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Hippocampal A beta 42 levels correlate with spatial memory deficit in APP and PS1 double transgenic mice.

We investigated the role of hippocampal amyloid pathology in spatial learning impairment of a new mouse line carrying mutated human amyloid precursor protein (APP) and presenilin-1 (PS1) transgenes. The APP + PS1 mice were tested in spatial navigation in the water maze and in position discrimination in the T-maze at ages of 3-4 and 11-12 months, before and after the appearance of first amyloid plaques. The APP + PS1 mice were impaired in water maze acquisition and retention only at the age of 11-12 months, but performed equally to controls in the T-maze task at both ages. In the impaired older age group, the levels of total Abeta1-42 in the hippocampus of APP + PS1 mice correlated negatively with the retention score. Here we show for the first time that the age-dependent impairment in memory retention in the traditional water maze of APP + PS1 mice correlates with the amount of total Abeta in hippocampus even at a stage when the amyloid deposits cover less than 1% of the hippocampal volume.

Age Factors↗

Stress and glucocorticoids impair retrieval of long-term spatial memory.

Extensive evidence from animal and human studies indicates that stress and glucocorticoids influence cognitive function. Previous studies have focused exclusively on glucocorticoid effects on acquisition and long-term storage of newly acquired information. Here we report that stress and glucocorticoids also affect memory retrieval. We show that rats have impaired performance in a water-maze spatial task after being given footshock 30 min before retention testing but are not impaired when footshock is given 2 min or 4 h before testing. These time-dependent effects on retention performance correspond to the circulating corticosterone levels at the time of testing, which suggests that the retention impairment is directly related to increased adrenocortical function. In support of this idea, we find that suppression of corticosterone synthesis with metyrapone blocks the stress-induced retention impairment. In addition, systemic corticosterone administered to non-stressed rats 30 min before retention testing induces dose-dependent retention impairment. The impairing effects of stress and glucocorticoids on retention are not due to disruption of spatial navigation per se. Our results indicate that besides the well described effects of stress and glucocorticoids on acquisition and consolidation processes, glucocorticoids also affect memory retrieval mechanisms.

Animals↗

Allosteric enhancement of metabotropic glutamate receptor 5 function promotes spatial memory.

Group I metabotropic glutamate receptors (mGluRs) have been implicated in learning and memory formation. Recent findings indicate an important function of the group I mGluR subtype 5. Here, we used the Y-maze spatial alternation task and examined whether enhancement of intrinsic mGluR5 activity immediately after learning, i.e. during a critical period for memory consolidation, would have any consequences on long-term memory retention in rats. Intracerebroventricular application of the allosteric mGluR5 potentiator DFB (3,3'-difluorobenzaldazine) resulted in a marked improvement in spatial alternation retention when it was tested 24 h after training. The promnesic effect increased with the difficulty of the task and was apparently due to a substantial enhancement of consolidation. The applied dose of DFB did not cause behavioral changes in the open field, and was devoid of structural side-effects as evaluated by immunohistochemical examination. Our results suggest an important function of post-training mGluR5 activation in some types of hippocampus-dependent spatial learning.

Allosteric Regulation↗

Neural representations in human spatial memory.

Ekstrom et al. report the responses of single neurons recorded from the brains of human subjects performing a spatial navigation task in virtual reality. They found cells encoding the subject's current location, view and destination. These data, and related findings in animals, directly reveal some of the representations underlying spatial cognition. They highlight the potential for cognitive psychology and systems neuroscience to combine to provide a neuronal-level understanding of human behaviour.

Journal Article↗

Spatial memory and integration processes in congenital blindness.

The paper tests the hypothesis that difficulties met by the blind in spatial processing are due to the simultaneous treatment of independent spatial representations. Results showed that lack of vision does not impede the ability to process and transform mental images; however, blind people are significantly poorer in the recall of more than a single spatial pattern at a time than in the recall of the corresponding material integrated into a single pattern. It is concluded that the simultaneous maintenance of different spatial information is affected by congenital blindness, while cognitive processes that may involve sequential manipulation are not.

Adolescent↗

Impairment of cerebral cAMP-mediated signal transduction system and of spatial memory function after microsphere embolism in rats.

