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[The pre- and postsynaptic mechanisms of the involvement of the serotonin of the amygdaloid body in the reproduction of the conditioned passive avoidance reaction in rats].

Serotonin (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) content, MAO activity, and [3H]-5-HT specific binding were examined in rat amygdala at different stages of one-trial passive avoidance training. Serotonergic changes were revealed only at the stage of the avoidance recall. The [3H]-5-HT specific binding was decreased, MAO activity was increased and accompanied by enhanced 5-HIAA transport from serotonergic terminals. No changes were revealed in 5-HT content. It is suggested that the retrieval processes in passive avoidance learning are mediated by serotonergic system of the amygdala.

Amygdala↗

Effect of nicotine on cognitive disturbance in animals with acetylcholine deficient brain.

The effect of nicotine on learning disturbance was tested in rats fed with a choline-deficient diet (Ch free) or in senescence-accelerated mice (SAM). Concentration of acetylcholine in the brain was significantly lower in rats fed with Ch free and SAM. Passive avoidance learning shows that rats fed with Ch free and SAM showed significantly impaired learning, compared to controls. Nicotine (0.04 mg/kg) administered intraperitonealy significantly improved learning in animals with learning disturbances, as well as in controls. Vitamin B12 facilitated acetylcholine synthesis or release in the brain and improved the cognitive disturbance. We therefore suggest that acetylcholine contributes to learning and that nicotine may improve learning in an acetylcholine deprived rats.

Acetylcholine↗

The role of dietary fat in alcohol's prenatal effects.

Pregnant rats were fed a control diet or high saturated fat diet (lard) for 6 weeks prior to breeding and continued to consume these diets during pregnancy. Beginning on gestation day 8, rats in each diet group were intubated with 5.5 or 0 g/kg alcohol. Rats in the 0 g/kg group were pair-fed to those in their respective 5.5 g/kg groups. Offspring were weighed at birth. On postnatal days 18 and 20, they were tested for passive avoidance learning and locomotor activity, respectively. Animals prenatally exposed to alcohol weighed less at birth and at weaning time (21 days of age) and required more trials to reach criterion in the passive avoidance test but did not differ in activity. Diet did not affect any of these measures significantly nor were there any significant interactions. We conclude that high saturated fat from lard does not influence alcohol's prenatal effects.

Animals↗

Further evidence for the involvement of a hippocampal cGMP/cGMP-dependent protein kinase cascade in memory consolidation.

Hippocampal cyclic GMP (cGMP) has been recently postulated to participate in an early phase of memory consolidation of an inhibitory avoidance learning in rats. Here we report on the effects of the intrahippocampal infusion of a soluble guanylyl cyclase inhibitor (LY 83583) in the consolidation of one-trial step-down inhibitory avoidance and on the effect of this task on hippocampal cGMP levels and cGMP-dependent protein kinase (PKG) activity. Bilateral intrahippocampal administration of LY 83583 (2.5 micrograms per side) caused full amnesia for inhibitory avoidance when given immediately (0 min) after training, but not 30 min post-training. Rats submitted to the inhibitory avoidance task showed a significant increase in both cGMP levels and in PKG activity in the hippocampus at 0 min after training. No changes were observed 30 min after training. These findings provide further evidence that the hippocampal cGMP/PKG cascade is involved in the early stages of memory formation of an inhibitory avoidance task in rats.

Aminoquinolines↗

Effects of stress and of amphetamine on passive avoidance conditioning in rats.

This study examined the effects of immobilization stress combined with water immersion (ICS) and/or amphetamine (AM) on different memory phases in the passive avoidance task in rats. The performance of rats was evaluated in the retention tests 24 and 48 h after a single acquisition trial. ICS exposure lasting 1 h impaired retention of the learned avoidance response if applied 2 to 4 h before or immediately after training. The stressor did not affect retrieval if presented 5 or 2 h before the retention test. AM was used i.p. at the dose of 8 or 1 mg/kg. Neither 8 mg AM administered 4 h before nor 8 or 1 mg doses given after training did not impair the retention performance in unstressed rats. The 1 mg AM prevented the impairment of retention in animals exposed to the stressor 3 or 4 h before training but had no effect when the stronger impairment was induced by ICS 2 h before training. However, when given 1 h before retention testing, 1 mg AM attenuated even the severe impairment induced by the pre-training stressor exposure. Our results suggest that ICS impairs primarily the early phase of memory consolidation and a low dose of AM can prevent this effect.

Amphetamines↗

Selective enhancement of emotional, but not motor, learning in monoamine oxidase A-deficient mice.

