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I Gyertyán

Publications and source records attributed to I Gyertyán.

13 recordsLinked to original sources

Effects of dopamine D3 receptor antagonists on spontaneous and agonist-reduced motor activity in NMRI mice and Wistar rats: comparative study with nafadotride, U 99194A and SB 277011.

Studies investigating the role of the dopamine D3 receptor in the regulation of motor activity of rodents have used several ligands; however, there have been few comparative studies using agonist-antagonist interactions. In the present study, we compared the effects of dopamine D3 antagonists with different levels of selectivity over D2 receptors (nafadotride, U 99194A and SB 277011) on motor activity as well as on agonist-induced hypoactivity, in mice and rats. Horizontal and vertical movements were measured in photocell activity cages. 7-Hydroxy-2-(di-n-propylamino)tetralin (7-OH-DPAT) and PD 128907 were used as dopaminergic agonists. Both dose-dependently inhibited motor activity in mice and vertical activity in rats, while decreasing horizontal activity of rats at doses of 0.01 and 0.1 mg/kg s.c., with no effect (7-OH-DPAT) or stimulation (PD 128907) at the 1 mg/kg dose. In mice habituated to the activity cage, nafadotride (0.1-3 mg/kg i.p.) caused a dose-dependent decrease in motor activity but did not affect the hypomotility evoked by either 7-OH-DPAT (0.1 mg/kg) or PD 128907 (0.1 mg/kg). In habituated rats it had no significant effect on motor activity and was not able to antagonize the hypoactivity caused by PD 128907 (0.1 mg/kg s.c.). U 99194A (5, 10 and 20 mg/kg s.c.) dose-dependently and significantly increased motor activity in mice and inhibited the effects of both agonists. In rats, nafadotride produced considerable motor stimulation and significantly inhibited the PD 128907-induced decrease in horizontal, but not in vertical, activity. SB 277011 (15-45 mg/kg p.o.) significantly increased motor activity in mice and partially blocked the action of 7-OH-DPAT on vertical, but not on horizontal, activity while against PD 128907, its significant inhibitory effect was restricted to a single dose (20 mg/kg). In habituated rats, SB 277011 (13.5, 20 and 30 mg/kg p.o.) exerted no significant effects on motor activity and did not antagonize the hypoactivity caused by PD 128907. Considerable species differences and movement-type differences (horizontal versus vertical) were observed between the effects of the tested dopamine D2/D3 ligands on motor activity in rodents. The antagonists also differed markedly in the robustness of their action. The poorly D3 selective antagonist, nafadotride, had little effect on motor behaviour. The moderately selective U 99194A exerted marked stimulatory effects on motility, and potently inhibited the actions of agonists. SB 277011, a highly selective dopamine D3 receptor antagonist, showed limited ability to influence the motor activity of rodents.

Animals↗

Comparison of anticonvulsive and acute neuroprotective activity of three 2,3-benzodiazepine compounds, GYKI 52466, GYKI 53405, and GYKI 53655.

GYKI 52466 [1-(4-aminophenyl)-4-methyl-7,8-methylenedioxy-5H-2,3-benzodiazepine], a non-competitive AMPA [alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate] and kainate receptor antagonist and its two analogues, GYKI 53405 [1-(4-aminophenyl)-3-acetyl-4-methyl-3,4-dihydro-7,8-methylenedioxy-5H-2,3-benzodiazepine] and GYKI 53655 [1-(4-aminophenyl)-3-methylcarbamyl-4-methyl-3,4-dihydro-7,8-methylenedioxy-5H-2,3-benzodiazepine] were investigated in two seizure models and in MgCl2 induced global cerebral ischaemia, as an acute neuroprotective model. The ED(50) values of GYKI 52466 for suppression of the tonic and clonic phases of sound-induced seizures were 3.6 and 4.3 mg/kg, respectively. The corresponding data for GYKI 53405 were 1.1 and 3.1 mg/kg, while ED(50) values of GYKI 53655 were 1.3 and 2.0 mg/kg, respectively. The inhibition of seizure evoked by maximal electroshock was also found to be remarkable: the ED(50) values of GYKI 52466 and its two analogues were 6.9, 2.6, and 2.2 mg/kg, respectively. All compounds prolonged the survival times in MgCl2 induced global cerebral ischaemia test in a dose-dependent fashion, with PD(50) (dose of 50% prolongation) values of 24.1, 8.3, and 8.2 mg/kg intraperitoneal, respectively. In audiogenic seizure model the duration of anticonvulsant action of 10 mg/kg GYKI 52466 and 5 mg/kg GYKI 53405, GYKI 53655 were examined, too. The effect of GYKI 52466 decreased to 50% after 2 h, while the analogues showed more than 80% seizure suppression 3 h after treatment. After 6 h the effect of GYKI 53655 decreased to zero, while the effect of GYKI 52466, remained on the 50% level.

