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R Dantzer

Publications and source records attributed to R Dantzer.

At least 199 records · Page 11Linked to original sources

Influence of shock-induced fighting and social factors on dopamine turnover in cortical and limbic areas in the rat.

The present experiments investigated changes in dopaminergic mesocorticolimbic neurones originating from the A10 cell group, in animals exposed to electric shocks in pairs or individually, in comparison to animals receiving no shock and tested in pairs or alone. The social setting under which shock occurred had no influence on the increases in DOPAC levels observed in animals exposed acutely or chronically to electric shocks. In contrast, subordinate rats in the paired shock condition had lower tyrosine hydroxylase activity in the accumbens than dominant rats. Pairing of animals in the test cage without shock induced an increase in accumbens DOPAC levels.

3,4-Dihydroxyphenylacetic Acid↗

Behavioral effects of peripheral administration of arginine vasopressin: a review of our search for a mode of action and a hypothesis.

In this review we present data summarizing our studies concerning the mechanism of action for the behavioral effects of peripheral arginine vasopressin (AVP) administration. We have demonstrated a clear performance improvement in a one trial appetitive task designed to measure the memory-learning process. This behavioral effect is blocked by peptide analogs which block the pressor response to AVP. From these data, and from other data obtained in aversively motivated tasks, we hypothesize that peripheral AVP injections induce effects of physiological-endocrinological origin and that these peripheral signals (e.g. vasopressor actions) alert and arouse the animal, thus helping to improve its association of environmental events. This hypothesis is similar to that proposed by others regarding peripheral hormones and memory and still leaves open the possibility that vasopressin in the brain acts independently of the above proposed action for peripherally derived vasopressin.

Animals↗

Relationship of the effects of the benzodiazepine derivative clorazepate on corticosterone secretion with its behavioural actions. Antagonism by Ro 15-1788.

The effectiveness of Ro 15-1788, a benzodiazepine receptor antagonist, in modifying the effects of the benzodiazepine derivative clorazepate on schedule-controlled behaviour and pituitary-adrenal activity of rats was investigated. At low doses (5 mg/kg) clorazepate increased punished responding and slightly decreased basal plasma corticosterone levels. At high doses (40 mg/kg), clorazepate suppressed fixed ratio responding, raised basal plasma levels of corticosterone and reduced the stress response produced by exposure to a novel environment. Pretreatment with Ro 15-1788 blocked the behavioural and neuroendocrine effects of the high dose of clorazepate. These results suggest that both types of effects of clorazepate share a common mechanism which involves brain benzodiazepine receptors.

Adrenal Cortex↗

[Induction of immunosuppression by dietary aversion acquired in the absence of immunosuppressive treatment].

Conditioned taste aversion induced by either an immunosuppressive (cyclophosphamide) or non immunosuppressive (lithium chloride) drug reduced expression of a T cell mediated immune response that is highly susceptible to stress hormones. These results demonstrate that the proposed concept of conditioned immunosuppression really represents another example of how stress can alter normal regulation of cell mediated immune events.

Animals↗

Motor activity of pregnant tethered sows.

Continuous recording of body postures (standing or lying) using photocells connected to an event recorder was carried out on 125 pregnant sows tethered either by a thoracic girth or by a neck harness in six different farms, at different times of the year. Standing activity occupied an average of 250 min per day. This position occurred mainly during daytime, with amount of standing during the night (10 p.m. to 6 p.m.) averaging less than 2% of the total time. This mean value was found in 4 farms out of 6. However, on one farm, standing postures lasted 390 min and this hyperactivity was associated with stereotypes. In another farm, time spent standing did not exceed 180 min. In all cases, multiparous sows spent about 60% more time standing than first or second litter sows. Time spent standing was dependent on other animal characteristics such as physical condition and foot condition, and also on environmental factors. Activity rhythms were synchronized by food distribution. These results are discussed together with the potential of using motor activity to characterize adaptability of sows to tethering.

