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1.
Sci Rep ; 7: 43348, 2017 02 24.
Article in English | MEDLINE | ID: mdl-28233850

ABSTRACT

Dopamine (DA) plays significant roles in regulation of social behavior. In social groups of humans and other animals, social hierarchy exists, which is determined by several behavioral characteristics such as aggression and impulsivity as well as social affiliations. In this study, we investigated the effects of pharmacological blockade of DA D2 receptor on social hierarchy of Japanese macaque and mouse social groups. We found acute administration of the D2 antagonist, sulpiride, in socially housed Japanese macaques attenuated social dominance when the drug was given to high social class macaques. A similar attenuation of social dominance was observed in high social class mice with D2 antagonist administration. In contrast, D2 antagonist administration in low social class macaque resulted in more stable social hierarchy of the group, whereas such effect was not observed in mouse social group. These results suggest that D2 receptor signaling may play important roles in establishment and maintenance of social hierarchy in social groups of several species of animals.


Subject(s)
Hierarchy, Social , Receptors, Dopamine D2/metabolism , Social Behavior , Animals , Dopamine Antagonists/administration & dosage , Macaca , Mice , Signal Transduction , Sulpiride/administration & dosage
2.
Neurosci Res ; 111: 13-24, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27230505

ABSTRACT

Psychotic and mood disorders are brain dysfunctions that are caused by gene environment interactions. Although these disorders are disadvantageous and involve behavioral phenotypes that decrease the reproductive success of afflicted individuals in the modern human society, the prevalence of these disorders have remained constant in the population. Here, we propose several biological mechanisms by which the genes associated with psychotic and mood disorders could be selected for in specific environmental conditions that provide evolutionary bases for explanations of when, why, and where these disorders emerged and have been maintained in humans. We discuss the evolutionary origins of psychotic and mood disorders with specific focuses on the roles of dopamine and serotonin in the conditions of social competitiveness/hierarchy and maternal care and other potential mechanisms, such as social network homophily and symbiosis.


Subject(s)
Mood Disorders/genetics , Psychotic Disorders/genetics , Animals , Dopamine/physiology , Evolution, Molecular , Gene-Environment Interaction , Genetic Variation , Host-Parasite Interactions , Humans , Maternal Behavior , Mood Disorders/physiopathology , Mood Disorders/psychology , Psychotic Disorders/physiopathology , Psychotic Disorders/psychology , Selection, Genetic , Serotonin/physiology , Social Behavior , Symbiosis , Synaptic Transmission
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