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A Plaznik

Publications and source records attributed to A Plaznik.

At least 19 recordsLinked to original sources

Pentylenetetrazol-kindling of seizures selectively decreases [3H]-citalopram binding in the CA-3 area of rat hippocampus.

The present study was aimed at determining the changes in the 5-HT transporter activity, in different brain structures after pentylenetetrazol induced kindling of seizures. We examined [3H]-citalopram binding in the rat brain structures, and the neurodegenerative effects in the hippocampal formation using autoradiographic and immunohistochemical methods. A statistically significant and selective reduction in the binding of [3H]-citalopram was found in the CA3 field of the hippocampus (P=0.009), and a similar tendency, close to the significance level, in the dentate gyrus (P=0.05). This effect was accompanied by a loss of neurons and activation of microglia in the hippocampal formation. The present data suggest the important role for CA3- serotonergic innervation in pentylenetetrazol induced kindling of seizures.

Animals↗

Anxiolytic activity of glycine-B antagonists and partial agonists--no relation to intrinsic activity in the patch clamp.

On the basis of animal models, anxiety was one of the first suggested clinical applications of partial agonists of the glycineB site coupled to the NMDA receptor. It is not certain, however, whether these findings can be extended to full glycineB antagonists and what is the relation between intrinsic activity (degree of NMDA receptor antagonism) and anxiolytic effect. In the present study several NMDA receptor antagonists, including several glycineB antagonists/partial agonists, were tested for anxiolytic activity in the Vogel conflict test and the elevated plus-maze. Additionally, the intrinsic activities of the glycineB partial agonists used [ACPC, (R,+)-HA-966 and D-cycloserine] were compared in patch-clamp experiments in cultured neurones. In the plus-maze the most striking increase in the time spent in open arms (index of anxiolytic effect) was seen after diazepam and D-cycloserine (at doses that did not change locomotion). Also reliable (dose-dependent), although weaker, anxiolytic activity was produced by the uncompetitive NMDA receptor antagonist (+)MK-801 and the competitive antagonist CGP 39551. Modest anxiolytic-like effect in the plus-maze was also observed after the glycineB antagonist L-701,324 and the partial agonist (+,R)-HA-966. Uncompetitive antagonists memantine and amantadine, the glycineB partial agonist ACPC (up to 600 mg/kg) or the full antagonists MRZ 2/570, MRZ 2/571 and MRZ 2/576 had no effect. In the Vogel conflict test neither memantine, nor any of the full glycineB antagonists tested (L-701,324 and MRZ 2/576), showed anxiolytic activity. Patch-clamp studies revealed that the intrinsic activity of (+,R)-HA-966, D-cycloserine and ACPC was 13, 57 and 92%, respectively, as compared to that of glycine itself (100%). In conclusion, for the agents tested there is no clear relation between the levels of intrinsic activity, i.e. degree of NMDA receptor inhibition, and anxiolytic activity. Moreover, L-701,324 and MRZ-type glycineB full antagonists do not exchibit anxiolytic activity in the elevated plus-maze and Vogel conflict test.

Animals↗

The effects of repeated administration of diazepam, MK-801 and CGP 37849 on rat behavior in two models of anxiety.

The effects of repeated administration of diazepam, MK-801 and CGP 37849 on rat behavior in the Vogel conflict test, and in the open field test of neophobia, were studied in rats. The drugs were given at doses active acutely, for 5 days, the last dose was administered 30 or 60 min prior to testing. It appeared that diazepam and MK-801 treated animals showed clear-cut signs of behavioral tolerance and motor sensitization, respectively. CGP 37849 was characterized by the best pharmacological profile, in that on repeated administration the drug not only retained its anxiolytic-like potency in the Vogel test, but even enhanced rat exploratory behavior in a new environment, independently of changes in animal motor activity. Repeated injections of the examined agents did not cause any significant modifications in monoamine levels and their turnover rates, in the striatum and limbic forebrain. It is concluded that the new class of competitive NMDA receptor antagonists, exemplified by CGP 37849, is the most promising candidate for clinical trials in anxiety disorders.

