Vasopressin/Serotonin Interactions in the Anterior Hypothalamus Control Aggressive Behavior in Golden Hamsters

Взаимодействия вазопрессина и серотонина в переднем гипоталамусе контролируют агрессивное поведение у золотистых хомяков
Craig F. Ferris, Richard H. Melloni, G. A. KOPPEL, Kenneth W. Perry, Ray W. Fuller, Yvon Delville
1997-06-01

Syrian golden hamstersV1A and 5-HT1B receptorsanterior hypothalamusoffensive aggressionvasopressin-serotonin interactions
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.
1
Fluoxetine blocked the aggression-enhancing effect of anterior hypothalamic vasopressin, indicating that serotonin inhibits aggression partly by antagonizing AVP signaling.
2
Fluoxetine treatment significantly delayed biting and reduced bite frequency in resident hamsters during resident–intruder aggression testing.
3
Putative serotonin synapses onto vasopressin neurons in the anterior hypothalamus provide anatomical evidence for local AVP–5-HT interaction.
4
The anterior hypothalamus contains V1A vasopressin and 5-HT1B serotonin binding sites colocalized with dense AVP and serotonin fibers and terminals.
5
Vasopressin microinjections into the anterior hypothalamus shortened bite latency and increased biting attacks.

the anterior hypothalamus (AH) of Syrian golden hamsters and its vasopressin/serotonin neurotransmitter systems

the neuroanatomical and functional interaction between AVP and 5-HT in the AH regulating offensive aggression, including attack initiation and biting

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1997-06-01
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Craig F. Ferris
Richard H. Melloni
G. A. KOPPEL
Kenneth W. Perry
Ray W. Fuller
Yvon Delville
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