Literature DB >> 9151749

Vasopressin/serotonin interactions in the anterior hypothalamus control aggressive behavior in golden hamsters.

C F Ferris1, R H Melloni, G Koppel, K W Perry, R W Fuller, Y Delville.   

Abstract

Studies in several species of rodents show that arginine vasopressin (AVP) acting through a V1A receptor facilitates offensive aggression, i.e., the initiation of attacks and bites, whereas serotonin (5-HT) acting through a 5-HT1B receptor inhibits aggressive responding. One area of the CNS that seems critical for the organization of aggressive behavior is the basolateral hypothalamus, particularly the anterior hypothalamic region. The present studies examine the neuroanatomical and neurochemical interaction between AVP and 5-HT at the level of the anterior hypothalamus (AH) in the control of offensive aggression in Syrian golden hamsters. First, specific V1A and 5-HT1B binding sites in the AH are shown by in vitro receptor autoradiography. The binding for each neurotransmitter colocalizes with a dense field of immunoreactive AVP and 5-HT fibers and putative terminals. Putative 5-HT synapses on AVP neurons in the area of the AH are identified by double-staining immunocytochemistry and laser scanning confocal microscopy. These morphological data predispose a functional interaction between AVP and 5-HT at the level of the AH. When tested for offensive aggression in a resident/intruder paradigm, resident hamsters treated with fluoxetine, a selective 5-HT reuptake inhibitor, have significantly longer latencies to bite and bite fewer times than vehicle-treated controls. Conversely, AVP microinjections into the AH significantly shorten the latency to bite and increase biting attacks. The action of microinjected AVP to increase offensive aggression is blocked by the pretreatment of hamsters with fluoxetine. These data suggest that 5-HT inhibits fighting, in part, by antagonizing the aggression-promoting action of the AVP system.

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Year:  1997        PMID: 9151749      PMCID: PMC6573530     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  70 in total

1.  Vasopressin-sensitive neurons in the lateral paraventricular nucleus area in a guinea pig slice preparation.

Authors:  B Carette; P Poulain
Journal:  Brain Res Bull       Date:  1989-06       Impact factor: 4.077

2.  Direct excitatory action of vasopressin in the lateral septum of the rat brain.

Authors:  M Raggenbass; M Dubois-Dauphin; E Tribollet; J J Dreifuss
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3.  Vasopressin excites hippocampal neurones.

Authors:  M Mühlethaler; J J Dreifuss; B H Gähwiler
Journal:  Nature       Date:  1982-04-22       Impact factor: 49.962

4.  Vasopressin injected into the hypothalamus triggers a stereotypic behavior in golden hamsters.

Authors:  C F Ferris; H E Albers; S M Wesolowski; B D Goldman; S E Luman
Journal:  Science       Date:  1984-05-04       Impact factor: 47.728

5.  Cerebrospinal fluid monoamine metabolites, aggression, and impulsivity in disruptive behavior disorders of children and adolescents.

Authors:  M J Kruesi; J L Rapoport; S Hamburger; E Hibbs; W Z Potter; M Lenane; G L Brown
Journal:  Arch Gen Psychiatry       Date:  1990-05

6.  Scent marking by male golden hamsters (Mesocricetus auratus) I. Effects of odors and social encounters.

Authors:  R E Johnston
Journal:  Z Tierpsychol       Date:  1975-02

7.  Low cerebrospinal fluid 5-hydroxyindoleacetic acid concentration differentiates impulsive from nonimpulsive violent behavior.

Authors:  M Linnoila; M Virkkunen; M Scheinin; A Nuutila; R Rimon; F K Goodwin
Journal:  Life Sci       Date:  1983-12-26       Impact factor: 5.037

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Authors:  R Dantzer; R M Bluthé
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9.  Evidence supporting a role for endogenous vasopressin in natural suppression of fever in the sheep.

Authors:  K E Cooper; N W Kasting; K Lederis; W L Veale
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Authors:  P T Mehlman; J D Higley; I Faucher; A A Lilly; D M Taub; J Vickers; S J Suomi; M Linnoila
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