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[Anxiolytic effect of the dehydroepiandrosterone sulfate: mu-opioid mechanism].

Effects of dehydroepiandrosterone sulfate (DHEAS, 30 mg/kg, i/p, 4 and 28 hours after injection) on CBA/Lac male mice with increased level of anxiety resulting from chronic (20-days) social confrontations in two behavioral anxiety-estimated tests, were studied. The anxiolytic effect of DHEAS was discovered within 4 hours after injection in the "partition test" of social interactions and within 28 hours in "plus-maze test". Naltrexone (0.25 mg/kg, for 20 min before DHEAS injection) blocked this effect.

Aggression↗

[Catatonia as an element of submissive behavior in mice during interspecies agonistic interactions].

A catatonia-like state was elicited in male mice with different experience of social interactions, by pinch of scruff of the neck in a suspended state. In submissive males with long experience of defeat the total time of catatonia reaction during test is considerably greater than in aggressive individuals with a long experience of victories. The change of the social status of the individuals resulting from agonistic interactions leads to a change of the catatonia reaction: manifestation of submissive behaviour is accompanied by an increase of total time of catatonia reaction in the test, the aggressive behaviour is accompanied by its decrease.

Aggression↗

Genetically selected winner and loser rats: what was selected?

Throughout the 6--12th generation, genetically selected winner and loser rats in the straight runway test, were studied, in relation to weight, open field behavior, behavioral responses to footshock and adrenocortical response following stimulation. The results showed that the Loser Runway Strain (LRS) when compared to the Winner Runway Strain (WRS), were (1) lighter in weight, (2) defecated less, ambulated more and showed higher frequency of rearing-up when submitted to an open field (3) defecated less and jumped more in reaction to footshock and (14) had a higher rise of corticosterone levels following handling or footshock. These differences between WRS--LRS are the same found between male-female rats. This conclusion does not favor the validity of the runway test as a social measure, and suggests that WSR--LRS were selected according to male-female characteristics instead of a winning or losing trait.

Animals↗

Immunocytochemical mapping and quantification of expression of a putative type 1 serotonin receptor in the crayfish nervous system.

Serotonin is an important neurotransmitter that is involved in modulation of sensory, motor, and higher functions in many species. In the crayfish, which has been developed as a model for nervous system function for over a century, serotonin modulates several identified circuits. Although the cellular and circuit effects of serotonin have been extensively studied, little is known about the receptors that mediate these signals. Physiological data indicate that identified crustacean cells and circuits are modulated via several different serotonin receptors. We describe the detailed immunocytochemical localization of the crustacean type 1 serotonin receptor, 5-HT1crust, throughout the crayfish nerve cord and on abdominal superficial flexor muscles. 5-HT1crust is widely distributed in somata, including those of several identified neurons, and neuropil, suggesting both synaptic and neurohormonal roles. Individual animals show very different levels of 5-HT1crust immunoreactivity (5-HT(1crust)ir) ranging from preparations with hundreds of labeled cells per ganglion to some containing only a handful of 5-HT(1crust)ir cells in the entire nerve cord. The interanimal variability in 5-HT(1crust)ir is great, but individual nerve cords show a consistent level of labeling between ganglia. Quantitative RT-PCR shows that 5-HT1crust mRNA levels between animals are also variable but do not directly correlate with 5-HT(1crust)ir levels. Although there is no correlation of 5-HT1crust expression with gender, social status, molting or feeding, dominant animals show significantly greater variability than subordinates. Functional analysis of 5-HT1crust in combination with this immunocytochemical map will aid further understanding of this receptor's role in the actions of serotonin on identified circuits and cells.

Animals↗

Restoration of circadian rhythmicity in circadian clock-deficient mice in constant light.

