The role of the prefrontal cortex in social interactions of animal models and the implications for autism spectrum disorder

Author:

Mohapatra Alok Nath,Wagner Shlomo

Abstract

Social interaction is a complex behavior which requires the individual to integrate various internal processes, such as social motivation, social recognition, salience, reward, and emotional state, as well as external cues informing the individual of others’ behavior, emotional state and social rank. This complex phenotype is susceptible to disruption in humans affected by neurodevelopmental and psychiatric disorders, including autism spectrum disorder (ASD). Multiple pieces of convergent evidence collected from studies of humans and rodents suggest that the prefrontal cortex (PFC) plays a pivotal role in social interactions, serving as a hub for motivation, affiliation, empathy, and social hierarchy. Indeed, disruption of the PFC circuitry results in social behavior deficits symptomatic of ASD. Here, we review this evidence and describe various ethologically relevant social behavior tasks which could be employed with rodent models to study the role of the PFC in social interactions. We also discuss the evidence linking the PFC to pathologies associated with ASD. Finally, we address specific questions regarding mechanisms employed by the PFC circuitry that may result in atypical social interactions in rodent models, which future studies should address.

Publisher

Frontiers Media SA

Subject

Psychiatry and Mental health

Reference200 articles.

1. Neural systems subserving emotion; lesion studies of the amygdala, somatosensory cortices, and ventromedial prefrontal cortices;Adolphs,2001

2. Social belonging: brain structure and function is linked to membership in sports teams, religious groups, and social clubs;Kieckhaefer;Cereb Cortex,2023

3. Towards improved animal models for evaluating social cognition and its disruption in schizophrenia: the CNTRICS initiative;Millan;Neurosci Biobehav Rev,2013

4. Meeting of minds: the medial frontal cortex and social cognition;Amodio;Nat Rev Neurosci,2006

5. Intrinsic amygdala–cortical functional connectivity predicts social network size in humans;Bickart;J Neurosci,2012

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