Animals↗

Effects of post-trial administration of naloxone and beta-endorphin on shock-induced fighting in rats.

To study the involvement of endogenous opioid peptides in the development of shock-induced fighting, naloxone (2 mg/kg) or beta-endorphin (10 micrograms/kg) was administered subcutaneously immediately after the session and during nine consecutive daily sessions to rats repeatedly exposed to electric shocks. beta-Endorphin blocked the development of shock-induced fighting while naloxone facilitated it but only when shock-induced fighting occurred at a low rate. The effects of beta-endorphin were time dependent since when beta-endorphin was injected 90 min after the shock session instead of immediately after, its impairing effect disappeared. In addition, naloxone blocked the impairment produced by beta-endorphin. Differential postsession treatment of each member of pairs of rats with naloxone and beta-endorphin resulted in a higher probability of rats treated with naloxone to be dominant over rats treated with beta-endorphin in the test situation. These results are discussed in relation with the possible involvement of endogenous opioids in the modulation of the physiological consequences of defensive behavioral responses to shock.

Aggression↗

The effect of different housing conditions on behavioural and adrenocortical reactions in veal calves.

Veal calves were housed either tethered indoors on slatted floorings or loose in groups of eight in a semi-open barn with straw bedding. Six weeks after arrival at the station the calves were submitted to a 10-min open-field session in either the same environment as the one in which they were housed or in the alternative environment. During this session, activity, latency time to first movement and duration of immobility were scored and blood samples were taken for cortisol determination before and after the session. In both instances, the tethered calves exhibited higher activity scores and shorter periods of immobility. Plasma cortisol levels were significantly affected by testing conditions but not by housing conditions, i.e. plasma cortisol levels increased more when the animals were tested in a different environment from the one in which they were housed. Adrenal cortex response to repeated blood sampling and to ACTH injections was found to be significantly higher in tethered calves. These results show that housing conditions strongly influenced the behaviour and endocrine activity of the calves. The dynamics of these changes need further study.

Adrenal Cortex↗

Stress in farm animals: a need for reevaluation.

In animal husbandry, stress has usually been conceived as a reflex reaction that occurs ineluctably when animals are exposed to adverse environmental conditions, and which is the cause of many unfavorable consequences, ranging from discomfort to death. The inadequacy of this view is apparent from the new concepts that have been developed from research aimed at understanding the relationships between hormonal and behavioral reactions to stressful situations. Psychological aspects of environmental stimuli are powerful activators of endocrine responses. The amount of psychological stress that an animal experiences determines how much the pituitary-adrenal axis responds. Indeed, removing the variable of emotional arousal reduces or eliminates responses to some other stressors such as heat and cold. This means that one of the most important characteristics of the stress response, its nonspecificity, lies in the afferent part of the response, not the efferent. Hormonal and behavioral responses are intimately related in stressful situations. In particular, the perception and ensuing behavior of the subject are critical to the nature and intensity of hormonal response. Evidence from experiments in farm animals is presented to support these concepts. Because adjustment abilities are limited by genetics and previous experience, the respective role of each of these factors needs to be delineated more accurately. In addition, most experimental studies have been concerned with acute stress, while chronic multiple stress, which is more likely to be encountered in intensive husbandry, has received little attention. The approach in this field is hampered by the lack of suitable physiological criteria to assess long-term adaptive changes. Opportunities for further research are delineated and the need for a more integrated view of stress reactions in farm animals is emphasized.

Adaptation, Psychological↗

[Peptides and anxiety].

