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Degeneration of hippocampal fibers and spatial memory deficit in the aged rat.

Old and young Fisher 344 rats were compared for their ability to learn a delayed alternation task. The old animals displayed significant impairment of alternation learning, and were slower than the young animals. The brains of these animals were examined using a silver degeneration stain, and among old rats there was conspicuous degeneration. The greatest density of degenerating fibers was seen in the hippocampus and in anatomically related tracts, but there was substantial fiber staining in the corpus callosum, anterior commissure, and internal capsule. Examination of the young brains revealed only an occasional fiber. There were no signs of cortical atrophy in the old animals. The histopathology of the aged animals' hippocampus and fiber tracts supports the possibility that the delayed alternation impairment shown by these animals was a result of age related degenerative changes.

Aging↗

Age-related impairments in spatial memory are independent of those in sensorimotor skills.

Seventy-five aged rats were tested for a variety of motor and cognitive tests which generated 20 separate measures of performance. Considerable variability was observed on many measures in the aged population. Multivariate analyses were performed on the data to determine 1) the extent of intercorrelations between the measures for the aged rats, and 2) whether clusters of related and/or unrelated behavioral measures could be determined. Aged rats that were impaired on measures of cognitive performance are not necessarily impaired in their motor performance and vice versa. These results demonstrate that different age-related variables affect cognitive and motor systems, and suggest that age-related declines in different functional anatomical systems, such as the limbic system and the basal ganglia may progress independently.

Aging↗

D-cycloserine, a novel cognitive enhancer, improves spatial memory in aged rats.

D-cycloserine, a partial agonist of the NMDA receptor-associated glycine site, can enhance cognition. The present experiment examines the behavioral effects of D-cycloserine on cognitive deficits in male Fischer-344 rats, 24 months old. Rats 24 months old (n = 42) received either vehicle or one of 3 doses of D-cycloserine prior to testing. Young rats, 4 months old (n = 13), received vehicle prior to testing. Place discrimination and repeated acquisition were tested in the water maze and a variety of sensorimotor tasks were given. Aging impaired performance in all tasks. D-cycloserine improved performance in place discrimination and repeated acquisition. No doses affected sensorimotor function. These results support the hypothesis that D-cycloserine has cognition enhancing properties and that it may be useful in treating disorders involving cognitive impairment.

Aging↗

Increased expression of brain-derived neurotrophic factor mRNA in rat hippocampus is associated with improved spatial memory and enriched environment.

Enriched environment has been shown to enhance learning and memory and to induce morphological changes in the hippocampus. We report that rats housed in an enriched environment showed improved performance in the Morris water maze and decreased spontaneous motor activity. Exposure to behavioural tests increased expression of the mRNA that encodes brain-derived neurotrophic factor in the hippocampus. This was not seen when rats subjected to impoverished housing were tested suggesting that environmental history of the animal is of importance to induce expression of brain-derived neurotrophic factor in the hippocampus that may promote neuronal changes related to learning and memory.

Analysis of Variance↗

Differential effects of dentate kindling on working and reference spatial memory in the rat.

An 8-arm radial maze was used to examine the effects of dentate kindling on the performance of a task which requires both working (short-term) and reference (long-term) memory. During the 4-week post-operative training period, control and experimental rats performed both components of the task equally well. Performance of the reference memory component, but not the working memory component of the task was significantly impaired during kindling stimulation. The impairment in reference memory appeared to be primarily due to the elicitation of afterdischarges, since the disruption in maze performance was evident in the pre-convulsive stages of kindling. Following the cessation of kindling stimulation, a gradual recovery in reference memory performance was observed. Dentate kindling may provide a useful model for the study of long-term memory deficits associated with temporal lobe epilepsy.

Animals↗

Nerve growth factor and nootropic drug Cerebrolysin but not fibroblast growth factor can reduce spatial memory impairment elicited by fimbria-fornix transection: short-term study.