Mice deficient in monoamine oxidase A (MAOA), an enzyme that metabolizes monoamines such as norepinephrine and serotonin, have elevated norepinephrine and serotonin levels in the frontal cortex, hippocampus, and cerebellum, compared with normal wild-type mice. Since monoamines in these areas are critically involved in a variety of behaviors, we examined learning and memory (using emotional and motor tasks) in MAOA mutant mice. The MAOA-deficient mice exhibited significantly enhanced classical fear conditioning (freezing to both tone and contextual stimuli) and step-down inhibitory avoidance learning. In contrast, eyeblink conditioning was normal in these mutant mice. The female MAOA-deficient mice also displayed normal species-typical maternal behaviors (nesting, nursing, and pup retrieval). These results suggest that chronic elevations of monoamines, due to a deletion of the gene encoding MAOA, lead to selective alterations in emotional behavior.

Animals↗

Passive avoidance response in mice infected with Schistosoma mansoni.

Schistosomiasis is a parasitic disease of humans and rodents affecting more than 200 million people worldwide. Following the onset of infection, the worms induce granulomas around schistosome eggs in the liver, intestine and central nervous system (both brain and spinal cord), which are likely to cause changes in cognitive functions. In the present study, CD-1 female mice were percutaneously infected with 60 cercariae of Schistosoma mansoni and the effect on the mice's cognitive abilities were assessed by using the passive avoidance learning paradigm both in an early and a late phase of infection (independent groups). The results of the study show that infected animals without brain granulomas (early phase) had impairments in their passive avoidance response, whereas mice with brain granulomas (late phase) behaved as uninfected ones. Moreover, a decreased propensity to start exploration was observed in mice with granulomas in the brain. The results suggest that the murine model of infection may be a useful tool for studying human neuroschistosomiasis.

Animals↗

[The contribution of presynaptic dopaminergic receptors to the mechanism of the reactivating influences of blockade of the GABA-benzodiazepine-ionophor complex].

The changes in reactivating efficiency of the GABA-benzodiazepine-ionophore complex blockade were examined in mice after preliminary activation or inhibition of dopamine autoreceptors by (+)3PPP (2 mg/kg) and haloperidol (0.01 mg/kg). The passive avoidance learning task and amnesia produced by detention of a mouse in the dangerous compartment were used. The pretest injections of bicuculline (1 mg/kg), picrotoxin (1 mg/kg), and flumazenil (10 mg/kg) recovered the passive avoidance response in mice injected with saline before training. Pretreatment with the dopamine autoreceptor agonist and antagonist prevented from the recovery of amnestic memory trace induced by blockade of GABA-benzodiazepine-ionophore complex components. The results imply the involvement of dopamine/GABA-dependent mechanism in the modulation of memory trace retrieval.

Animals↗

Enhanced conditioned inhibitory avoidance by a combined extract of Zingiber officinale and Ginkgo biloba.

Previous work has shown that intragastric administration of Zingicomb, a preparation consisting of Zingiber officinale and Ginkgo biloba extracts, has anxiolytic-like properties. The aim of the present study was to assess the effects of acute treatment with this preparation on inhibitory avoidance learning. The influence of pre-trial administered Zingicomb (ZC) on inhibitory avoidance conditioning was investigated in adult male Wistar rats, with a one-trial step-through avoidance task. The animals were treated intragastrically with either vehicle, 0.5, 1, 10 or 100 mg/kg ZC 60 min prior to the acquisition trial. When tested 24 h after training, rats which had received 10 mg/kg ZC exhibited significantly longer step-through latencies than vehicle treated animals. This result, thus, demonstrates the beneficial effects of Zingicomb on conditioned inhibitory avoidance. Unlike conventional anxiolytic drugs, such as the benzodiazepines, which tend to have amnesic properties, this phytopharmacon is a potent anxiolytic agent which, additionally, can facilitate performance on a learning task, indicating promising clinical applications.

Administration, Oral↗

Mnemogenic effects of injecting RA-octil, a CE-inhibitor derivate, systemically or into the basal forebrain.

The aim of this study was to investigate the effects of systemically or intracerebrally administered RA-octil, a derivative of the angiotensin converting enzyme (CE)-inhibitor ramipril, on memory and reinforcement and to compare its effectiveness with that of the neurokinin substance P (SP). In the first experiment systemic post-trial application of RA-octil and SP in the rat enhanced habituation, a learning task which does not require motivational treatments. Unlike SP, injection of RA-octil did not have reinforcing effects as measured with a conditioned place preference task. In the second experiment, a facilitation of inhibitory avoidance learning was obtained by injection of RA-octil or SP unilaterally into the basal forebrain immediately after the learning trial. In contrast, a 5 h delayed injection of RA-octil had no effects on learning. The results demonstrate memory-enhancing effects of RA-octil after systemic application as well as after injection into the basal forebrain. Furthermore, the mnemogenic effects of SP after central and peripheral administration were confirmed. Since RA-octil, although being structurally closely related to CE-inhibitors, does not affect plasma CE, yet exhibits mnemogenic effects, it is possible that "cognition-enhancing" actions of CE-inhibitors are dissociable from their action within the renin-angiotensin system.