The transcription factor cAMP-responsive element binding protein (CREB) has been implicated in synaptic plasticity and memory. The purpose of the present study was to characterize alterations in the cAMP/protein kinase A (PKA)/CREB system after sustained cerebral ischemia. Sustained cerebral ischemia was induced by injection of 900 microspheres (48 microm in diameter) into the right (ipsilateral) hemisphere of rats. Alterations in the CREB, PKA, and cAMP levels in the cerebral cortex and hippocampus were examined up to 7 days after microsphere embolism. Immunoblotting analysis showed a decrease in the immunoreactivity of phosphorylated CREB (pCREB) in the ipsilateral hemisphere on the third day after microsphere embolism, whereas that of the total CREB was not altered. An electrophoretic gel mobility shift assay showed a decrease in the cAMP response element (CRE)-DNA binding activity of CREB in the ischemic region on the third day after the microsphere embolism. Cytosolic PKA C beta in the ipsilateral hemisphere was selectively decreased on the first day after the microsphere embolism, whereas the levels of another catalytic subunit, C alpha, and a regulatory subunit, RII alpha, were not altered. Immunoreactivity of the PKA catalytic subunit C alpha in the nucleus of the ipsilateral hemisphere was decreased on the third day after the embolism. The decreases in the pCREB, CRE-DNA binding activity, and PKA C alpha and C beta levels lasted at least up to 7 days after the operation. A decrease in the cAMP content was also seen in the ipsilateral hemisphere throughout the experiment. Furthermore, microsphere embolized rats showed prolongation of the escape latency in the water maze task determined on the seventh to ninth day after the operation. Our results suggest that sustained cerebral ischemia may impair the phosphorylation and CRE-DNA binding activity of CREB and that these effects may be one of the possible causes for learning and memory dysfunction.

Animals↗

Aging and ischemia in gerbils impair spatial memory performance.

Gerbils aged 3 months and 24+ months were subjected to 5 min of global forebrain ischemia and tested in a radial arm maze (1 trial/day, 50 days). Compared with age-matched, sham-operated controls, ischemic animals were impaired on measures of both working and reference memory. Aged animals were impaired on working memory, but not on reference memory, compared with their younger counterparts. Hippocampal CA1 and CA2 regions were significantly and comparably damaged in the 2 ischemic groups but were unaffected by aging. The results suggest that aging and ischemia have functionally similar effects on working memory, but the 2 processes differentially impact reference memory.

Age Factors↗

Attention, spatial representation, and visual neglect: simulating emergent attention and spatial memory in the selective attention for identification model (SAIM).

The selective attention for identification model (SAIM) is presented. This uses a spatial window to select visual information for recognition, binding parts to objects and generating translation-invariant recognition. The model provides a qualitative account of both normal and disordered attention. Simulations of normal attention demonstrate 2-object costs and effects of object familiarity on selection, global precedence, spatial cueing, and inhibition of return. When lesioned, SAIM demonstrated either view- or object-centered neglect or spatial extinction, depending on the type and extent of lesion. The model provides a framework to unify (a) object- and space-based theories of normal selection, (b) dissociations within the syndrome of unilateral neglect, and (c) attentional and representational accounts of neglect.

Attention↗

Progesterone reverses the spatial memory enhancements initiated by tonic and cyclic oestrogen therapy in middle-aged ovariectomized female rats.

While some research has indicated that ovarian hormone therapy (HT) benefits memory and decreases risk of Alzheimer's disease in menopausal women, several newer studies have shown null or detrimental effects. Despite the null and negative cognitive findings, the numerous studies showing positive effects beg the question of what factors determine whether HT acts as a neuroprotectant or a risk factor for brain functioning. Using middle-aged female rats, we directly compared six HTs. We evaluated the effects of ovariectomy, tonic low-dose, tonic high-dose and biweekly cyclic estradiol treatment, as well as whether progesterone altered the effectiveness of any one of these oestrogen regimens. Animals were tested on spatial and complex cued (intramaze patterns) reference memory using variants of the Morris maze. The tonic low-dose and cyclic estradiol treatments improved spatial performance, while the addition of progesterone reversed these beneficial cognitive effects of estradiol. Additionally, all groups learned to locate the platform on the cued task; however, an egocentric circling strategy was used with sham ovary-intact and hormone-replacement groups showing the most efficient search strategy. Although the question of memory retention 8 weeks after the first cognitive assessment was addressed, a large number of animals died between the first and second test, rendering the retest uninterpretable for many group comparisons. Specifically, both doses of tonic estradiol dramatically increased the number of deaths during the 17-week experiment, while the cyclic estradiol treatment did not. Progesterone decreased the number of deaths due to tonic estradiol treatment. Our findings suggest that the dose of estradiol replacement as well as the presence of progesterone influences the cognitive outcome of estradiol treatment. Further, there appears to be a dissociation between HT effects on cognition and mortality rates.