The discovery of the role of neuropeptides in information processing within the central nervous system has brought a new dimension in the research for biological basis of affective disorders and mental diseases. Various peptides with a high binding affinity for benzodiazepine receptors have been isolated but none of them can be considered as a true endogenous ligand. Various peptides present agonist or antagonist activities in different pharmacological tests for anxiolytic activity but their main effects are different. Naloxone is able to antagonize several effects of benzodiazepines in animals and humans, which suggests that endorphins are involved in anxiolytic properties of these drugs. Neuropeptides may have anxiogenic or anxiolytic-like action related to the neuroendocrine modulation of acquisition and retention of adaptive behaviours in stress situations. In addition neuropeptides such as alpha-MSH, bombesin and mainly CRF may regulate neurohormonal responses to stress. Finally evidence is presented to suggest that neuropeptides may be involved in the critical stages of emotional development, to allow associations between visceral changes and inner representation of significant environmental stimuli. The modulation by ACTH peptides of the imprinting process in birds is an example of such a possibility.

Adrenocorticotropic Hormone↗

Behavioural evidence for partial agonist properties of RO 15-1788, a benzodiazepine receptor antagonist.

Rats trained to discriminate pentylenetetrazol from saline had this cue antagonized by the benzodiazepine, clorazepate. Ro 15-1788 reversed the antagonism of the pentylenetetrazol cue produced by clorazepate. Similarly, Ro 15-1788 blocked the anti-conflict effect of clorazepate. Rats trained to discriminate clorazepate from saline, however, generalized this cue to Ro 15-1788. These results demonstrate that Ro 15-1788 is not a pure benzodiazepine antagonist, but has partial agonist properties.

Animals↗

Differential effects of inescapable footshocks and of stimuli previously paired with inescapable footshocks on dopamine turnover in cortical and limbic areas of the rat.

The effect of electric footshocks and of exposure to environmental stimuli paired with electrical shocks upon the dopaminergic activity in various cortical and limbic areas of the rat were evaluated by measuring dihydroxyphenylacetic acid (DOPAC) levels in these areas. In animals exposed to a 20 min electric footshock session DOPAC concentrations were significantly increased in the antero-medial and sulcal frontal cortices, olfactory tubercle, nucleus accumbens and amygdaloid complex (by 66, 37, 28, 55 and 90% respectively). Re-exposure of rats to an environment where they had been shocked 24 h earlier induced an elevation of DOPAC content only in the anteromedial frontal cortex (by 47%). Plasma corticosterone levels were elevated in both situations. No change in serotonin or 5-hydroxyindolacetic acid content of these areas could be detected in either situation. The results show that electric footshocks and environmental stimuli associated to previous shocks both activate central dopaminergic systems, although the patterns of activation are different.

3,4-Dihydroxyphenylacetic Acid↗

[Recent trends in psychophysiology of anxiety (author's transl)].

Current views on anxiety and emotions have been profoundly influenced by research data coming from the field of psychoneuroendocrinology. While early work concentrated on identification of hormonal correlates of fear and anxiety and the question of their specificity, most authors now agree that the physiological phenomena are more a manifestation of increased activation of the arousal system than of any emotional state per se, so that the interest has shifted to the identification of the factors responsible for physiological activation. Over the past few years there has been an increasing awareness of the extreme sensitivity of hormonal systems to psychological and social factors. Pituitary-adrenal hormones for instance are maxillary released under conditions of high novelty and uncertainty, with little control ability and no feedback information following attempts to control the situation. Many experimental studies have attempted to clarify the contribution of peripheral hormonal responses to the cognitive evaluation of emotions and to the storage and retrieval of emotional experiences. This field is now rapidly growing with the increasing number of neuropeptides shown to modulate adaptive behaviour. Most significant in terms of pathophysiology is the present concern for understanding the fundamental psychological processes (defense and coping) which enable the subject to dampen the physiological activation normally resulting from internal and external arousing stimuli. Such a knowledge should help to clarify the mechanisms leading from a failure of adaptation to mental and somatic diseases.

Adaptation, Psychological↗

Effect of transportation on blood serum composition, disease incidence, and production traits in young calves. Influence of the journey duration.