In mammals, circadian rhythms in behavior and physiology are controlled by a central pacemaker, the SCN, and subordinated clocks throughout the body. On the molecular level, these clocks are based on transcriptional/translational feedback loops involving a set of clock genes that regulate their own transcription. Among the components driving the mammalian circadian clock are the Period 1 and 2 (Per1 and Per2) and Cryptochrome 1 and 2 (Cry1 and Cry2) genes. In the present study, the authors characterize the behavioral and molecular rhythms of Per2/Cry1 double mutant mice under 3 different lighting conditions. In an LD cycle, the activity of these animals is masked by light, while in DD, the mutants lose circadian rhythmicity but exhibit strong ultradian rhythms. In LL of higher intensity, circadian rhythms are restored on the behavioral level with a drastically shortened endogenous period. Furthermore, both in the SCN and in the periphery, clock gene rhythms are restored. Based on these observations and also on the fact that light-mediated induction of Per gene expression is preserved in these mutants, the authors propose a mechanism by which endogenous ultradian rhythms may relay timed light exposure to the SCN, leading to a reinitiation of self-sustained circadian rhythms in LL.

Animals↗

Animal models of social stress: effects on behavior and brain neurochemical systems.

Social interactions serve as an evolutionarily important source of stress, and one that is virtually ubiquitous among mammalian species. Animal models of social stress are varied, ranging from a focus on acute, intermittent, or chronic exposure involving agonistic behavior, to social isolation. The relative stressfulness of these experiences may depend on the species, sex, and age of the subjects, and subject sex also appears to influence the value of hypothalamic--pituitary--adrenal (HPA) axis activity as a general criterion for stress response: higher glucocorticoid levels are typically found in dominant females in some species. Social stress models often produce victorious and defeated, or dominant and subordinate, animals that may be compared to each other or to controls, but the appropriateness of specific types of comparisons and the interpretations of their differences may vary for the different models. Social stress strongly impacts behavior, generally reducing aggression and enhancing defensiveness, both inside and outside the stress situation. Social and sexual behaviors may be reduced in subordinate animals, as is activity and responsivity to normally rewarding events. However, some components of these changes may be dependent on the presence of a dominant, rather than representing a longer-term and general alteration in behavior. Social stress effects on brain neurotransmitter systems have been most extensively investigated, and most often found in serotonin and noradrenergic systems, with changes also reported for other monoamine and for peptidergic systems. Morphological changes and alterations of neogenesis and of cell survival particularly involving the hippocampus and dentate gyrus have been reported with severe social stress, as have longer-term changes in HPA axis functioning. These findings indicate that social stress models can provide high magnitude and appropriate stressors for research, but additionally suggest a need for caution in interpretation of the findings of these models and care in analysis of their underlying mechanisms.

Animals↗

Repeated social defeat causes increased anxiety-like behavior and alters splenocyte function in C57BL/6 and CD-1 mice.

The experimental model, social disruption (SDR), is a model of social stress in which mice are repeatedly attacked and defeated in their home cage by an aggressive conspecific. In terms of the impact of this stressor on the immune response, SDR has been reported to cause hyperinflammation and glucocorticoid insensitivity. To this point however, the behavioral consequences of SDR have not been thoroughly characterized. Because social defeat has been reported to cause anxiety- and depressive-like behaviors, the current study was designed to assess whether SDR also causes anxiety- and depressive-like behaviors. Using the light/dark preference test and the open field test as tools to measure behaviors characteristic of anxiety, the data showed that C57BL/6 and CD-1 male mice subjected to SDR displayed increased anxiety-like behavior. The increase in anxiety-like behaviors persisted for at least 1 week after the cessation of the stressor. In contrast, depressive-like behaviors were not elicited by SDR as assessed by the forced swim test or the tail suspension test. These data indicate that social disruption stress causes an increase in anxiety-like behaviors, but not depressive-like behaviors.

Aggression↗

The influence of social hierarchy on primate health.

