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F Artigas

Publications and source records attributed to F Artigas.

At least 19 recordsLinked to original sources

Fluvoxamine preferentially increases extracellular 5-hydroxytryptamine in the raphe nuclei: an in vivo microdialysis study.

The effects of systemic administration of fluvoxamine on extracellular serotonin (5-hydroxytryptamine, 5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) concentrations in the frontal cortex and raphe nuclei of freely moving rats were examined. Fluvoxamine significantly increased extracellular 5-HT concentrations in both regions at the two doses used (1 and 10 mg/kg i.p.). However, the increase in the raphe nuclei was several-fold that in the frontal cortex. Dialysate 5-HIAA concentrations decreased after treatment with fluvoxamine. These results confirm that 5-HT uptake inhibitors preferentially increase extracellular concentrations of 5-HT in the vicinity of cell bodies and dendrites of serotonergic neurones.

Animals

Effects of acute and chronic treatment with fluvoxamine on extracellular and platelet serotonin in the blood of major depressive patients. Relationship to clinical improvement.

The effects of the treatment with fluvoxamine (FVX) on platelet and plasma serotonin (5-HT) have been examined in eleven drug-free major depressive patients. Acute FVX was without effect, whereas the repeated oral treatment (100-150 mg daily, 12 weeks) reduced platelet 5-HT (-89%, P less than 0.001) and plasma 5-HT (-60%, P less than 0.02). Patients who responded to the treatment at 6 weeks (Hamilton score less than or equal to 10) had significantly lower (-39%, P less than 0.02) pretreatment values of platelet 5-HT than the rest. This suggests that 'low 5-HT' patients may have a more rapid improvement after fluvoxamine. Platelet 5-HT and HDRS correlated significantly along the treatment (r = 0.679, P less than 0.01). These data demonstrate a marked action of fluvoxamine as 5-HT uptake inhibitor at therapeutic doses and confirm that this mechanism is relevant for its efficacy as antidepressant drug.

Adult

Simultaneous effects of p-chloroamphetamine, d-fenfluramine, and reserpine on free and stored 5-hydroxytryptamine in brain and blood.

The effects of acute treatment with p-chloramphetamine, d-fenfluramine, and reserpine on intracellular (brain tissue and whole blood) and extracellular (CSF and platelet-free plasma) compartments of 5-hydroxytryptamine (5-HT) in the brain and blood of the same rats have been examined. These treatments affected 5-HT in brain tissue and whole blood similarly (r = 0.823). Reserpine significantly reduced both intracellular pools at 2 and 24 h. p-Chloroamphetamine and d-fenfluramine were more effective on brain tissue 5-HT. The concentration of 5-HT in CSF was significantly increased by all treatments. p-Chloroamphetamine induced a dramatic 70-fold increase of CSF 5-HT, paralleling a 42% decrease in brain tissue. d-Fenfluramine significantly increased CSF 5-HT to 212% of controls and reduced whole brain 5-HT (-23%). The effects of p-chloroamphetamine and d-fenfluramine on 5-HIAA in brain, CSF, and plasma were nonsignificant. Individual values of 5-hydroxyindoleacetic acid (5-HIAA) in CSF and brain were highly correlated (r = 0.855), indicating that CSF 5-HIAA reflects well the concentration of 5-HIAA in brain tissue. Yet the intra- and extracellular concentrations of 5-HIAA were unrelated to the 5-HT changes. This indicates that CSF 5-HIAA does not reflect the active (extracellular) compartment of 5-HT in brain.

Animals

Effects of monoamine uptake inhibitors on extracellular and platelet 5-hydroxytryptamine in rat blood: different effects of clomipramine and fluoxetine.

1. The concentration of 5-hydroxytryptamine (5-HT) in rat platelet-free plasma increased significantly 30 min after a single i.p. injection (10 mg kg-1) of each of six inhibitors of the high-affinity 5-HT uptake (fluvoxamine, fluoxetine, alaproclate, paroxetine, sertraline and clomipramine). The increases ranged from 226% to 776% of control values. In contrast, imipramine, desipramine and femoxetine had no significant effect. The increase elicited by paroxetine was dependent on the dose (1, 5 and 10 mg kg-1) and returned to control values after 4 h. That observed after clomipramine was also transient and paralleled the plasma concentration of the drug (Spearman-rank correlation r = 0.43). 2. In vivo, the rat pulmonary vascular endothelium removed trace amounts (8.8 nmol in a bolus) of intravenously injected [14C]-5-HT. Paroxetine pretreatment (10 mg kg-1, 30 min before-hand) reduced this uptake by 73%. 3. Repeated fluoxetine treatments reduced rat whole blood 5-HT concentration (ca. -60% after daily 2 x 5 mg kg-1, i.p. during 14 days). However, plasma (extracellular) 5-HT was not increased. 4. Various repeated treatments with clomipramine (i.p. injections or osmotic minipumps, up to 30 mg kg-1 day-1), failed to decrease rat whole blood 5-HT concentrations. Platelet-free plasma 5-HT was also unchanged, even after treatments yielding plasma clomipramine levels 2.7 times higher than those that increased it acutely. 5. These results indicate that the extracellular pool of 5-HT in rat blood (measured in the platelet-free plasma) is physiologically under the control of high-affinity 5-HT uptake systems.The sustained 5-HT uptake inhibition does not result in an increase of 5-HT in platelet-free plasma, suggesting that adaptative mechanisms are triggered. The distinct long-term effects of the two antidepressants clomipramine and fluoxetine on rat whole blood 5-HT suggest a differential in vivo action on the rat 5-HT uptake.