Acoustic Stimulation↗

The neuroprotective and hypothermic effect of GYKI-52466, a non-competitive alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid-antagonist on histological and behavioural variables in the gerbil global ischemia model.

The neuroprotective activity of the non-competitive alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) antagonist GYKI-52466 (1-[4-aminophenyl]-4-methyl-7,8-methylene-dioxy-5H-2,3-benzodia zep ine HCI; EGIS-8159) was studied in the gerbil bilateral carotid occlusion (BCO) model of global ischemia. Drug effect on hippocampal CA1 neuronal loss, hypermotility, and cognitive deficit (decrease in spontaneous alternation (SA) behaviour in the Y-maze) induced by 5-min or 3-min BCO were measured. GYKI-52466 was administered at 4 x 15 mg/kg intraperitoneal (i.p.) doses 30, 45, 60, and 75 min following surgery. The competitive AMPA antagonist NBQX (2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(F)-quinoxaline) applied at 3 x 30 mg/kg i.p. doses 60, 70, and 85 min after reperfusion was also tested for comparison. Both compounds showed weak and non-significant effects on 5-min BCO-induced changes in all the three variables. However, following 3-min ischemia GYKI-52466 and NBQX produced significant inhibition (49% and 48%, respectively) on CA1 cell loss. Moreover, GYKI-52466, but not NBQX, significantly inhibited the 3-min ischemia induced hypermotility and decrease in SA. At their neuroprotective doses, both compounds caused long-lasting (min. 8 h) hypothermia in gerbils. GYKI-52466 induced much higher decrease in body temperature (6 degrees C at peak level) than NBQX did (2 degrees C at peak level). Administration of 4 x 10 mg/kg i.p. chlorpromazine to gerbils 15 min before and 0, 15, and 30 min after 3-min BCO resulted in considerable hypothermia (5.5 degrees C peak effect, 8 h duration), but no protective action of the compound on CA1 cell loss and hypermotility was observed. However, chlorpromazine inhibited the ischemia-induced cognitive impairment. The results suggest that drug-induced hypothermia may differentially influence the histological and the behavioural outcomes of ischemic intervention.

Animals↗

mCPP-induced anxiety in the light-dark box in rats--a new method for screening anxiolytic activity.

The activity of anxiolytic and other drugs in a light-dark test situation was studied in rats treated with the anxiogenic compound m-chlorophenyl-piperazine (mCPP). mCPP 0.5 mg/kg significantly diminished the exploratory activity of the animals in the light compartment of the apparatus. Drugs to be tested against mCPP-induced anxiety when studied alone (not in combination with mCPP) did not significantly alter the activity of rats in the light-dark apparatus, except yohimbine, which reduced the movement time values in the lit area. 1,4-Benzodiazepines [diazepam (0.1-4mg/kg) and chlordiazepoxide (2-8mg/kg)], 5-HT2A/2C antagonists [ritanserin (0.25-8 mg/kg) and deramciclane (0.5-8 g/kg)], the 5-HT3 antagonist MDL-72222 (3 mg/kg) and ethanol (2-4 mg/kg) significantly reduced the effect of mCPP. A dose-dependent increase in the exploratory activity of mCPP-treated animals was found in the 2,3-benzodiazepine girisopam (2.5-5 mg/kg)-treated groups. Tofisopam, another 2,3-benzodiazepine molecule, also showed activity against mCPP, although its effect was not statistically significant. The 5-HT1A partial agonist buspirone was also active in the dose range of 0.25-0.5 mg/kg, while the 5-HT1A full agonist 8-OH-DPAT was the only drug with presumed anxiolytic activity that clearly lacked any effect in this model. Imipramine, amitriptyline, morphine, naloxone, haloperidol, clozapine, amphetamine, yohimbine, carbamazepine and diphenylhydantoin were not effective. We conclude that mCPP-induced anxiety in the light-dark box is a potent and useful method for screening and detecting anxiolytic activity of a wide range of compounds with various modes of action.