2-Amino-5-phosphonovalerate↗

Central serotonergic system and mechanism of anxiolytic action.

The results clearly indicate that the hippocampus, rather than nucleus accumbens is involved in mediating anxiolytic-like effects of the 5-HT1A receptor agonists. Furthermore, hippocampal postsynaptic 5-HT1A receptors may account for the anti-emotional influence of this groups of drugs. As far as the 5-HT3 receptor antagonists are concerned, it was more difficult to localize their central anti-anxiety like action. More clear and unequirocal effects could be observed after intra-accumbens, rather than after intrahippocampal injections of tropisetron and ondansetron.

Animals↗

The effect of serotonin depletion and intra-hippocampal midazolam on rat behavior in the Vogel conflict test.

The effect of intra-hippocampal (dentate gyrus) microinjections of the benzodiazepine, midazolam (10 micrograms per site, bilaterally), was examined in the Vogel conflict test in serotonin depleted rats (pretreated with p-chlorophenylalanine). p-Chlorophenylalanine and midazolam, when given separately, significantly disinhibited rat conflict behavior. Midazolam retained its anticonflict potency in the p-chlorophenylalanine pretreated animals. These and other data indicate: (i) the specific involvement of limbic serotonin in emotional control, (ii) a dissociation of the effects of serotonin depletion and intra-hippocampal benzodiazepine on conflict behavior, and (iii) the important role of the hippocampus in processing emotional input.

Animals↗

Antidepressant treatment and limbic serotonergic mechanisms regulating rat locomotor activity.

The effects of chronic administration of desipramine, citalopram, and electroconvulsive shocks (ECS) on changes in rat motility after intraaccumbens (NAS) injections of selective serotonergic drugs were studied in intact and 5.7-DHT lesioned animals. It was shown that local injections of 8-OHDPAT and DOI-HCl depressed rat locomotor activity. Their effects appeared to be mediated postsynaptically, and could be antagonized by NAN-190 and ritanserin, respectively. Chronic but not acute pretreatment of rats with antidepressants (21 days long; the experiment was performed 24 h after the last dose) as well as repeated ECS (shocks were applied five times every second day), antagonized behavioral depression after 8-OHDPAT and DOI-HCl. The influence of antidepressant treatment was prevented by serotonergic lesions. Chronic administration of antidepressants and ECS did not equivocally affect the levels or metabolism of 5-HT, dopamine, and noradrenaline in the rat limbic forebrain. It is concluded that the present data indicate diminished activity of 5-HT systems related to the 5-HT1A and 5-HT2 receptors in the limbic nucleus, after chronic antidepressant treatment. This effect of drugs and ECS concerns nervous processes linked with the function of postsynaptically localized 5-HT receptor subtypes, and it probably depends on intact presynaptic 5-HT innervation.

5,7-Dihydroxytryptamine↗

Effects of antagonists at the NMDA receptor complex in two models of anxiety.

The effects of an antagonist at the strychnine insensitive glycine site (5,7-dichlorokynurenic acid, i.c.v.), and of noncompetitive (MK-801, i.p.) and competitive (CGP 37849, i.p.; CGP 39551, i.p.; AP-7, i.c.v.) NMDA antagonists were compared with diazepam (i.p.) in two animal models of anxiety (the open field exploratory behavior of non-habituated rats, and the Vogel conflict test). All drugs when applied in appropriate doses increased punished drinking in the Vogel test, without producing any significant changes in free drinking and the stimulus threshold at their lowest anticonflict doses. The effective doses were as follows: diazepam 1.5 and 2.5 mg/kg; MK-801 0.005 and 0.01 mg/kg; CGP 39551 5.0 and 20.0 mg/kg; CGP 37849 1.0 and 2.5 mg/kg; 5,7-dichlorokynurenic acid 5.0 microgram (i.c.v.); AP-7 0.5 microgram (i.c.v.). In the open field diazepam (0.05 mg/kg), MK-801 (0.1 mg/kg), CGP 37849 (0.01, 0.1, 1.0 mg/kg), and AP-7 2.5 micrograms (i.c.v.) significantly increased exploratory activity in the central sectors of the open field (anti-neophobic reaction), without changing motor activity of the rat. MK-801 at the highest tested dose of 0.2 mg/kg significantly stimulated animal locomotor activity. CGP 37849 in the largest dose examined (10 mg/kg) significantly depressed the motor behavior of rats. Overall, it appeared that different NMDA antagonists showed an anxiolytic-like profile, similar to that of the benzodiazepine diazepam. Among different NMDA receptor complex antagonists studied, CGP 37849 was characterized by the largest distinction between the doses showing an anxiolytic-like action in the open field test, and changing rat motor behavior.