This study was done in the normal commercial operation of a local cooperative in the western part of France. Sixty-two veal calves were randomly divided into two groups. The animals of the first group (short journey) left the farm of origin and arrived at the fattening unit in the evening of the same day after a short passage in a transit center. The animals of the other group (long journey) remained in the transit center, without any food or water supply during the night and were trucked about 300 km before arriving at the fattening unit. Blood was sampled in the farm of origin, on arrival at the fattening unit and one week later in order to allow a longitudinal study of the effects of transportation. A wide blood serum biochemical profile was performed on every sample together with cortisol and immunoglobulin levels. Numerous parameters were modified by the transportation but not by the journey duration. An acute dehydration was apparent in the long journey animals, in the form of an increase in plasma proteins and chloride concentrations on arrival at the fattening unit. One week later serum glucose levels remained low in this group (-45% when compared to basal levels) showing that the feeding regimen was not able to make up the long journey induced energetic deficit. Though production data were not different between the two experimental conditions, the animals in the long journey group displayed an increased incidence of respiratory disease. This study provides a biological basis for improvements likely to reduce the negative consequences of transport in veal calves.

Animals↗

Plasma dopamine-beta-hydroxylase and platelet monoamine oxidase activities in pigs with different susceptibility to the malignant hyperthermia syndrome by halothane.

Plasma DBH and platelet MAO activities were measured by radioenzymatic assay in 10 Large-White and 20 Piétrain pigs 9 to 11 weeks old. Piétrain pigs within the same litter, challenged by halothane, were classified as malignant hyperthermia (MH) susceptible or not according to their reaction. The Large-White pig strain was not susceptible to MH. Plasma DBH activity did not differ according to strain or to MH susceptibility. Platelet MAO was lower in Large-White pigs but was not affected by MH susceptibility in Piétrain pigs. The results do not confirm any nervous differences in MH-susceptible pigs.

Animals↗

[Influence of weaning method on the behavior and the hypophyseal-adrenal axis activity in the piglet].

The pituitary-adrenal activity and behavioural reactions of 3-week weaned piglets kept in flat-decks were compared with those of 6-week weaned piglets kept in the maternity pen. Early weaning induced a transitory increase of plasma corticosteroid levels, while 6-week weaning did not influence those levels. Lower plasma corticosteroid levels were observed in piglets kept with the sow during post-natal weeks 4 and 5. To assess whether early weaning would affect subsequent reactivity, both groups of piglets were individually submitted to an open-field test, a neophobia test and a continuous avoidance schedule when they were 7-9 weeks old. Early-weaned piglets reacted less to the open field test, but pituitary-adrenal response was the same in both experimental groups. Early-weaned piglets were slower in approaching a new object (a food container) in a familiar environment (neophobia test), suggesting that they were more neophobic than 6-week weaned piglets. Avoidance conditioning performances were different in the two sexes: females had the same score whatever their previous rearing conditions, while 6-week weaned castrated males were relatively deficient in learning the task. Taken as a whole, the behavioural and pituitary-adrenal differences observed in the present study do not indicate that early weaning in flat-deck has long-term detrimental effects on the adaptive abilities of pigs.

Adrenal Cortex Hormones↗

Effects of diazepam on extinction induced aggression in pigs.

Pigs were trained to press a panel with their snout to get food in an operant conditioning chamber. Aggressive behaviour which developed between two pigs submitted together to extinction was used as a baseline to study the effects of 1-2 mg/kg diazepam. When access to the response panel and feeding area was permitted, diazepam enhanced resistance to extinction and did not modify aggression. When access to the response panel and feeding area was not permitted, diazepam increased the severity of aggression observed between the animals. In both instances, plasma corticosteroid levels were depressed in diazepam-treated pigs. These results suggest that benzodiazepines do not act on frustation or aggressiveness per se, but rather strengthen the prevailing behavioural attitudes in the animals' repertoire at the time of test.

Adrenal Cortex Hormones↗