the agents were determined on the equipotent contractions (EC50) to serotonin (5-HT) and prostaglandin F2 alpha (PGF2 alpha). Isotonic contractile responses to 5-HT were not affected by EGYT-475, however, both EGYT-2760 and MCPP produced concentration related and reversible inhibition of the serotoninergic responses. The IC50 values for EGYT-2760 and MCPP were 40.5 +/- 7.5 mumol/l and 125 +/- 35 nmol/l, respectively. The inhibition was selective for the serotoninergic responses, as the equipotent responses to PGF2 alpha were not affected. EGYT-2760 and MCPP displayed not only 5-HT antagonistic, but also partial agonistic activities on the rat fundus preparation. Maximum contractile response of the fundus preparation to MCPP was approximately 25%, to EGYT-2760 was 10% of the maximum response to 5-HT.

Animals↗

The asymmetry of 3H-imipramine binding may predict psychiatric illness.

The Bmax and Kd values for 3H-imipramine binding were measured in post-mortem human brains from drug-free selected psychiatric subject homicide victims (n = 15) and normal controls (n = 15). The two groups were comparable in age and gender. The number of imipramine binding sites (Bmax) in the frontal cortices of psychiatric subjects had significantly higher Bmax values in the left hemisphere than in the right hemisphere. Inversely, the number of imipramine binding sites (Bmax) in the frontal cortices of normal controls were significantly higher in the right brain than in the left brain. It was postulated that the inhibiting effect of central serotonin (5-HT) has weakened in psychiatric cases, therefore the change of presynaptic serotonergic activity might be associated with psychiatric illness in the left hemisphere of human brain.

Adolescent↗

Does 3H-imipramine binding asymmetry indicate psychiatric illness?

We have accepted that serotonin is essentially an inhibitory neurotransmitter in the human brain, so we propose that it is precisely this inhibiting effect that has weakened in psychiatric cases. We have investigated the asymmetry of tritiated imipramine binding sites (Bmax) in the frontal cortices of homicide victims (n = 6) and controls (n = 6) who died of natural causes. Of these homicide victims examined in our experiment, five proved to have been psychiatric cases and one case had no psychiatric record. The two groups were comparable in age, gender and postmortem delay. The number of imipramine binding sites (Bmax) in the frontal cortices of controls was significantly higher in the right hemisphere than in the left hemisphere. But the homicide victims who were psychiatric cases had significantly higher (Bmax) values in the left hemisphere. While we only found higher Bmax values in the left hemisphere of homicide victims with mental diseases, our data may serve to prove the direct role of the serotonergic mechanism in the development of psychiatric cases.

Brain↗

The action of trelibet, a new antidepressive agent on [3H]noradrenaline release from rabbit pulmonary artery.

Trelibet, a new antidepressant, used at 10(-7)-10(-4) M failed to affect the [3H]noradrenaline ([3H]NA) release evoked from the isolated main pulmonary artery of the rabbit low frequency (2 Hz) nerve stimulation whether the neuronal uptake inhibitor cocaine (3 X 10(-5) M) was present or not. Its metabolite (EGYT-2760) however, potentiated the nerve-evoked release of [3H]NA. In the absence of cocaine both the resting and the stimulation-evoked release of 3H increased in response to EGYT-2760. These effect were accompanied by muscle contraction. The EGYT-2760-potentiated transmitter release was inhibited either by exogenously applied 1-noradrenaline (10(-6) M) or clonidine (10(-6) M), preferential agonists of presynaptic alpha 2-adrenoceptors. The 1-noradrenaline-induced inhibition of transmitter release potentiated by EGYT-2760 was antagonized by 3 X 10(-7) M yohimbine, a preferential alpha 2-adrenoceptor inhibitor. In the absence of cocaine, Ca2+ removal from the external medium failed to affect the 3H outflow-increasing effect of EGYT-2760 but abolished the nerve-evoked release-potentiating action of this compound. It is concluded that the metabolite of trelibet exerts a 'yohimbine-like' action, as well as a 'tyramine-like' effect in peripheral sympathetic nerve fibres.

Animals↗

Irregular chronic stress related selective presynaptic adaptation of dopaminergic system in rat striatum: effects of (-)deprenyl and amitriptyline.

Rats were exposed to irregular chronic stress (IRCS, an animal model of depression). Changes in dopamine and serotonin utilization by striata and hippocampi were measured. IRCS did not influence serotonin uptake, serotonin, dopamine, 5-hydroxyindolacetic acid and homovanillic acid levels, while it decreased 3,4-dihydroxyphenylacetic acid level and dopamine uptake. This would reflect selective presynaptic adaptation to IRCS. Neither (-)deprenyl (21 X 0.25 mg/kg, s.c.), nor amitriptyline (21 X X 15 mg/kg, i.p.) could prevent the effects of IRCS.

Adaptation, Physiological↗

The fate of p-bromo-methylamphetamine (V-111) in the body.

The fate of p-bromo-methylamphetamine (V-111) in the body was studied by means of its radioactive labelled forms in mouse and rat experiments. It was found with the whole body autoradiographic method and liquid-scintillation measurements that the compound is rapidly absorbed by whatever routes of administration and it is rapidly taken up by the tissues from the blood stream. In the central nervous system, it reaches higher concentration than methyl-amphetamine and it leaves the central nervous system more slowly. We have shown with differential centrifugation that V-111 is bound much more avidly to the mitochondrial and microsomal fractions of rat brain than methyl-amphetamine and o-bromo-methyl-amphetamine (V-104). The intensity of binding is proportional to the lipid solubility of the compounds. V-111 and its metabolites are excreted mainly in the urine, and they can be found in small amounts also in the stool. In the case of V-111-3-14C a small amount of 14CO2 appeared in the expired air, too, which is a consequence of the disintegration of the molecule. It has been shown by the radiochromatographic and gas chromatographic, mass-spectrometric analysis of the metabolites that V-111 is excreted partly in unchanged form, nevertheless, the N-demethylated and subsequent products, viz. p-bromo-phenyl-acetone, p-bromo-phenylpropanol, p-bromo-benzoic acid and p-bromo-hyppuric acid are also excreted in the urine. The main metabolic pathway of amphetamine and of its methyl-derivative in rat is p-hydroxylation, which does not take place in the case of p-halogenated V-111. Thus the secondary metabolic pathway (demethylation, oxidative desamination) becomes the main metabolic route of V-111 in this species. The vigorous demethylation of V-111 was proved both in vivo and in vitro. In the rat, demethylating activity increases during prolonged treatment. The latter fact has to be taken into consideration when interpreting the pharmacological tolerance that develops during chronic administration of the compound.

Absorption↗

The role of metabolic factors in the interaction between opiates and homopyrimidazoles in the central nervous system.

Both the analgesic and the antitussive effects of morphine, codeine and azidomorphine, azidocodeine and azidoethylmorphine are potentiated in rats and cats by Probon, a minor analgesic, with a homopyrimidazole structure. The analgesic effect of opiates and their toxicity are more strongly influenced by the N-methylhomopyrimidazoles than their antitussive effect. In the potentiation between Probon and morphine derivatives metabolic interference may play a role at the N-demethylation level, occuring in the liver microsomes.

Analgesics↗