In an attempt to compare effects of different neurotrophic factors on impaired memory function, young adult naive rats were trained to find the hidden platform in the Morris water maze (3 consecutive days, eight trials/day). The fimbria-fornix was unilaterally removed by aspiration and nerve growth factor (NGF) (11 micrograms/ml and 0.5 microgram/ml; groups NGF and ngf, respectively) or basic fibroblast growth factor (bFGF) (0.2 microgram/ml, group FGF) were applied via intra-cerebroventricular infusion by the osmotic minipump (flow rate 0.5 microliter/h, 14 days). Nootropic drug Cerebrolysin (EBEWE Arzneitmittel; 2.5 ml/kg/day, group CER) was applied via intraperitoneal injection (14 days). One group was formed by the rats treated with NGF (11 micrograms/ml) and Cerebrolysin (group NGFCER). Non-lesioned and lesioned only rats served as controls (groups INT and LES). After a 14-day treatment, rats were tested using the retention test (1 day, four trials). On the next day, the rats were tested using transfer test (3 days, eight trials/day). Escape latency and length of trajectory was recorded. Groups NGF, ngf, FGF and LES were similarly impaired in their ability to retrieve the old position of the platform (retention test), as well as in their ability to navigate to the new position of the platform (transfer test). In the latter, NGF group significantly differed from lesioned animals. Groups CER and NGFCER were comparable to group INT in the retention or transfer test. It is concluded that anterograde amnesia elicited by fimbria-fornix lesion can be abbreviated by NGF and/or CER, while retrograde amnesia is absent only in rats treated by CER. No short-term influence of bFGF was found. It is suggested that biochemical systems other than the cholinergic one are involved.

Amino Acids↗

Central administration of a nitric oxide synthase inhibitor impairs spatial memory in spontaneous hypertensive rats.

Nitric oxide is widely recognized as a putative retrograde messenger in the brain. We infused NG-monomethyl-L-arginine (L-NMMA; 25 mg/kg), an inhibitor of nitric oxide synthase (NOS), continuously for a week into the dorsal third ventricle (D3V) of spontaneous hypertensive rate (SHR) by an osmotic infusion pump. Rats administered with L-NMMA showed impaired performance of a radial arm maze task compared with control rats administered with saline. We observed significant reductions of the NOx level in the cerebrospinal fluid (CSF) of the rats administered with L-NMMA, but not in the control rats. Both groups showed no change in systolic blood pressure or serum NOx level. The results provide evidence of a more specific effect of NOS inhibition to the brain independent of alterations in the systemic hemodynamics.

Animals↗

Pattern span: a tool for unwelding visuo-spatial memory.

Evidence showing that non-verbal short-term memory has distinct visual and spatial/sequential components is reviewed. A new test, The Visual Patterns Test (VPT), which was designed to measure short-term visual memory largely shorn of its spatio-sequential component, is described. Correlational studies of the VPT and the Corsi Blocks Test with healthy subjects and brain-damaged patients indicate a separation between visual and sequential abilities. This separation of function is supported by double dissociations shown by patients. Moreover, in a selective interference experiment, the VPT and the Corsi tests were found to show a double dissociation pattern of interference from visual and spatio sequential subsidiary tasks, respectively. The present results are discussed in relation to other findings in the literature, and it is concluded that non-verbal short-term memory can indeed be viewed as comprising distinct visual and spatio-sequential components. The VPT will be a useful neuropsychological instrument for measuring the visual component.

Adolescent↗

Ontogenetic quinpirole treatments produce spatial memory deficits and enhance skilled reaching in adult rats.

There is a paucity of data on neurochemical abnormalities and associated effects on cognition and motor performance in rats ontogenetically treated with quinpirole, a rodent model of dopaminergic hyperfunction. The objective of the current study was to analyze the cognitive and motor effects produced by ontogenetic administration of quinpirole, a dopamine D(2)/D(3) receptor agonist. Past research from this laboratory has shown that ontogenetic quinpirole treatment sensitizes D(2) receptors and produces a variety of characteristic stereotypic behaviors in adult rats. In the current study, rats received quinpirole HCl (1 mg/kg/day) or saline from postnatal day (PD) 1 to PD 11 and went otherwise untreated until adulthood (PD 60). In Experiment 1, cognitive performance was assessed on the standard and matching-to-place versions of the Morris water task (MWT). In Experiment 2, skilled motor performance was assessed on the Whishaw reaching task and locomotor activity was also analyzed. We found that ontogenetically quinpirole-treated rats displayed a deficit on the probe trial given at the end of training of the standard version of the MWT but that there were no significant differences from control on the matching-to-place task. Additionally, rats treated in ontogeny with quinpirole showed significant enhancement in reaching accuracy on the Whishaw reaching task as well as increased locomotor activity relative to saline controls. These findings demonstrate that ontogenetic quinpirole treatments produce cognitive deficits, enhanced skilled reaching and hyperlocomotion. The behavioral changes produced by ontogenetic quinpirole treatment are consistent with dopaminergic hyperfunction, and possible mechanisms are discussed.