Animals

Monoamine oxidase inhibitors phenelzine and brofaromine increase plasma serotonin and decrease 5-hydroxyindoleacetic acid in patients with major depression: relationship to clinical improvement.

We have examined the effects of two monoamine oxidase (MAO) inhibitors with different mechanisms of action--phenelzine and brofaromine--on peripheral serotonergic (5-hydroxytryptamine [5-HT]) measures, sensitive to the inhibition of MAO-A (intra- and extracellular 5-HT and related metabolites in blood). Both drugs increased the concentration of 5-HT in platelet-free plasma (254%, p less than 0.001) in patients with depressive illness (DSM-III-R) after 6 weeks of daily treatment. Platelet 5-HT was also increased significantly in both drug treatment groups but more marked in the patient group treated with phenelzine. The acid/amine ratio at 6 weeks was 30% of pretreatment values (p less than 0.000) and individual variability correlated significantly with the Hamilton Rating Scale for Depression. Plasma 5-HT increased more markedly in responders than in nonresponders and a significant inverse relationship surfaced between plasma 5-HT and the Hamilton Rating Scale for Depression. The results support other reports of comparable antidepressant efficacy for brofaromine and phenelzine, both inhibitors of MAO-A in humans. The consistent relationship we found between the biochemical and clinical changes again suggests and supports a key role of 5-HT in the antidepressant effect of these MAO inhibitors.

Adult

Effects of the antidepressant drug tianeptine on plasma and platelet serotonin concentrations in the rat.

The antidepressant drug tianeptine increased rat plasma 5-hydroxyindoleacetic (5-HIAA) concentrations after single and repeated treatment for 14 days. This effect was not due to an increase in 5-hydroxytryptamine (5-HT) synthesis, as measured by the accumulation of 5-hydroxytryptophan in plasma and brain. A concurrent decrease in platelet-free plasma 5-HT concentrations occurred after subchronic treatment. Tianeptine attenuated the large increase in 5-HT concentrations in platelet-free plasma elicited by the specific 5-HT uptake inhibitors citalopram and paroxetine. These data are compatible with the reported 5-HT uptake-enhancing activity of this antidepressant drug.

Animals

Differential effects of clomipramine given locally or systemically on extracellular 5-hydroxytryptamine in raphe nuclei and frontal cortex. An in vivo brain microdialysis study.

The antidepressant drug clomipramine (CIM) blocks 5-hydroxytryptamine (5-HT) uptake in vitro. Electrophysiological studies have shown that CIM also reduces the firing of serotonergic neurons in the dorsal raphe nucleus. In order to assess the effects of CIM on serotonergic transmission in vivo, the technique of intracerebral microdialysis was used. CIM was administered either through the dialysis probe or i.p., and dialysate 5-HT and 5-hydroxyindoleacetic acid (5-HIAA) were determined in frontal cortex and/or raphe nuclei. In addition, the action of extracellular 5-HT in raphe nuclei on the release of 5-HT in frontal cortex was studied. The administration of CIM through the dialysis probe increased dialysate 5-HT in frontal cortex in a dose-dependent fashion. An actual ED50 of 3.15 microM CIM for the in vivo inhibition of 5-HT uptake can be calculated in this brain area. When given systemically (10 or 20 mg/kg i.p.), CIM did not increase dialysate 5-HT in the frontal cortex. The occurrence of extracellular 5-HT in the the raphe area was demonstrated. This pool of 5-HT increased markedly after local (10 or 40 microM) or systemic (20 mg/kg i.p.) administration of CIM. We also examined the effect of CIM applied locally in the raphe nuclei on extracellular 5-HT in the frontal cortex. The increased dialysate 5-HT in raphe after 10 or 40 microM CIM paralleled a decrease of dialysate 5-HT in the two areas correlated negatively. The administration of CIM through the dialysis probe slightly decreased dialysate 5-HIAA in the frontal cortex.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Differential response of rat brain polyamines to convulsant agents.