Angiotensin-Converting Enzyme Inhibitors↗

Time-dependent deficits in delay conditioning produced by trimethyltin.

Trimethyltin (TMT) produces behavioral and cognitive deficits resulting, in part, from limbic system toxicity. To determine whether these effects result from learning deficits or accelerated memory loss, the present experiment examined two delay conditioning paradigms in rats previously treated with either saline or TMT. Saline-treated Long-Evans rats receiving injections of lithium after consuming saccharin-flavored water later avoided saccharin ingestion: the degree of avoidance varied inversely with the time (0.5, 3 or 6 h) separating initial saccharin availability and lithium injection. Rats treated with TMT (8 mg/kg IV, 30 days prior) showed impaired conditioning at the long but not the short or intermediate delay conditions, suggesting that the deficits were mnemonic and not associative. Similar delay-dependent deficits in rats treated with TMT were observed in a passive avoidance task that arranged one of two delays between response emission and shock delivery during training. The effects of TMT on delay conditioning were accompanied by reduced bodyweight and hippocampal pathology. In summary, TMT appears to alter the temporally dependent association of events (entering darkened compartment versus saccharin consumption) and consequences (foot shock versus lithium administration) during acquisition. Furthermore, the observed deficits in delay conditioning produced by TMT did not appear to be task specific, with similar effects determined with tests of both somatosensory and gustatory avoidance learning designed to distinguish between functional alterations due to deficits in memorial processes from those due to altered sensory, motor, or associative processes.

Animals↗

Learning deficits induced by sleep deprivation and recovery are not associated with altered [(3)H]muscimol and [(3)H]flunitrazepam binding.

Several studies have shown that sleep deprivation produces deficits in learning tasks, but mechanisms underlying these effects remain unclear. Other lines of evidence indicate an involvement of brain GABA systems in cognitive processes. Here, we investigated the possibility that alterations in GABA(A) or benzodiazepine (BDZ) receptor binding might underlie avoidance deficits induced by sleep deprivation. Rats were deprived of sleep for 96 h using the platform method and then trained in a step-through inhibitory avoidance task, or allowed to recover sleep for 24 h before training (sleep rebound group). Thirty minutes after training, animals were given a retention test. Both sleep-deprived and sleep-recovered animals showed a significant impairment in avoidance responding compared to cage controls, and the sleep-deprived group performed significant worse than the sleep-recovered group. A separate group of animals was sacrificed either immediately after 96 h of sleep deprivation or after 96 h of sleep deprivation followed by 24 h of sleep recovery. [(3)H]muscimol and [(3)H]flunitrazepam binding were examined by quantitative autoradiography in 42 brain regions, including areas involved in cognitive processes. No significant differences among groups were found in any brain region, except for a reduction in [(3)H]flunitrazepam binding in the frontal cortex of sleep-recovered animals. These results confirm the deleterious effects of sleep loss on inhibitory avoidance learning, but suggest that such deficits cannot be attributed to altered GABA(A) or BDZ binding in brain.

Animals↗

Ontogeny of defensive reactions in Norway rats.

Young rats of several ages were presented with stimuli (a caged domestic cat, a footshock, and a suddenly moving object) known to be aversive to adults and disruptive of behavior in mature animals. Twenty-day-old rats were relatively unaffected by these events, while rats aged 30 days and older tended to reduce their locomotion and freeze upon the presentation of these cues. These data are consistent with Bolles' hypothesis that shock-elicited responses are innate defensive reactions. We also suggest that the inefficient passive avoidance learning in juvenile rats may result from their deficit in shock-induced freezing.

Age Factors↗

Pavlovian conditioning: a functional perspective.

From a functional perspective, Pavlovian conditioning involves learning about conditioned stimuli (CSs) that have a pre-existing relation to an unconditioned stimulus (US) rather than learning about arbitrary or neutral CSs. In addition, the most important product of learning involves changes in how the organism responds to the US, not in how it responds to the CS, because the US is the more biologically relevant stimulus. These concepts are illustrated using examples from a variety of behavioral and physiological situations including caloric intake and digestion, breast feeding, poison-avoidance learning, eyeblink conditioning, sexual conditioning, fear conditioning, aggression, and drug tolerance and sensitization.