Aging↗

SDZ ENA 713 facilitates central cholinergic function and ameliorates spatial memory impairment in rats.

We have clarified the effects of SDZ ENA 713 (ENA), a new phenyl-carbamate derivative, on the spatial learning impairment and neurochemical indices of central cholinergic neurons in rats. Basal forebrain (BF) lesioning with ibotenic acid markedly impaired acquisition ability in the water maze task without changing swimming rates and decreased choline acetyltransferase (ChAT) activity in the frontal cortex of rats. ENA (0.1, 0.2 mg/kg, p.o.) significantly ameliorated the impairment in acquisition ability in a dose-dependent manner. At 0.2 mg/kg, ENA prevented the reduction in ChAT activity. In normal rats, ENA (1 mg/kg, p.o.) increased extracellular ACh concentration of the prefrontal cortex. On the other hand, tissue concentrations of norepinephrine, serotonin, dopamine and their metabolites were not changed in the frontal cortex, hippocampus and striatum of normal rats. These results suggest that ENA ameliorates spatial learning disability by not only facilitating the cholinergic transmission, but normalizing impaired ChAT activity in the learning-impaired rat model.

Animals↗

The effects of lesions to the rat hippocampus or rhinal cortex on olfactory and spatial memory: retrograde and anterograde findings.

The role of the hippocampal system in retrograde and anterograde amnesia was investigated by using a novel olfactory-guided paradigm and a traditional test of spatial learning. In the retrograde study, rats were trained on a sequence of two-choice olfactory discriminations in the weeks prior to receiving neurotoxic lesions of the hippocampus or aspiration lesions of the perirhinal-entorhinal cortex. Memory tests for preoperatively learned discriminations revealed no statistical impairment for subjects with damage to the hippocampus on a problem learned remote in time from surgery (i.e., 4 weeks +) or on the two recently learned discriminations (i.e., 1-3 weeks prior to surgery). The performance of subjects with perirhinal-entorhinal damage provided an important comparison for subjects with specific hippocampal lesions. Despite showing intact memory for the remotely learned problem, perirhinal-entorhinal damage resulted in numerically (although not significantly) weaker performance on postoperative tests of retention for the discriminations learned in the 3 weeks prior to surgery. In the anterograde portion of the study, long-term memory for newly acquired discriminations was spared in subjects with damage to the hippocampus, whereas subjects in the perirhinal-entorhinal lesion group again showed the weakest memory performance on these tests of 5-day retention. Postoperative water maze learning was uniformly impaired in subjects with damage to the hippocampus and perirhinal-entorhinal cortex, thus confirming the effect of these lesions and supporting the involvement of these brain areas in spatial processes. These findings further dissociate the specific involvement of the hippocampus in tasks of a spatial-relational nature versus nonrelational tasks, such as discrimination learning and recognition memory (e.g., Duva et al., 1997; Eichenbaum, 1997; Eichenbaum, Schoenbaum, Young, & Bunsey, 1996). Moreover, the results suggest that damage to the hippocampus itself does not contribute to retrograde or anterograde memory impairments for all types of information, whereas the data suggest a more important role for the perirhinal-entorhinal cortex in recognition memory, irrespective of modality.

Animals↗

Effects of anterior thalamic lesions on spatial memory in mice.

The present study was aimed at determining whether or not lesions of the anterior thalamic nuclei induced deficits in sequential or delayed spatial alternation (SA) in mice, these procedures enabling measures of sensitivity to interference and rate of forgetting respectively. Results showed that sequential SA comprising six successive trials separated by a 30 s inter-trial interval was not impaired by the lesion; in contrast, delayed SA in lesioned animals was impaired by a long (6 h) but not by a short (5 min) delay, compared with controls. These results support the view that lesions of anterior thalamic nuclei can produce anterograde amnesia for spatial informations selective to relatively long delay.