Animals↗

Spatial memory and visual evoked potentials in young and old rats after housing in an enriched environment.

The effects of aging and of housing in an enriched environment on performance in an 8-arm radial maze were evaluated in young adult (7-8 months) and old (30-33 months) male Brown-Norway rats, using a procedure in which the rats were confined for 8 s to the central platform of the maze between consecutive choices. Although the old rats attained a level of performance which was clearly above change, they were shown to perform worse than the young rats. No performance differences were found between differentially housed rats of the same age group. In a second experiment recovery cycles of visual evoked potentials were determined in the same rats by using paired flashes with an interstimulus time of 400, 300, 200, or 100 ms. Recovery was consistently smaller in the old rats as compared to the young ones. No correlation could be demonstrated, however, between radial maze performance or housing condition and recovery functions of the visual evoked potentials. This finding indicates that a decline in visual sensitivity cannot readily explain the impaired radial maze performance of old rats. Evidence which suggests that age-related hippocampal changes play a major role in the radial maze performance deficit is discussed.

Age Factors↗

Effects of intraventricular infusion of the N-methyl-D-aspartate (NMDA) receptor antagonist AP5 on spatial memory of rats in a radial arm maze.

Rats were trained to asymptotic performance in an 8-arm radial maze. They then received chronic intraventricular infusion of either artificial CSF or the N-methyl-D-aspartate (NMDA) receptor antagonist D-2-amino-5- phosphonopentanoic acid (AP5), at a concentration (30 mM) that has been shown previously to prevent the induction of long-term potentiation in the dentate gyrus of the hippocampus in vivo. Subsequently the rats received another 9 trials in the maze in a quasi-random order, 3 uninterrupted trials, and another 6 trials each with mid-trial delays of 5, 20 or 60 min during which the animals were placed in their home cage. The mean number of errors for the AP5 rats did not differ significantly from that of the controls in the uninterrupted trials throughout the experiment, nor did it differ from that of the controls in any of the 3 delayed trials when these were first introduced. However, the control animals performed better at the longer delays when these were introduced for the second time, whilst there was no such improvement (but rather a deterioration) for the AP5 animals. The impairment of performance in the AP5 rats during the second block of delayed trials was significant, and independent of the length of the delay. These results show that NMDA receptor blockade does not impair working memory in the radial maze per se, but that it does prevent an improvement of working memory persistence with further training.

2-Amino-5-phosphonovalerate↗

Dissociation of impairment between spatial memory, and motor function and emotional behavior in aged rats.

We investigated changes in learning and memory in aged rats, in relation to motor function and emotional behavior. Male Kbl Wistar aged rats (108-weeks-old) were divided into two groups, memory impaired and non-impaired, based on performance during six training trials in the Morris water maze task. Aged rats with a goal latency longer than the mean plus the 99% confidence limit of young rats, were regarded as memory impaired, whereas those with a goal latency within the range of the 99% confidence limit of the mean of young rats, were considered as memory non-impaired. Although the performance of the memory impaired aged rats in the standard test of the Morris water maze improved after six re-training trials to the level of the non-impaired aged rats and young rats, working memory impairment was evident. There were no differences in motor function and emotional behavior between the impaired and non-impaired aged rats. These results suggest that deficits of learning and memory in memory impaired aged rats can be dissociated from changes in motor function and emotional behavior.

Aging↗

Slow brain potentials in a visual-spatial memory task: topographic distribution and inter-laboratory consistency.

Slow brain electrical potentials (SPs) were investigated in a visual-spatialmemory task. Two issues were addressed: (1) the nature and topographic distribution of the potentials obtained under such conditions; and (2) the consistency of the SPs when recorded in six identically configured laboratories. Fifteen young male subjects were studied at each laboratory (total n = 90). The paradigm entailed presentations of paired-visual patterns (S1 and S2), to which subjects responded with a choice reaction time response indicating whether or not the two patterns matched. A biphasic contingent negative variation (CNV) was produced which consisted of an early symmetric component with bilateral foci at posterior temporal sites and a subsequent mid-parietal dominant wave later in the retention interval. Although the CNVs from all laboratories were similar in waveform and in topographic distribution, there were significant inter-laboratory differences in amplitude of the slow potential components. The topographic distributions of the components and the possible role of sampling effects are discussed.