Adaptation, Psychological↗

Impaired passive avoidance acquisition in Wistar rats after restraint/cold stress and/or stresscopin administration.

Stresscopin (SCP) and related peptides are new members of the corticotropin-releasing factor (CRF) peptide family that are selective ligands for CRF type 2 receptor; these ligands are essential for maintaining homeostasis after stress. SCP (i.p. injections) was tested on the passive avoidance learning task in stressed Wistar rats; it impaired the formation of memory trace. The retention performance deficit induced by SCP was comparable with the deficit induced by the stressor of restraint/cold. More profound impairment of avoidance response occurred following combined application of SCP and stressor. More specific actions of SCP can be expected from its studies with targeted intracerebral applications.

Animals↗

Neurokinin-1 receptor antagonism by SR140333: enhanced in vivo ACh in the hippocampus and promnestic post-trial effects.

Substance P (SP) has memory-promoting, reinforcing and anxiolytic-like effects when applied systemically or centrally. Such effects may be mediated by the neurokinin-1 (NK-1) receptor, since SP preferentially binds to this receptor. We measured the effects of a selective non-peptide NK-1 receptor antagonist, SR140333 (1, 3 and 9 mg/kg i.p.) on ACh levels in frontal cortex, amygdala and hippocampus by microdialysis and HPLC. Levels of ACh in the hippocampus increased dose-dependently immediately after treatment. The same doses of SR140333 given post-trial had minor facilitative effects on inhibitory avoidance learning and open-field habituation, but did not have reinforcing effects in a conditioned place preference (CPP) task. The selective action of NK-1 receptor antagonism on hippocampal ACh may be related to its positive influence on learning.

Acetylcholine↗

A parametric study of the effects of the noradrenaline neurotoxin DSP4 on avoidance acquisition and noradrenaline neurones in the CNS of the rat.

The effects of various doses of DSP4 on two-way active avoidance acquisition in rats and on central noradrenaline neurones were compared. Doses of DSP4 from 3 mg kg-1 i.p. and upwards injected one week before the onset of the avoidance trials significantly impaired two-way avoidance learning. The learning impairment caused by DSP4 (50 mg kg-1 i.p.) lasted for at least 10 weeks. Desipramine (20 mg kg-1) injected either 30 or 60 min before DSP4 (50 mg kg-1) antagonized the active avoidance impairment. A high dose of DSP4 (50 mg kg-1 i.p.) produced profound decreases in dopamine-beta-hydroxylase activity in the frontal cortex and in the concentrations of noradrenaline in various brain regions indicating degeneration of the locus coeruleus noradrenaline system. Low doses of DSP4 (3 and 6 mg kg-1 i.p.) produced small but significant decrease in the concentrations of noradrenaline (NA) in some regions, e.g. cerebral cortex, hippocampus, olfactory bulb and spinal cord. The avoidance impairment caused by the low dose of DSP4 (3 mg kg-1) was absent when rats were tested 10 weeks after treatment nor was NA depletion present when NA was analysed 3 months after treatment.

Amines↗

Improvement by nefiracetam of beta-amyloid-(1-42)-induced learning and memory impairments in rats.

1. We have previously demonstrated that continuous i.c.v. infusion of amyloid beta-peptide (A beta), the major constituent of senile plaques in the brains of patients with Alzheimer's disease, results in learning and memory deficits in rats. 2. In the present study, we investigated the effects of nefiracetam [N-(2,6-dimethylphenyl)-2-(2-oxo-1-pyrrolidinyl) acetamide, DM-9384] on A beta-(1-42)-induced learning and memory deficits in rats. 3. In the A beta-(1-42)-infused rats, spontaneous alternation behaviour in a Y-maze task, spatial reference and working memory in a water maze task, and retention of passive avoidance learning were significantly impaired as compared with A beta-(40-1)-infused control rats. 4. Nefiracetam, at a dose range of 1-10 mg kg(-1), improved learning and memory deficits in the A beta-(1-42)-infused rats when it was administered p.o. 1 h before the behavioural tests. 5. Nefiracetam at a dose of 3 mg kg(-1) p.o. increased the activity of choline acetyltransferase in the hippocampus of A beta-(1-42)-infused rats. 6. Nefiracetam increased dopamine turnover in the cerebral cortex and striatum of A beta-(1-42)-infused rats, but failed to affect the noradrenaline, serotonin and 5-hydroxyindoleacetic acid content. 7. These results suggest that nefiracetam may be useful for the treatment of patients with Alzheimer's disease.

3,4-Dihydroxyphenylacetic Acid↗