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Cannabinoid agonist, CP 55,940, facilitates intake of palatable foods when injected into the hindbrain.

Cannabinoids have been shown to influence food intake, and until recently, the neural pathways mediating these effects have remained obscure. It has been previously shown that intracerebroventricular injection of delta-9-tetrahydrocannabinol (Delta(9)-THC) causes increased consumption of palatable foods in rats, and we postulated the involvement of the hindbrain in this cannabinoid-induced food intake. Cannulated rats (both female and male groups) trained to consume sweetened condensed milk received either lateral or fourth ventricle injections of CP 55,940 and were presented with sweetened condensed milk 15 min after injection. Rats were injected over a range of doses between 100 pg and 10 microg per rat. Milk intake was recorded for a total of 3 h. Lateral ventricle injection of CP 55,940 increased milk intake at doses in the microgram range. However, CP 55,940 was effective in increasing food intake at nanogram doses when injected into the fourth ventricle. Finally, male rats appeared to be more sensitive to CP 55,940 than female rats inasmuch as milk consumption was increased at the 1 ng dose in male rats, whereas only the 10 ng dose was effective in females. These results indicate that CP 55,940 may act in the hindbrain to influence feeding behavior in rats.

Animals↗

Leptin regulates olfactory-mediated behavior in ob/ob mice.

We have investigated olfactory-mediated pre-ingestive behavior in leptin (ob/ob) and leptin receptor (db/db) mutant mice compared to age- and gender-matched wild-type (wt) mice. Olfactory-mediated behavior was tested using a buried food paradigm 5 times/day at 2-h intervals for 6 days. Mean food-finding times of ob/ob and db/db mice were approximately 10 times shorter than those of wt mice. To test the effect of leptin replacement in ob/ob mice, leptin (1 or 5 microg/g body weight in sterile saline) or carrier was injected i.p. once daily prior to testing. Mean food finding times in ob/ob mice injected with carrier or with 1 microg/g leptin were similar and were 2-3 times faster than in wt mice. Mean food finding times in ob/ob mice injected with 5 microg/g leptin tripled compared to carrier-injected ob/ob mice and were of the same order of magnitude as those of wt mice, suggesting functional leptin replacement. A 3-factor repeated measures ANOVA demonstrated significant differences between the 6 cohorts (P = 0.0001), food finding times (P< or = 0.0001), and cohort by day interaction (P< or = 0.0001). Post hoc tests suggested that the ob/ob+5 mug/g leptin cohort performed more like the wt cohort in the food-finding test than like the ob/ob or ob/ob+carrier cohort. Potential local sites of leptin production and action were identified with immunohistochemistry and in situ hybridization in epithelial and gland cells of the olfactory and nasal mucosae. Our results strongly suggest that leptin acting through leptin receptors modulates olfactory-mediated pre-ingestive behavior.

Animals↗

Influence of gene action across different time scales on behavior.

Genes can affect natural behavioral variation in different ways. Allelic variation causes alternative behavioral phenotypes, whereas changes in gene expression can influence the initiation of behavior at different ages. We show that the age-related transition by honey bees from hive work to foraging is associated with an increase in the expression of the foraging (for) gene, which encodes a guanosine 3',5'-monophosphate (cGMP)-dependent protein kinase (PKG). cGMP treatment elevated PKG activity and caused foraging behavior. Previous research showed that allelic differences in PKG expression result in two Drosophila foraging variants. The same gene can thus exert different types of influence on a behavior.

Aging↗

Behavioral effects of stimulation of the medial amygdala in the male rat are modified by prior sexual experience.

Researchers have found that stimulation of the medial nucleus of the amygdala (MeA) in male rats increases appetitive copulatory behavior directed toward an anestrous female but suppresses copulation with an estrous female (C. P. Stark et al., 1998). The objective in the present study was to determine if the behavioral change produced by stimulation of the MeA was dependent on chemical and/or visual cues from the conspecific. The author reports that electrical stimulation of the MeA in male rats increased the frequency of mounting and investigative behavior directed toward a male conspecific. However, these effects were limited to those subjects that had no prior sexual experience. Results are discussed in terms of possible experience-dependent alterations in neural response patterns within the MeA and related areas.

Amygdala↗

The effects of scopolamine on the temporal control of behavior.