The polyamines putrescine (PUT), spermidine (SD) and spermine (SM) have been studied in rat brain after treatment with several convulsant agents. Kainic acid (10 mg/kg), picrotoxinin (1.5 mg/kg), pentylenetetrazol (60 mg/kg) and lindane (gamma-hexachlorocyclohexane) (60 mg/kg) were given to male Wistar rats. Twenty-four hours later, the animals were sacrificed and their brains removed. Cortical polyamines were analyzed by HPLC with fluorimetric detection of their respective dansyl derivatives, using 1,6-diaminohexane as internal standard for the measurements. Polyamine levels are not affected by short periods of time (30 min) of brain exposure to room temperature before freezing the samples, as compared to a quick procedure (less than 40 s from animal death). Kainic acid induced a 14-fold increase of cortical PUT with respect to control values, leaving unchanged the other polyamines. Lindane also increased cortical PUT (4-fold) without affecting SM or SD. Neither picrotoxinin, nor pentylenetetrazol groups were different from controls for any of the polyamines assayed. The results are discussed in relation to the possible mechanism of action of these convulsant agents and the role of the polyamines in cell injury.

Animals

Changes in polyamine levels in rat brain after systemic kainic acid administration: relationship to convulsant activity and brain damage.

We have examined the effects of systemic kainic acid (KA) administration (9 mg/kg, i.p.) on rat behavior, brain damage, and polyamine levels and the action of the specific ornithine decarboxylase inhibitor alpha-difluoromethylornithine (DFMO) on these effects. KA elicited convulsant activity in 63% of the animals. In the acute convulsant phase (1-3 h after KA), a rapid decline (-39% at 3 h) of spermidine content in frontal cortex was found. After the acute convulsant phase, levels of hippocampal spermidine and spermine were reduced (-70 and -66%, respectively, at 8 h). A dramatic increase of putrescine content (68.1, 1,382, and 336% at 8 h, 24 h, and 9 days, respectively, after KA) was found, associated with histological signs of cortical brain damage (ischemia and necrosis). There was a close relationship between the concentration of putrescine and signs of delayed toxicity (body weight losses) 24 h and 9 days after KA. DFMO partially antagonized the convulsant activity and reduced the increased putrescine levels to approximately 50% of values in KA-treated animals at 24 h but did not change the pattern of histological damage. The role of polyamines in the early and late phases of KA-induced neurotoxicity is discussed.

Animals

Regional distribution of extracellular 5-hydroxytryptamine and 5-hydroxyindoleacetic acid in the brain of freely moving rats.

The extracellular concentrations of 5-hydroxytryptamine (5-HT) and its metabolite 5-hydroxyindoleacetic acid (5-HIAA) have been determined in six brain areas of awake rats (frontal cortex, striatum, hypothalamus, hippocampus, inferior colliculus, and raphe nuclei) using intracerebral microdialysis. The extracellular levels of 5-HT showed no significant differences among the brain regions studied. The tissue levels of 5-HT and 5-HIAA as well as the extracellular concentration of 5-HIAA were significantly higher in raphe nuclei. The regional distribution of tissue and extracellular 5-HIAA were very similar, suggesting that extracellular 5-HIAA depends mainly on the output from the intracellular compartment. On the other hand, extracellular 5-HT and tissue 5-HT showed a different distribution pattern. The tissue/extracellular ratio for 5-HT ranged from 739 in frontal cortex to 2,882 in raphe, whereas it only amounted to 1.8-3.6 for 5-HIAA. The relationship between the present results and the density of 5-HT uptake sites in these areas is discussed.

Animals

Non-specific inhibition of imipramine binding argues against an endogenous ligand.

We have attempted to characterize the product(s) inhibiting [3H]imipramine binding from rat cortical membranes. Fractions inhibiting [3H]imipramine binding were analysed by gas chromatography-mass spectrometry (GC-MS) and high performance liquid chromatography-mass spectrometry (HPLC-MS). Tissue extracts showed marked inhibitory activity (two different peaks); however, extracts containing no brain tissue (blanks) also exhibited inhibitory activity (one peak after HPLC pre-purification). The chemical composition of the compound that inhibited [3H]imipramine binding was identical in both cases (tissue and blank extracts) and consisted of zinc chelates, probably formed by the use of zinc sulfate during the extraction procedure. The second inhibitory peak in the tissue extracts was 5-hydroxytryptamine (serotonin, 5-HT). These results suggest that the inhibitory activity on [3H]imipramine binding attributed to a low-molecular weight putative endacoid is non-specific and due to ions introduced in the sample during purification.

Animals

Serotonin and 5-hydroxyindoleacetic acid in plasma. Potential use as peripheral measures of MAO-A activity.

