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O Puciłowski

Publications and source records attributed to O Puciłowski.

At least 19 recordsLinked to original sources

Effects of intra-accumbens administration of dopamine agonists on stress-induced behavioural deficit.

The effect of post-footshock injections of (+)-amphetamine, the selective D2-receptor agonist quinpirole (LY 171555), and the D2-receptor antagonist metoclopramide, into the nucleus accumbens, on the formation of the open field deficit, has been studied in rats. Microinjections of (+)-amphetamine (10 micrograms) stimulated rat locomotor activity tested 5 min later, while quinpirole (10 micrograms) significantly inhibited animal motility in the test. The open field behaviour was not changed 24 h after injection of either drug. Amphetamine applied immediately after inescapable footshock did not modify stress-induced locomotor depression, when the rats' behaviour was examined 24 h later. On the other hand, post-shock injections of quinpirole significantly attenuated the long-term effects of the stressor, in the open field. Metoclopramide (10 micrograms) inhibited rat locomotor activity 5 min, but not 24 h, after local injection. Administration of a solution containing both quinpirole (10 micrograms) and metoclopramide (1 microgram) decreased motor activity of unstressed rats to a smaller degree than did quinpirole (10 micrograms) alone. Post-footshock injection of metoclopramide did not affect stress-induced hypomotility. It is concluded that the present data support the hypothesis that local depletion of brain dopaminergic stores causes some behavioural effects of stressors.

Animals↗

Effects of intra-amygdaloid TRH injections on motor activity and dominant-submissive behavior in rats competing for water.

The effect of thyrotropin releasing hormone (TRH) microinjections into the central amygdala (10 g in 0.5 1 into each side) on locomotor activity water intake and dominance behavior in a water competition test was investigated in male Wistar rats. TRH increased the general motility without altering the number of rearings. Intra-amygdaloid TRH injection to submissive rats resulted in a loss of subordinate position in these animals in the water competition test. A tendency to decrease dominance followed the injection of the peptide to the dominant animals. The effect of TRH in the dominance test does not appear to involve influence on the thirst drive as microinjection of the peptide did not change significantly the water consumption in thirsty rats.

Amygdala↗

On the relative importance of D-1 vs. D-2 dopaminergic receptors in the control of audiogenic seizures in ethanol withdrawn rats.

Bromocriptine, a mixed D-1/D-2 dopaminergic receptor agonist and SKF 38393, a D-1 specific agonist were found to alleviate the incidence and intensity of audiogenic convulsions in ethanol withdrawn rats. (+) and (-)3-PPP, putative D-2 autoreceptor agonists, were without effect in the test. SCH 23390, a D-1 specific antagonist did not influence seizure intensity in ethanol withdrawn or ethanol naive animals. It is suggested that D-1 receptors may play a role in convulsive response during ethanol withdrawal.

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

Inhibition of p-chlorophenylalanine-induced muricide behavior following TRH microinjection into the limbic structures in the rat.

The effect of central microinjections of thyrotropin releasing hormone (TRH) on muricide behavior was investigated in rats with chronically implanted cannulas into one of the limbic structures: the amygdala, the hippocampus or the nucleus accumbens. The rats were made aggressive by p-chlorophenylalanine administration. Saline injection did not inhibit muricide, whereas TRH (10 micrograms in 0.5 microliter per side) significantly suppressed mouse-killing reaction upon injection into each of three regions. It is suggested that the observed antiaggressive effect of TRH may involve stimulation of the central noradrenergic and/or serotonergic transmission.

Amygdala↗

Differential effects of chronic ethanol on apomorphine-induced locomotion, climbing and aggression in rats.

Male Wistar rats were tested for apomorphine-induced locomotion, climbing and aggression after 3 week's intragastric ethanol (EtOH) treatment, 5 g/kg as 20% solution daily. The ability of apomorphine (APO) to elicit rearing (1 mg/kg i.p.) and climbing (0.5 mg/kg i.p.) was significantly suppressed in EtOH withdrawn animals. General locomotor activity in response to 1 mg/kg of APO i.p. did not differ between control and EtOH-treated groups. Affective aggression was checked in pairs of low-aggressive rats, i.e. resistant to the aggression inducing action of 10 mg/kg APO. No symptoms of aggression appeared in control animals whereas EtOH administered rats responded with marked aggression to APO. The different effect of chronic EtOH on responsiveness to APO in three behavioral models is discussed in terms of varying involvement of dopaminergic systems and receptors in behavioral phenomena as well as their susceptibility to prolonged EtOH.

Aggression↗

Monoaminergic control of affective aggression.