Dominance hierarchies occur in numerous social species, and rank within them can greatly influence the quality of life of an animal. In this review, I consider how rank can also influence physiology and health. I first consider whether it is high- or low-ranking animals that are most stressed in a dominance hierarchy; this turns out to vary as a function of the social organization in different species and populations. I then review how the stressful characteristics of social rank have adverse adrenocortical, cardiovascular, reproductive, immunological, and neurobiological consequences. Finally, I consider how these findings apply to the human realm of health, disease, and socioeconomic status.

Animals↗

Social status, environment, and atherosclerosis in cynomolgus monkeys.

The purpose of this experiment was to examine the effects of social environment and social status on coronary artery and aortic atherosclerosis in adult male cynomolgus monkeys (Macaca fascicularis). Thirty experimental animals were assigned to six groups of five members each, and all animals were fed a moderately atherogenic diet (43% of calories as fat, 0.34 mg cholesterol/Cal) for 22 months. Group memberships were changed periodically among 15 monkeys (unstable social condition) and remained fixed throughout the experiment in the remaining animals (stable social condition). Within each condition, individual monkeys were classified as either dominant or subordinate animals, based on dyadic patterns of aggression and submission. At necropsy, the coronary arteries were subjected to pressure fixation and five sections each were taken from the left anterior descending, left circumflex, and right coronary arteries. The mean intimal area measurement, based on all arterial sections, served as a coronary index for each animal. Results indicated that dominant animals in the unstable condition had significantly greater coronary artery atherosclerosis than dominant monkeys housed in stable social groups. Coronary artery atherosclerosis in the unstable dominants was also greater than among similarly housed (i.e., unstable) subordinates. A similar pattern was observed in the abdominal aorta, but was not statistically significant. No significant differences or similar patterns were seen in the thoracic aorta. Additional analyses revealed that the coronary artery effects were not due to concomitant differences in total serum cholesterol or high density lipoprotein cholesterol concentrations, blood pressures, ponderosity, or fasting glucose concentrations among the experimental animals. Behaviorally, manipulation of group memberships intensified agonistic encounters and disrupted patterns of affiliative interaction between dominant and subordinate monkeys. Overall, these results suggest that social dominance (an individual behavioral characteristic) is associated with increased coronary artery atherosclerosis, but only under social conditions that provide recurrent threats to the status of dominant animals (i.e., under behavioral challenge).

Animals↗

Parenting behaviors of women who were sexually abused as children in their families of origin.

This research explored links between a childhood history of family sexual abuse and current parenting behaviors of mothers of school-age children, using observations of family interaction and interviews with the mothers. Videotaped family interaction tasks, analyzed with Benjamin's Structural Analysis of Social Behavior, showed that women who had been sexually abused in their childhood families were more self-focused, rather than child-focused, compared to nonabused women. In interviews, the women who had been abused gave strong evidence of greater reliance on their children for emotional support. These findings lend support to theoretical and clinical impressions of highly permeable intergenerational boundaries, including parent-child role reversal, in family systems marked by child sexual abuse, even when the abuse occurred in the previous generation.

Adult↗

Is lipsmacking an indicator of social status in baboons?

Lipsmacking is performed by many Old World monkey species, and some studies of baboons and macaques suggest that lipsmacking may be associated with social status. We studied 60 adult anubis baboons (Papio cynocephalus anubis) for 18 months, measured social status and the rate of lipsmacking, and used these data to test the hypothesis that lipsmacking is related to social status. Our results indicate that social status and lipsmacking were not significantly correlated for either males or females. Analysis of lipsmacking in relation to social class (high vs. low) showed no significant difference between status classes for either sex. Lipsmacking was, however, found to be positively associated with affinitive behaviors. These results suggest that baboon lipsmacking provides positive social communication independently of social status.

Animal Communication↗

Serotonergic response to social stress and artificial social sign stimuli during paired interactions between male Anolis carolinensis.