We have explored the possibility of using measures of 5-HT (extracellular 5-HT and 5-HIAA in blood) as peripheral indexes of MAO activity. Depressed patients treated with phenelzine for 6 weeks display a dramatic increase of plasma 5-HT (270% of basal values) together with a decrease of plasma 5-HIAA. After treatment with irreversible MAO inhibitors, rat plasma 5-HIAA decreased in a similar fashion than MAO-A activity in liver, lungs and brain, measured using 5-HT as substrate. These results support the use of plasma 5-HT and 5-HIAA in humans to evaluate the action of MAOI on the serotonergic system.

Animals

Rapid non-enzymatic HPLC determination of total MHPG in human plasma.

We have previously reported a method for the determination of total 3-methoxy-4-hydroxy phenylethylene glycol (MHPG) in brain, based on a simple acid-catalyzed hydrolysis. Now we extend this procedure to the determination of plasma total MHPG. The method involves the deproteinization of plasma with perchloric acid, followed by 3 minutes of an acid-catalyzed step. The hydrolysates are injected into the HPLC system, using a formic acid/methanol eluent with fluorimetric detection. Sample detection limit is below 1 ng MHPG/mL of plasma. This procedure has been used for the determination of plasma total MHPG from 109 healthy individuals of both sexes. Mean value was: 5.4 + 2.3 ng total MHPG/mL of plasma (means +/- S.D., N = 109). No sex differences were observed, and a slight correlation with age (r = 0.24, p less than 0.02) has been found. Plasma-free MHPG was also determined in a subgroup of 15 randomly chosen individuals (3.0 +/- 1.2 ng free MHPG/mL plasma, means +/- S.D.). A significant correlation was obtained with plasma total MHPG (r = 0.77, p less than 0.001, N = 15). The main advantage of the present method lays in its simplicity, since no enzymatic hydrolysis or extraction procedures are needed, being its reliability fully proven through 109 plasma total MHPG determinations.

Chromatography, High Pressure Liquid

Relationship between serotoninergic measures in blood and cerebrospinal fluid simultaneously obtained in humans.

The relationships between the concentration of serotonin (5-HT) and related metabolites in human blood and CSF have been studied. Plasma tryptophan (TP), 5-HT, 5-hydroxyindoleacetic acid (5-HIAA), and indoleacetic acid (IAA), whole-blood 5-HT, and CSF TP, 5-HT, 5-HIAA, IAA, homovanillic acid, and 3-methoxy-4-hydroxyphenylethylene glycol were determined in 35 unmedicated outpatients who underwent minor surgical operations and had no history of psychiatric or neurological illnesses. Significant correlations were found between the serotoninergic parameters analyzed in blood and CSF. Plasma free 5-HT correlated significantly with CSF 5-HT (r = 0.411, p less than 0.02), and plasma 5-HIAA correlated with the CSF 5-HIAA/5-HT ratio (r = 0.508, p less than 0.004). The concentration of 5-HIAA in CSF correlated with the plasma 5-HIAA/5-HT ratio (r = 0.405, p less than 0.026) (which can be taken as an index of monoamine oxidase type A activity in peripheral tissues) and with the platelet 5-HT/plasma 5-HT ratio (r = 0.375, p less than 0.05). The concentrations of IAA in CSF and plasma were strongly correlated (r = 0.899, p less than 0.001). The significance of these results and their relationship to the use of "in vivo" measures of 5-HT and related metabolites in plasma and platelets as an index of serotoninergic function in affective disorders are discussed.

Humans

Increased plasma free serotonin but unchanged platelet serotonin in bipolar patients treated chronically with lithium.

The effect of lithium salts administered chronically to bipolar patients on peripheral measures of the serotoninergic system has been studied. Plasma free serotonin (5HT), whole blood 5HT, plasma 5-hydroxyindoleacetic acid (5HIAA) and plasma total tryptophan (TP) have been analyzed in 22 patients treated with lithium carbonate (mean daily dose: 1280 mg, mean serum concentration: 0.73 mmol/l) and compared to 14 healthy controls and 11 patients treated chronically with antipsychotic drugs. Lithium salts induced significant increases in plasma free 5HT (+159% with respect to control values) and in plasma 5HIAA (+39%) without affecting 5HT contained in platelets. Plasma TP was also unchanged by chronic lithium treatment. The ratio between 5HT stored in platelets and 5HT free in plasma, a variable reduced after uptake inhibitors like clomipramine, was decreased in lithium-treated patients (-50%). These results are compatible with an enhanced synthesis of 5HT in the periphery (mainly enterochromaffin cells) as well as with an inhibition of platelet 5HT uptake (or increased 5HT efflux from intracellular stores) induced by lithium. The lack of effect of several antipsychotic drugs upon these variables is consistent with their predominant effect on the dopaminergic system and reinforces the specificity of the effect observed with lithium salts. Taken together, these results support the usefulness of using this "in vivo" 5HT peripheral model for the study of the actions elicited by drugs acting on the presynaptic components of the 5HT system.

Adult