Animals↗

Lesioning of spatial memory in mice treated with agroclavin.

This report presents results obtained from studies of the mnemotropic activity of the ergot alkaloid agroclavin. The effects of this substance were studied at concentrations of 1, 10, 25, 50, and 200 microg/kg on the learning and retention of a spatial habit in a Morris water maze. These doses of agroclavin had no effect on the process of formation of the spatial habit, but sharply disturbed retention of the habit. A long-lasting effect of memory trace disturbance was seen over a period of 48 h after dosage. On retraining, animals showed no delayed effects with agroclavin on learning a new spatial habit. The possible mechanisms for the effect of agroclavin on memory are discussed.

Animals↗

Aged garlic extract prolongs longevity and improves spatial memory deficit in senescence-accelerated mouse.

The effects of aged garlic extract (AGE), chronically administered in the diet, on longevity and spatial learning performances were studied using the senescence-accelerated mouse (SAM). A solid diet containing 2% AGE was given to senescence-accelerated-prone mouse 8 (SAMP8) and senescence-accelerated-resistant mouse 1 (SAMR1) from 2 months of age. The survival ratio of SAMP8, a substrain of senescence-accelerated-prone mouse, was significantly lower than that of SAMR1, a substrain of senescence-resistant mouse. In the SAMP8, administration of AGE perfectly prevented the decrease in survival ratio. Moreover, AGE markedly improved the learning deficits of SAMP8 in the Morris water maze test. These results suggest the possibility that AGE prevents physiological aging and age-related memory disorders in human.

Aging↗

Transgenic mice for the amyloid precursor protein 695 isoform have impaired spatial memory.

Transgenic mice for the human amyloid precursor protein 695 (APP695) isoform may provide an animal model of Alzheimer's disease (AD). To evaluate this, the spatial learning abilities of transgenic and wild strain mice were compared in the Morris water maze task. The transgenic mice were significantly retarded in initial learning and in learning a new escape location, although in each case they eventually reached control levels. The transgenic mice also showed slower swimming speed and reduced nocturnal activity, which may contribute to their deficit in spatial learning. Preliminary neuropathological investigations failed to reveal amyloid depositions. Thus, a gene dosage effect of APP695 may account for the memory impairment but not the plaque formation associated with AD.

Amyloid beta-Peptides↗

Spatial memory and perception in stroke patients: the importance of order effects.

The performance of left and right CVA patients on two tasks, spatial matching and spatial recognition, was compared, using a design which also examined the effects of order of task presentation. All groups performed better on matching than on recognition trials, and the left CVA subjects obtained higher scores than right CVA subjects on both types of trial. A significant lesion X order interaction reflected the particularly poor performance of right CVA subjects who received the more difficult task (recognition) first. The clinical implications are discussed.

Adult↗

Both stress experience and age determine the impairment or enhancement effect of stress on spatial memory retrieval.

It has been documented that stress or glucocorticoids have conflicting effects on memory under different conditions. However, it is not fully understood why stress can either impair or enhance memory. Here, we have examined the performance of six age groups of Wistar rats in a water maze spatial task to evaluate the effects of stress under different conditions. We found that the impairment or enhancement effect of an 'elevated platform' (EP) stress on memory was dependent on previous stress experience and on age. EP stress impaired memory retrieval in water maze naive animals, but enhanced rather than impaired memory retrieval in young water maze stress-experienced animals. Furthermore, exogenously applied corticosterone or foot shock stress before water maze training prevented the impairment of memory retrieval that should be induced by treatment with corticosterone or foot shock before the 'probe trial'. Again, memory retrieval was enhanced in young animals under these conditions, and this enhancement can be prevented by the glucocorticoid receptor antagonist RU 38486. Thus, glucocorticoid receptor activation not only induced impairment of memory but also increased the capacity of young animals to overcome a later stress. The present findings suggest that the effect of stress on memory can be switched from impairment to enhancement dependent on both stress experience and age.

Aging↗