Pigeons were provided access to food once every 75 sec independently of their behavior. The effects of scopolamine hydrobromide on the temporal distribution of locomotor activity during the interfood interval were evaluated on the basis of a recently developed model. Drug-induced changes in activity, as evaluated by the model, showed that scopolamine (a) decreased the effect of postfood inhibition, (b) decreased the effect of terminal behaviors that occur late in the interfood interval and compete or interfere with general activity, (c) decreased the total amount of activity engendered by the appetitive schedule of reinforcement, (d) and appeared to produce an underestimation of time intervals. These effects were systematically related to drug dosage.

Animals↗

Behavioral differences between white matter lacunar dementia and Alzheimer's disease: a comparison on the neuropsychiatric inventory.

BACKGROUND AND PURPOSE: Behavioral abnormalities account for much of the morbidity of vascular dementia (VaD) and Alzheimer's disease (AD). The goals of the study were to compare the behavioral changes in patients with VaD associated with ischemic white matter subcortical changes and lacunar infarctions (VaD-WSI) to those in patients with AD. METHODS: Thirty outpatients with VaD and multiple lacunar infarctions in the periventricular white matter and 30 AD patients, matched for age and severity of dementia, were enrolled in this prospective study. The behavioral abnormalities of these patients were assessed by interviewing their caregivers with the Neuropsychiatric Inventory. RESULTS: A similar spectrum of noncognitive behavioral changes was found in AD and WSI patients. In VaD-WSI, the severity of delusions, hallucinations, aggression, irritability, aberrant motor behavior, nighttime behavior and appetite changes was correlated with cognitive decline, whereas depression, apathy, anxiety and euphoria were unrelated to the severity of dementia. In AD, none of the behavioral changes correlated with the severity of dementia. CONCLUSION: Behavioral changes are frequent in VaD-WSI and are present regardless of the severity of the cognitive decline. It is therefore important to assess behavioral as well as cognitive changes at early stages of the illness, to ensure appropriate treatment.

Aged↗

Pre-retirement predator encounters alter the morning behavior of captive marmosets (Callithrix geoffroyi).

Limited data are available on the long-term effect an encounter with a predator has on its potential prey. Anecdotal reports from field research indicate that even unsuccessful attacks by predators on callitrichids have long-lasting effects. The subjects for this study were two groups of Geoffroy's marmosets (Callithrix geoffroyi) housed outside, off exhibit, at the Center for Reproduction of Endangered Species at the San Diego Wild Animal Park. Before they retired in the evening, the marmosets were observed under one of three conditions: snake model, cloth control, and no-stimulus control. Data were collected the following morning for 1 hr after the animals emerged from the sleeping box. Compared to control conditions, exposure to the snake model before retirement the previous evening was associated with significantly more vigilance checks (i.e., inspecting the area where the stimulus was last seen), and a delay in beginning to forage on the ground. These results suggest that callitrichids use recent threatening experiences to guide their vigilance behavior 12 hr after the threat is detected, and that they adjust their early morning behavior in response to potential predatory threats.

Analysis of Variance↗

Hunting behavior of wild chimpanzees in the Taï National Park.

Hunting is often considered one of the major behaviors that shaped early hominids' evolution, along with the shift toward a drier and more open habitat. We suggest that a precise comparison of the hunting behavior of a species closely related to man might help us understand which aspects of hunting could be affected by environmental conditions. The hunting behavior of wild chimpanzees is discussed, and new observations on a population living in the tropical rain forest of the Taï National Park, Ivory Coast, are presented. Some of the forest chimpanzees' hunting performances are similar to those of savanna-woodlands populations; others are different. Forest chimpanzees have a more specialized prey image, intentionally search for more adult prey, and hunt in larger groups and with a more elaborate cooperative level than savanna-woodlands chimpanzees. In addition, forest chimpanzees tend to share meat more actively and more frequently. These findings are related to some theories on aspects of hunting behavior in early hominids and discussed in order to understand some factors influencing the hunting behavior of wild chimpanzees. Finally, the hunting behavior of primates is compared with that of social carnivores.

Animals↗

Effects of housing and muricidal behavior on serotonergic receptors and interactions with novel anxiolytic drugs.