Serotonergic activity is influenced by social status and manipulation of social signals. In the lizard Anolis carolinensis, eyespot formation, i.e. darkening of postorbital skin from green to black, appears during stressful and agonistic situations, forming first in males that become dominant. To assess the effect of eyespots on central serotonergic activity during social interaction, males were paired by weight and painted postorbitally with green or black paint. Manipulation of eyespot color influenced social interactions and status. All males that viewed an opponent with black painted eyespots became subordinate. In these subordinate animals, serotonergic activity was elevated in hippocampus, striatum, nucleus accumbens and locus ceruleus. In contrast, males that viewed opponents with hidden eyespots (painted green) and became dominant had increased serotonergic activity in hypothalamus, medial amygdala and raphé. Pre-painted eyespots produced results that distinguish dominant and subordinate relationships based on serotonergic activity not previously seen in unmanipulated pairs. Results from experiments using pairs are similar to those using mirrors for medial amygdala and locus ceruleus, but not hippocampus, nucleus accumbens or raphé. Decreased hypothalamic serotonin was associated with increased aggressive behavior. These results, when compared with previous studies, suggest some flexibility in central serotonergic systems, which may shape dominant and subordinate rank acquisition, and appear to be influenced by the completion of social role formation. Furthermore, social status and central serotonergic activity was influenced by a visual cue, the presence or absence of postorbital eyespots on an opponent.

Aggression↗

Teaching-learning mechanisms in consumer health education.

A study of a special school program on cigarette smoking and health was undertaken in Niagara County, N.Y., to determine whether it produced effects on knowledge, attitudes, and behavior among teachers and parents as well as students and, if so, how these effects were accomplished. Data for parents, the subject of this report, were collected by questionnaire and interview before and after the program from selected parents of students in 36 junior high school classes assigned equally to experimental and control groups. The parents failed to show statistically significant modifications of either knowledge or attitudes after the program. They did, however, show a consistent and significant downward shift in numbers of reported tobacco users. This finding was true for both experimental and control groups, but the change was distinctly greater in the experimental group. Additionally, the changes were greater for urban than for rural parents and for parents with incomes of $10,000 or more than for those with lower incomes. The results for parents differed from those for students and teachers concerning knowledge and attitudes, but they were similar to those for teachers and unlike those for students concerning smoking behavior. The study findings suggest that teaching-learning mechanisms beyond the traditional superordinate-subordinate model may be operative, with pupils, parents, and teachers in roles quite different from what they are generally thought to be. Specifically, the students may serve as mediators of value change and behavior modification for both teachers and parents.

Attitude to Health↗

Sexual selection for male dominance reduces opportunities for female mate choice in the European bitterling (Rhodeus sericeus).

Sexual selection involves two main mechanisms: intrasexual competition for mates and intersexual mate choice. We experimentally separated intrasexual (male-male interference competition) and intersexual (female choice) components of sexual selection in a freshwater fish, the European bitterling (Rhodeus sericeus). We compared the roles of multiple morphological and behavioural traits in male success in both components of sexual competition, and their relation to male reproductive success, measured as paternity of offspring. Body size was important for both female choice and male-male competition, though females also preferred males that courted more vigorously. However, dominant males often monopolized females regardless of female preference. Subordinate males were not excluded from reproduction and sired some offspring, possibly through sneaked ejaculations. Male dominance and a greater intensity of carotenoid-based red colouration in their iris were the best predictors of male reproductive success. The extent of red iris colouration and parasite load did not have significant effects on female choice, male dominance or male reproductive success. No effect of parasite load on the expression of red eye colouration was detected, though this may have been due to low parasite prevalence in males overall. In conclusion, we showed that even though larger body size was favoured in both intersexual and intrasexual selection, male-male interference competition reduced opportunities for female choice. Females, despite being choosy, had limited control over the paternity of their offspring. Our study highlights the need for reliable measures of male reproductive success in studies of sexual selection.

Animals↗