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Bosmans, G.

Publications and source records attributed to Bosmans, G..

2 recordsLinked to original sources

Interdependency between oxytocin and dopamine in trust-based learning in mice

Oxytocin (OT) is a neuropeptide implicated in complex social behaviors including trust and attachment, yet the neural mechanisms underlying its effects remain unclear. OT is thought to modulate behavior by enhancing the salience of social cues and attenuating prediction error (PE) processing, the discrepancy between expected and actual outcomes that drives learning. Since both salience coding and PE processing involve dopamine (DA) neurons as well, the current study investigated the putative interdependence between OT and DA in social safety learning using the social transmission of food preference (STFP) paradigm. STFP is based on the observation that mice (observers) display neophobia toward novel food, but develop a preference for it after a conspecific demonstrator signals its safety. We interpreted STFP acquisition as a functional parallel to human trust-based learning and found that OT enhanced learning in a trust acquisition condition, but only when DA signaling was intact. In a trust violation condition, where demonstrated food was later paired with lithium chloride (LiCl)-induced food aversion, both OT and DA depletion blocked learning, resulting in retained preference for demonstrated food, but not when OT was administered under DA depletion. These findings reveal a functional interaction between the OT and DA systems to modulate social safety learning, which may have important implications for OTs potential in treating disorders involving DA dysfunction.

neuroscience↗

Oxytocin enhances acquisition in a social trust task in mice, whereas both oxytocin and its antagonist block trust violation learning

The complex effects of the neurohormone oxytocin (OT) on socio-cognitive phenomena have recently been proposed to be complementary with safety learning, where a stimulus acquires safety-predicting properties when it predicts non-occurrence of an aversive event. OT may enhance saliency of safety stimuli and promote positive social behavior, such as trust, by reducing anxiety and stress. Complementary, OT may reduce the ability to modulate previously learned behaviors based on new, contradicting information. This occurs through its attenuation of prediction error (PE)--the discrepancy between expectations and actual outcomes. In the current study, we stimulated or inhibited (with antagonist cligosiban, CL) the OT system and subjected male and female mice to our social transmission of food preference (STFP) protocol to assess social safety learning. STFP is based on the observation that food neophobia of rodents is attenuated when a conspecific signals the safety of the food. We used safe food preference as putative murine homologue of human trust acquisition, and modeled trust violation (PE) using lithium chloride (LiCl)-induced food aversion after social interaction. In males, results revealed that OT enhanced trust acquisition, whereas both OT and its antagonist CL similarly blocked trust violation learning. None of the manipulations affected female behavior. Our findings highlight the complexities of OTs role in social behavior, emphasizing caution in therapeutic manipulations of this system.

neuroscience↗