Mouse killing by rats represents a predatory behavior that can be modified by drugs from several different therapeutic classes and by environmental conditions. Buspirone and gepirone, non-benzodiazepine anxiolytics that stimulate serotonergic receptors (5HT1a) and inhibit isolation-induced intraspecies aggression, were tested for inhibition of muricidal behavior by isolated rats. Neither buspirone (3.0 mg/kg s.c.) nor gepirone (from 5.0 to 40 mg/kg) inhibited muricide. Additional rats were housed, either aggregated or isolated, and tested for muricidal behavior 9 times over 5 weeks to establish which animals were muricidal: thus, there were 4 groups of rats: muricidal or non-muricidal under either isolated or aggregated housing condition. [3H]-Spiperone was used to determine striatal D2 receptor Bmax and Kd and prefrontal cortex D2 and 5HT2 receptor binding. There were no changes across the four groups. Binding of [3H]-5-hydroxytryptamine (5HT) to 5HT1a receptors decreased in septum of both groups of isolated rats and binding to 5HT1b receptors decreased 50% in hippocampus of isolated and aggregated muricidal rats. Binding of [3H]-5HT to either receptor was unchanged in amygdaloid area and hypothalamus across all groups. Thus, stimulating pre- and postsynaptic 5HT1a receptors does not alter muricidal behavior and changes in 5HT1 receptor binding occurs in limited areas. Whether this limited change in hippocampal 5HT1b binding is important for establishing muricidal behavior is unclear; however the direction of the change is consistent with reports that decreased serotonergic activity increases predatory behavior.

Animals↗

Manipulations of dietary tryptophan: effects on mouse killing and brain serotonin in the rat.

Maintaining rats on a tryptophan-free diet for 4--6 days induced mouse killing in non-killer rats, and significantly facilitated killing in killer rats, as indicated by shorter latencies to kill the mice. The killing responses were similar in topography to the natural killing responses. These changes in killing behavior did not appear to be due to generalized changes in irritability. The increased killing after maintenance on a tryptophan-free diet was accompanied by a 26% reduction in brain serotonin (5-HT) and a 29% reduction in brain 5-hydroxyindoleacetic acid (5-HIAA). When the tryptophan-free diet was supplemented with L-tryptophan (0.5 or 2%), brain 5-HT and 5-HIAA were increased above control levels, and the rat's killing response appeared normal both in terms of latency and topography, similar to that seen in control chow fed animals. While rats consumed less of the tryptophan-free and tryptophan supplemented diets, control subjects deprived of chow such that they lost as much weight as rats fed the tryptophan-free diet, did not show changes in killing behavior. These results are consistent with the hypothesis that central serotonergic systems exert inhibitory control over mouse killing behavior in rats.

Aggression↗

Sensory neglect after lesions of substantia nigra or lateral hypothalamus: differential severity and recovery of function.

Sensory neglect was studied in cats after unilateral lesions of: lateral hypothalamus (LH); internal capsule (IC) adjacent to the LH; substantia nigra (SN) or the ventromedial hypothalamus (VMH). Special behavioral tests were employed to yield quantifiable data and also to exclude any confounding due to simple movement deficits. Lesions of SN or IC produced severe and enduring contralateral visual and somesthetic deficits and a facilitation of ipsilateral visual responsiveness. In contrast, LH lesions sparing the adjacent IC produced only weak and transient deficits and VMH lesions had no effects on sensory function. This suggests that lesions of the SN or its forebrain connections are important for producing sensory neglect and that sensory deficits after LH lesions are due to infringement on fibers of passage to or from the SN. Lesions which produced neglect often suppressed the amplitude of flash evoked responses in the ipsilateral caudate nucleus and visual and association cortex. However, these evoked potential effects were transient. There was no effect on the spontaneous EEG and this fails to support the hypothesis of a lack of hemispheric arousal in sensory neglect. The results are discussed in relation to nigrotectal projections and the process of attention. This lesion-behavior model is suggested for studies of recovery of function.

Animals↗

Effect of antibiotics on retention of visual discrimination training and on protein synthesis in the pigeon.

Forty-three pigeons were trained for one day on a visual discrimination (horizontal vs. vertical stripes) and then immediately injected with either puromycin (PM), cycloheximide (CXM), control saline, or combined PM and CXM solution. PM produced a marked amnesic effect, CXM a weaker effect. PM injected animals (but not CXM's) also took significantly more than 1 day longer than controls to reach criterion levels, indicating an effect on continued acquisition of the discrimination beyond the amnesia for Day 1. Combination with CXM did not attenuate the PM effects. Protein inhibition profiles showed maximum PM activity of 90% inhibition, whereas CXM's maximum was 98% and was distributed more widely throughout different brain regions. In a second experiment, PM (N = 8), CXM (N = 8) or saline (N = 8) were again injected immediately after training, but the S+ was reversed on all postinjection training trials. In this case, PM animals were superior in percentage of S+ pecks on Day 2 to controls and CXM's. Further, the continued acquisition deficit was absent in the PM group, indicating that this effect is highly specific to those behavioral circuits active at the time of injection.

Animals↗