2-Amino-5-phosphonovalerate↗

Effects of D1 and D2 agonists on spontaneous motor activity in MPTP treated mice.

Two experiment were performed to study the effect of combining bromocriptine with SKF 38393 (SKF), or vice/versa, upon parameters of spontaneous motor activity in MPTP treated and saline (control) treated mice. Treatment with MPTP (2 x 40 mg/kg, subcutaneously) induced a hypoactive condition compared with saline treated mice. Bromocriptine (10 mg/kg, subcutaneously), administered to MPTP mice 2 hr, but not 1 or 4 hr, after SKF (6 mg/kg, subcutaneously) caused a marked increase in locomotion and rearing behaviour. The administration of bromocriptine (10 mg/kg, subcutaneously) 4 hr before SKF (6 mg/kg, subcutaneously) elevated all three parameters of spontaneous activity in the MPTP treated mice, independent of the injection of SKF. Bromocriptine injection 1 or 2 hr before SKF decreased locomotion in both MPTP and control mice. Neurochemical analysis confirmed the dopamine depletion in the MPTP treated mice. These results are discussed in terms of the reliability of the MPTP model of parkinsonism in mice and the dopamine D1/D2 receptor hypersensitivity following denervation with the neurotoxin.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Myorelaxant effect of baclofen injected to the nucleus accumbens septi.

The GABAergic modulation in the nucleus accumbens septi (NAS) of muscle tone was investigated in rats using behavioral tests. The GABAB receptor agonist baclofen dose-dependently decreased muscle tone in the wire-mesh and bar holding tests both after local injection into the NAS (1.0 and 2.5 micrograms), and after intraperitoneal administration in a dose of 20 mg/kg. In the Wirth's test haloperidol (5 mg/kg i.p.), produced catalepsy, whereas baclofen (20 mg/kg, i.p.) significantly deteriorated rats' performance. Intraaccumbens microinjections of muscimol, midazolam, nicardipine, as well as peripheral injections of haloperidol and midazolam failed to modify muscle tone in the wire-mesh test. These findings argue against the involvement of GABAA receptors, benzodiazepine receptors, as well as dopaminergic- and calcium channel-related mechanisms in the effect of baclofen. Hence, the muscle relaxant effect of baclofen seems to be also mediated through GABAB receptor sites within the NAS.

Animals↗

MPTP-induced hypoactivity in mice: reversal by L-dopa.

Three experiments were performed to study the subchronic effects of treatment with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP, 2 x 40 mg/kg subcutaneously two weeks before testing) in C57 BL/6 mice upon spontaneous motor activity and the reversal of the long-term behavioural changes by acute treatment with L-Dopa. Mice treated with MPTP showed a drastic reduction of striatal dopamine levels (-88%) associated with reductions of all three parameters of spontaneous motor activity, i.e. locomotion, rearing and total activity, during both the initial, exploratory, stage (first 90 min), and later stages of the 3- or 4-hr test periods. L-Dopa (5-80 mg/kg subcutaneously) injected 60 min. after the start of testing dose-dependently improved all three parameters studied in MPTP treated mice with 10 mg/kg being the lowest dose causing a significant effect, while doses above 20 mg/kg caused hyperactivity. During the initial period, rearing activity in MPTP mice was to a variable degree suppressed by the L-Dopa treatment (20-80 mg/kg); these reductions were followed by enormous increases in motor activity by the 40 mg/kg (locomotion) and 80 mg/kg (total activity) L-Dopa groups. Both the degree and duration of the L-Dopa-induced hypoactivity for locomotor behaviour increased dose-dependently in control mice. No suppressive effects of L-Dopa were obtained for total activity in control mice, although the 80 mg/kg L-Dopa doses evoked hyperactivity for up to 90 min. following treatment for both locomotion and total activity.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Interaction between accumbens D1 and D2 receptors regulating rat locomotor activity.

