Altered neural activity in the mesoaccumbens pathway underlies impaired social reward processing in Shank3-deficient rats.

TitleAltered neural activity in the mesoaccumbens pathway underlies impaired social reward processing in Shank3-deficient rats.
Publication TypeJournal Article
Year of Publication2023
AuthorsBarbier M, Rajamani KThirtamara, Netser S, Wagner S, Harony-Nicolas H
JournalbioRxiv
Date Published2023 Dec 05
Abstract

Social behaviors are crucial for human connection and belonging, often impacted in conditions like Autism Spectrum Disorder (ASD). The mesoaccumbens pathway (VTA and NAc) plays a pivotal role in social behavior and is implicated in ASD. However, the impact of ASD-related mutations on social reward processing remains insufficiently explored. This study focuses on the Shank3 mutation, associated with a rare genetic condition and linked to ASD, examining its influence on the mesoaccumbens pathway during behavior, using the Shank3-deficient rat model. Our findings indicate that Shank3-deficient rats exhibit atypical social interactions and have difficulty adjusting behavior based on reward values, associated with modified neuronal activity of VTA dopaminergic and GABAergic neurons and reduced dopamine release in the NAc. Moreover, we demonstrate that manipulating VTA neuronal activity can normalize this behavior, providing insights into the effects of Shank3 mutations on social reward and behavior, and identify a potential neural pathway for intervention.

DOI10.1101/2023.12.05.570134
Alternate JournalbioRxiv
PubMed ID38106179
PubMed Central IDPMC10723340
Grant ListR01 MH116108 / MH / NIMH NIH HHS / United States