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Mably, A. J.

Publications and source records attributed to Mably, A. J..

2 recordsLinked to original sources

CA2 neurons show abnormal responses to social stimuli in a rat model of Fragile X syndrome

Fragile X Syndrome (FXS) is a neurodevelopmental disorder that is highly comorbid with autism spectrum disorders and can cause abnormal social behaviors. The CA2 subregion of the hippocampus is essential for social memory processing and social recognition. A social interaction induces changes in CA2 neuronal firing; however, it is unknown whether these changes are impaired in FXS models. Here, we examined CA2 activity in a rat model of Fragile X Syndrome (Fmr1 knockout rats). In Fmr1 knockout rats, we observed impaired CA2 cell responses to social stimuli, despite similar social behaviors. Further, in CA2 of Fmr1 knockout rats, we found reduced expression of oxytocin receptors and impaired whole cell responses to oxytocin. Together, these results raise the possibility that abnormal CA2 activity contributes to impaired social behavior in FXS and may suggest novel treatment targets for FXS patients. Significance statementFragile X Syndrome (FXS) is a neurodevelopmental disorder that can result in abnormal social behaviors, including social avoidance. Activity in the CA2 subregion of the hippocampus is believed to support social recognition and social cognition. Yet, the extent to which the CA2 subregion of the hippocampus is affected by FXS is poorly understood. In this study, we identified specific impairments in CA2 neuronal responses to social stimuli in a rat model of FXS. Further, we provide evidence suggesting that CA2 responses to oxytocin, a neuropeptide released during social interactions, are abnormal in FXS.

neuroscience↗

Social odors drive hippocampal CA2 place cell responses to social stimuli

Hippocampal region CA2 is essential for social memory processing. Interaction with social stimuli induces changes in CA2 place cell firing during active exploration and sharp wave-ripples during rest following a social interaction. However, it is unknown whether these changes in firing patterns are caused by integration of multimodal social stimuli or by a specific sensory modality associated with a social interaction. Rodents rely heavily on chemosensory cues in the form of olfactory signals for social recognition processes. To determine the extent to which social olfactory signals contribute to CA2 place cell responses to social stimuli, we recorded CA2 place cells in rats freely exploring environments containing stimuli that included or lacked olfactory content. We found that CA2 place cell firing patterns significantly changed only when social odors were prominent. Also, place cells that increased their firing in the presence of social odors alone preferentially increased their firing during subsequent sharp wave-ripples. Our results suggest that social olfactory cues are essential for changing CA2 place cell firing patterns during and after social interactions. These results support prior work suggesting CA2 performs social functions and shed light on processes underlying CA2 responses to social stimuli.

neuroscience↗