The effect of intra-accumbens injections of various dopaminergic agonists and antagonists on the rat locomotor activity has been evaluated in automated open fields. Locomotor stimulation has been observed after local administration of d-amphetamine (10 micrograms), apomorphine (10 micrograms), as well as of solution containing the D1 agonist SKF 38 393 and D2 receptor agonist LY 171 555 (quinpirole) in doses (10 and 4 micrograms, respectively) which were inactive when both drugs were administered separately. On the other hand separate injections of metoclopramide (0.1 microgram) and SCH 23 390 (0.5 microgram) (D2 and D1 receptor antagonists) very potently inhibited animals' locomotor activity. The data indicate that concomitant stimulation of both accumbens D1- and D2-receptor related mechanisms is a necessary condition to increase rat motility. Moreover, it seems that accumbens D1 receptors may be differently involved in the control of facilitatory versus inhibitory motor processes.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Serotonin and depression: old problems and new data.

1. Several lines of evidence implicating some dysfunction or alteration to brain serotonergic systems in depressive states are summarized. 2. Some aspects of the interactions between the 5-HT and catecholamine pathways in the action of antidepressant drugs are examined. 3. Finally, the important role of NA modulation of serotonergic activity in the action of antidepressants is suggested.

Animals↗

The role of brain serotonin in the electroconvulsive shock-induced changes in behavioural effects of intra-hippocampally injected clonidine.

The influence of central serotonin depletion upon behavioural effects of intra-hippocampally injected clonidine in the electroconvulsive shock-treated rats (ECS), was studied. Repeated ECS significantly attenuated the depressive influence of clonidine upon the locomotor activity of the rats in the open field test. Chemical lesions to the median raphe nucleus (MR) did not significantly affect ECS-induced changes in clonidine activity in this test. In the forced swimming the MR lesions revealed the stimulatory potency of clonidine microinjections upon rat active behaviour. In animals pretreated with repeated ECS, clonidine also significantly potentiated swimming activity, but no evident synergism of ECS and MR lesion could be observed. Taking into account these and other data it is concluded that central serotonin depletion might differentially affect the adaptive processes occurring in the alpha 2-adrenoceptors in the course of treatment with tricyclic antidepressants and ECS, but it does not seem to be a strong phenomenon. Moreover, it is suggested that clonidine effects in the open field and forced swimming tests may be mediated by different neuronal substrates within the rat hippocampus.

Animals↗

Comparison of desipramine, amitriptyline, zimeldine and alaproclate in six animal models used to investigate antidepressant drugs.

In the present paper the acute actions primarily of the tricyclic antidepressants amitriptyline and desipramine, the atypical antidepressant zimeldine and the potential antidepressant alaproclate were evaluated in six models used for studying antidepressant agents. These included the forced swim test, a modified learned helplessness procedure, the clonidine hypothermia test, the social dominance test (using the interaction with clonidine), a differential-reinforcement-of-low-rates (DRL-72s) schedule and conditioned avoidance response. The results showed desipramine to be effective in all the tests employed. Zimeldine was effective in the learned helplessness, DRL-72s and domination tests, but also caused notable deficits in two-way active avoidance response. Alaproclate was effective in all the tests except the domination paradigm. Amitriptyline was effective in all tests employed. The results are discussed in relation to the possible mechanism of action of these compounds in the test models employed.