Animals↗

The mechanism of action of alpha 2 adrenoceptor blockers as revealed by effects on open field locomotion and escape reactions in the shuttle-box.

The precise mechanism of action of alpha 2 adrenoceptor blockers in not known, although in principle they have two main effects: (i) they stimulate the norepinephrinergic system by inhibiting the negative feed back of norepinephrine release (presynaptic effect) and (ii) they inhibit the effects of norepinephrine on postsynaptic alpha 2 adrenoceptors. We postulate that if the presynaptic actions of the antagonists prevail, the enhanced norepinephrine release leads to an activation of postsynaptic alpha 1 or beta adrenoceptors. In this case the effects of alpha 2 adrenoceptor blockers can be reversed by antagonists acting on the latter two adrenoceptors, since postsynaptic alpha 2 adrenoceptors are also blocked. If the postsynaptic blockade of alpha 2 adrenoceptors is the main cause of effects, than the blockade of alpha 1 or beta adrenoceptors should not reverse the action of alpha 2 blockers. The alpha 2 blocker idazoxan (dose 0.5-5 mg/kg) increased locomotor activity in an open field, an effect that was abolished by both alpha 1 and beta receptor blockers (prazosin and propranolol, respectively). Escape responses in a shuttle box were strongly suppressed by idazoxan (0.5-2 mg/kg). However, this effect was not changed by concomitant alpha 1 or beta receptor blockade. These results suggest that the mechanism of action of alpha 2 adrenoceptor blockers depends on which effects are studied. Exploration seems to be affected by a presynaptic mechanism as neurons bearing postsynaptic alpha 1 or beta adrenoceptors are involved in the control of this behavior, while escape reactions appear to be affected by the postsynaptic blockade of alpha 2 adrenoceptors (i.e. neurons bearing postsynaptic alpha 2 adrenoceptors are involved in its control). Thus, there is no generalized mechanism of action for alpha 2 adrenoceptor blockers; their precise mode of action should be investigated in each particular case.

Adrenergic alpha-2 Receptor Antagonists↗

Some doubts about the basic concept of hole-board test.

Hole board test is a generally used method for screening the potential anxiolytic character of drugs. The test is based on the assumption, that head-dipping activity of the animals is inversely proportional to their anxiety state. We tested this assumption by measuring the head-dipping activity of animals in environments with different levels of aversive character (illumination). The anxiolytic chlordiazepoxide significantly elevated head-dipping activity in moderately aversive environment, it was not active in non-aversive environment, and it exhibited inhibitory activity in highly aversive environment. When the latency of the first head-dip was measured, we found that the proportion of animals with short latency was significantly increased in moderately and highly aversive environments. It is concluded, that the inverse relation between anxiety state and head-dipping activity is true only in a certain range of anxiety level. In more aversive situations, when the anxiety level of the animals is high, the holes nay represent a possible way to escape from the aversive environment instead of an explorable object. In this case the relation between anxiety state and head-dipping activity is directly and not inversely proportional.

Animals↗

Possible involvement of the dopaminergic system in the mode of action of the potential antidepressant trazium esilate.

Trazium esilate (EGYT-3615) is structurally an as-triazino isoquinolinium salt which showed considerable activity in pharmacological tests characteristic for antidepressants (antagonism of tetrabenazine, potentiation of yohimbine, behavioral despair). The compound exhibited minimal sedative effect. Some findings suggest that it influences the central dopaminergic system. The drug potentiated actions of amphetamine such as stereotypy and hypermotility. It differentially blocked the hypothermic and the stereotypy inducing action of apomorphine. Trazium esilate also inhibited the cataleptic state provoked by bulbocapnine in mice. In higher dose it decreased the plasma prolactin level in rats. The compound potentiated the effect of norepinephrine on isolated vas deferens of the rat. Trazium esilate is a weak displacer on a1-, a2- and D2-receptors, however, it induced a2-receptor desenzitization after repeated treatment. It had no influence on rat brain cortical noradrenaline and striatal dopamine release evoked by high K+ concentration, but it increased the spontaneous dopamine outflow in rat striatum. The compound also elevated the striatal dopamine and DOPAC levels both after acute and chronic treatment.

Animals↗