Adult↗

Decline in visual attention and spatial memory in aged rats.

The present study was a longitudinal study of age-related changes in performance of the 5-choice serial reaction time task, a test of visual attention. Following acquisition of the task, animals were tested on two occasions on their ability to perform the 5-choice task. In Test 1 (Young: 7 months; Aged: 13-14 months) no age-related effects on baseline performance were revealed. However, increasing the attentional load of the task revealed an impairment in choice accuracy by animals of the Aged group. In Test 2 (Young: 10-11 months; Aged 23-24 months), animals of the Aged group were significantly impaired on the baseline schedule of the task compared to the Young group. The deficit in accuracy on the task could be improved in the Aged animals by decreasing the attentional load. The results of the present study suggest a deficit in attentional function as a result of the aging process, markedly similar to that observed following lesions of the basalo-cortical cholinergic system.

Aging↗

Spatial memory testing decreases hippocampal amyloid precursor protein in young, but not aged, female rats.

Using young and aged rats, we investigated relationships between amyloid precursor protein (APP) and working or reference memory, as well as assessed whether cognitive testing altered APP levels. In young rats, higher APP levels were related to more working memory errors as a linear function. Aged rats exhibited a curvilinear relationship between APP and working memory, with moderate APP levels associated with better relative performance. A comparison of rats that received cognitive testing with those that did not showed that testing decreased APP levels in young, but not aged, rats. Collectively, the data suggest that young and aged rats exhibit different relationships between APP and working memory, and that aged rats do not maintain the capacity to decrease APP in response to cognitive testing.

Aging↗

Effects of chronic restraint stress and estradiol on open field activity, spatial memory, and monoaminergic neurotransmitters in ovariectomized rats.

Twenty-one days of chronic restraint stress impairs male rat performance on the radial arm maze [Luine et al. (1994) Brain Res. 639, 167-170], but enhances female rat performance [Bowman et al. (2001) Brain Res. 904, 279-289]. To assess possible ovarian hormone mechanisms underlying this sexually dimorphic response to stress, we examined chronic stress effects in ovariectomized rats. Ovariectomized rats received Silastic capsule implants containing cholesterol or estradiol and were assigned to a daily restraint stress (21 days, 6 h/day) or non-stress group. Following the stress period, subjects were tested for open field activity and radial arm maze performance. Stress and estradiol treatment affected open field activity. All stressed animals, with or without estradiol treatment, made fewer total outer sector crossings. In contrast, estradiol-treated animals, with or without stress, made more inner sector visits, an indication that estradiol decreased anxious behavior on the open field across time. As measured by the total number of visits required to complete the task, stress did not affect radial arm maze performance in ovariectomized rats, but estradiol-treated animals, with or without stress, performed better than non-treated animals on the radial arm maze. Stressed subjects receiving estradiol showed the best radial arm maze performance. Following killing, tissue samples were obtained from various brain regions known to contribute to learning and memory, and monoamine and metabolite levels were measured. Several changes were observed in response to both stress and estradiol. Most noteworthy, stress treatment decreased homovanillic acid levels in the prefrontal cortex, an effect not previously observed in stressed intact females. Estradiol treatment increased norepinephrine levels in CA3 region of the hippocampus, mitigating stress-dependent changes. Both stress and estradiol decreased dentate gyrus levels of 5-hydroxyindole acetic acid. In summary, the current study provides novel information showing that estradiol alters behavioral and neurochemical responses to stress in ovariectomized rats. Estradiol treatment decreased anxious behavior on the open field and stressed animals receiving estradiol had enhanced radial arm maze performance. In relation to interactions between stress and estradiol on cognition and anxiety, changes in the prefrontal cortex dopaminergic system, dentate gyrus serotonergic system, and norepinephrine levels in the CA3 region appear important. Results show that estradiol may moderate stress effects on cognition and anxiety through both organizational and activation effects.

Animals↗