Alanine↗

The effects of antidepressants and electroconvulsive shocks on the functioning of the mesolimbic dopaminergic system: a behavioral study.

The mesolimbic dopaminergic innervation is supposed to be involved in the mechanisms of central effects exerted by various classes of psychotropic drugs. Antidepressants have been found to interact with the brain dopaminergic system as well, although the precise central location of this interaction is unknown. Some data point to the mesolimbic dopaminergic system as a possible target for antidepressant action. The aim of the present experiment was to verify this hypothesis. It was found that a long-term treatment of rats with desipramine, citalopram or electroconvulsive shocks potentiated the dopaminergic mechanisms within the nucleus accumbens, as evidenced by an increase in or the appearance of behavioral effects (exploratory locomotion, an active behavior in the Porsolt test) following microinjections of dopaminergic agonists into this brain area. Similar results obtained with different methods of treatment for depression indicate that the effect of antidepressants and electroshocks on dopaminergic mechanisms within the nucleus accumbens may be linked directly to the mechanism of their antidepressant action.

Animals↗

Chronic treatment with antidepressant drugs and ECT differentially modifies the hypothermic action of clonidine and guanfacine.

The hypothermia inducing action of clonidine and guanfacine was abolished by yohimbine and idazoxan pretreatment which suggests an alpha 2-adrenoceptor involvement in this effect. The effects of acute and chronic treatment with the antidepressant drugs desipramine (DMI), amitriptyline (AMI), maprotiline (MAP), mianserin (MIAN), iprindol (IPR), alaproclate (ALA) and electroconvulsive treatment (ECT) on the hypothermic action of the alpha 2-adrenoceptor agonists clonidine and guanfacine were studied. Acute administration of MIAN potentiated clonidine induced hypothermia whereas acute MIAN, IPR and ALA potentiated guanfacine induced hypothermia. Repetitive DMI, AMI and MAP treatment attenuated clonidine-induced hypothermia whereas guanfacine-induced hypothermia was potentiated by chronic treatment with DMI, AMI, MAP and MIAN, ECT applied without anaesthesia attenuated both clonidine and guanfacine hypothermia, however, under ethyl ether anaesthesia ECT was effective only towards guanfacine hypothermia. This discrepancy is discussed in terms of the relative selectivity of the agonists used, the reliability of agonist studies for indexing receptor function, and possible pharmacokinetic interaction.

Animals↗

The effect of opiate treatment on the postdecapitation reflex and monoamine metabolism in the rat spinal cord.

Post-decapitation seizures (PDR) are a spinal reflex which seems regulated by some monoaminergic neurons present in the spinal cord (S.C.). In order to better characterize the role of dopaminergic neurons in PDR, we studied the effect of treatment with opiates, which are known to increase dopamine (DA) and serotonin (5HT) metabolism in the brain, on the duration of PDR and on the metabolism of DA and 5HT in S.C. Morphine, given either IP or ICV, reduced the duration of PDR and increased DA metabolism. Both effects were more evident after systemic administration. [D-Ala2]Met5 enkephalin amide acted similarly to ICV administered morphine. Biochemical and behavioral effects were significantly correlated.

Animals↗

Lesion of serotonergic neurons antagonizes clonidine induced suppression of avoidance behavior and locomotor activity in rats.

The effects of clonidine on avoidance acquisition and locomotor activity were studied in male Wistar rats with 5,6-dihydroxytryptamine (5,6-DHT) lesions of the median raphe nucleus. Lesioned animals showed marked depletion in forebrain serotonin and 5-hydroxyindole acetic acid concentrations. clonidine (0.2 mg/kg IP in a single daily dose for 6 consecutive days) inhibited avoidance acquisition and reduced locomotor activity in unlesioned rats. In 5,6-DHT rats clonidine failed to produce depressive effect. The resistance of raphe-lesioned rats to clonidine is discussed on the basis of possible interaction between noradrenergic and serotonergic brain systems.

5,6-Dihydroxytryptamine↗