bioRxiv Science⌕ Search

Biology subjects

Becker, K. D.

Publications and source records attributed to Becker, K. D..

2 recordsLinked to original sources

Sex-specific regulation of social play in juvenile rats by oxytocin neurons in the hypothalamus and oxytocin signaling in the nucleus accumbens

Social play is a rewarding behavior shown across juvenile mammalian species and is important for the development of social competency throughout the lifespan. The neuropeptide oxytocin (OXT) regulates various social behaviors and is being used in clinical trials to improve social competency. However, the role of OXT in juvenile social play is largely unknown. To address this gap, we determined the involvement of hypothalamic OXT-producing neurons in the supraoptic nucleus (SON) and paraventricular nucleus (PVN), PVNOXT projections to the nucleus accumbens (NAc), and OXT signaling within the NAc, in the regulation of social play in juvenile male and female rats. We found that neither chemogenetic stimulation of SONOXT cell bodies nor PVNOXT projections to the NAc altered the expression of juvenile social play but instead increased social investigation. However, chemogenetic stimulation of PVNOXT cell bodies as well as intra-NAc infusion of OXT decreased social play in males without an effect in females. Lastly, social play duration correlated negatively with the proportion of activated NAcOXTR neurons, an effect driven by males. Together, these findings suggest that distinct OXT neuronal populations modulate different forms of social behavior and that PVNOXT neurons and NAc-OXT signaling sex-specifically modulate social play behavior.

neuroscience↗

To Play or Not to Play? Effects of Playmate Familiarity and Social Isolation on Social Play Engagement in Three Laboratory Rat Strains

Social play is a motivating and rewarding behavior displayed by juveniles of many mammalian species, including humans and rats. Social play is vital to the development of social skills. Autistic children show less social play engagement which may contribute to their impairments in social skills. There is limited knowledge about what external conditions may positively or negatively influence social play engagement in humans or other animals. Therefore, we determined how two common external conditions, playmate familiarity and social isolation, modulate social play levels and social play defense tactics in juveniles of three common laboratory rat strains: Long-Evans, Sprague-Dawley, and Wistar. Males and females were socially isolated for either 2h or 48h prior to social play testing and were then exposed to either a familiar (cage mate) or novel playmate, creating four testing conditions: 2h-Familiar, 48h-Familiar, 2h-Novel, and 48h-Novel. Both playmate familiarity and social isolation length influenced social play behavior levels and tactics in juvenile rats, but did so differently for each of the three rat strains. Long-Evans played most with a familiar playmate, irrespective of time isolated, Sprague-Dawley played most in the 48h-Familiar condition, and Wistar played the least in the 2h-Familiar condition, but Wistar played more with a novel playmate than Long-Evans and Sprague-Dawley. Analysis of social play tactics by the playmates in response to nape attacks by the experimental rats revealed strain differences with novel playmates. Here, Sprague-Dawley and Wistar defended more nape attacks than Long-Evans. Sprague-Dawley evaded these attacks, thereby shortening body contact. In contrast, Wistar turned to face their playmate attacker and showed more complete rotations, thereby extending body contact and wrestling longer. Role reversals, which increase social play reciprocity and reflect the quality of social play, were higher in Long-Evans and Sprague-Dawley with familiar playmates. Role reversals decreased for Sprague-Dawley but increased for Wistar after 48h isolation. The effects of playmate familiarity or social isolation length on social play levels and tactics were similar across sex for all three strains. In conclusion, we showed that two common external factors (playmate familiarity and social isolation length) that largely vary across social play studies have a major impact on the level and quality of social play in the three rat strains. Strain differences indicate higher level and quality of social play with familiar playmates in Long-Evans, with familiar playmates after short isolation in Sprague-Dawley, and with novel playmates after longer isolation for Wistar. Future research could determine whether strain differences in neuronal mechanisms underlie these condition-induced variations in social play engagement. Our findings are also informative in suggesting that external conditions like playmate familiarity and social isolation length could influence social play levels and social play quality in typical and atypical children.

animal behavior and cognition↗