The aim of the present study is to present the experimental evidence, mainly that collected over recent years by the author, in support of the involvement of the dopaminergic mesolimbic system in the mechanism of affective aggression in the rat and its interactions with other monoaminergic systems. Dopamine has been found to play an important facilitatory role in affective aggression, accomplished, at least in its essential part by the mesolimbic A10 neurons projecting into the nucleus accumbens septi (NAS). Norepinephrine inhibits this behavior, the effect being mediated by the locus coeruleus ascending neurons reaching NAS and the amygdala (AMY), and involving activation of alpha 1 adrenoceptors. Also serotonergic effects on affective aggression are of inhibitory nature. They are conveyed by the neurons of the dorsal raphe, but not of the median raphe, projecting into the AMY. The NAS does not play any important part in the serotonergic control of aggression. There appears to exist a reciprocal interaction between these three monoaminergic systems in respect to their modulatory function in affective aggression. The significance of these findings for diagnosis, treatment and prevention of violent behavior in the clinic is discussed.

Aggression↗

Effect of 6-OHDA injected into the locus coeruleus on apomorphine-induced aggression.

Bilateral microinjections of 6-hydroxydopamine (6-OHDA) into the nuclei loci coerulei (LC) of male Wistar rats resulted in significant depletion of mesencephalic and striatal norepinephrine, accompanied by a small reduction in dopamine content only in the striatum. Apomorphine (2.5 mg/kg IP) induced marked aggression consisting of prolonged posturing, vocalization and attacks only in 6-OHDA lesioned animals. Biochemical analysis revealed that 6-OHDA antagonized the ability of apomorphine to raise the serotonin concentration in the striatum. It is concluded that the LC neurons play an inhibitory role in apomorphine-induced aggressiveness and the involvement of serotonergic neurons is suggested.

Aggression↗

Suppression of ethanol tolerance and dependence in rats treated with DSP-4, a noradrenergic neurotoxin.

The formation of tolerance to the hypothermic effect of ethanol was inhibited in rats after intraperitoneal injection of the neurotoxin DSP-4 50 mg/kg. The neurotoxin also significantly suppressed the ethanol withdrawal syndrome; hyperlocomotion, audiogenic seizures and spasticity. These behavioural changes were accompanied by a 52% decrease of the brain norepinephrine (NE) content, with no alterations in the dopamine or serotonin levels. The results indicate that intact NE neurons are necessary for the development of tolerance to ethanol-induced hypothermia and are involved in the expression of the ethanol withdrawal syndrome.

Alcoholism↗

Evidence of norepinephrine-mediated suppression of para-chlorophenylalanine-induced muricidal behavior.

Rats were made aggressive (muricide behavior) by p-chlorophenylalanine (p-CPA) treatment. The aggressive behavior was inhibited by the electrical stimulation of the locus coeruleus (LC) or by the administration of yohimbine (20 mg/kg i.p.). Both types of inhibition were blocked by the administration of low doses of clonidine (0.15 mg/kg i.p.). These results suggest the involvement of the adrenergic system in modulating muricidal behavior induced by p-CPA.

Aggression↗

Aggressive behavior inhibition by serotonin and quipazine injected into the amygdala in the rat.

The effects on aggressive behavior, open-field activity, and pain threshold of bilateral microinjections of serotonin (20 micrograms) and quipazine (20 micrograms), the direct serotonergic receptor agonist, into the cortico-medial amygdala were investigated in Wistar rats. Both drugs significantly prolonged the attack latency in isolated killer rats (predatory aggression model), and suppressed the incidence of aggressive postures/attacks in shock-induced fighting test (affective aggression). The only difference in the open-field behavior was the lower number of central square entries in drug-treated compared to saline-injected rats. None of the substances produced any significant change in jump threshold. It is concluded that stimulation of serotonin receptors within the amygdala produces inhibition of affective and muricidal behavior in isolated rats. The effect does not seem to be dependent on changes in general activity and pain sensitivity.

Aggression↗

Behavioral studies in spontaneously hypertensive rats.

In the present study we examined some behavioral patterns in spontaneously hypertensive (SHR) male rats as compared with Wistar (W) rats. The following methods were employed: open field test, two-way active avoidance, passive avoidance, shock-induced fighting, shock-induced suppression of drinking (conflict test), and dominant-subordinate behavior in rats competing for water. Spontaneously hypertensive rats showed higher level of locomotor activity, lower emotionality, lower anxiety level, increased acquisition of avoidance tasks, and enhanced dominance behavior. In addition, hypertensive rats were less aggressive in shock-induced fighting test. It is concluded, that spontaneously hypertensive rats seem to be hyperactive in terms of locomotor activity while their emotionality appears to be paradoxically reduced.

Aggression↗