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Reversing anterior insular cortex neuronal hypoexcitability attenuates compulsive behavior in juvenile rats

Jadhav, K.; Bernheim, A.; Aeschlimann, L.; Kirschmann, G.; Decosterd, I.; Hoffman, A.; Lupica, C. R.; Boutrel, B.

2021-10-29 neuroscience
10.1101/2021.10.28.466154 bioRxiv
Show abstract

Development of self-regulatory competencies during adolescence is partially dependent on normative brain maturation. Here we report that juvenile rats as compared to adults exhibit impulsive and compulsive-like behavioral traits, the latter being associated with lower expression of mRNA levels of the immediate early gene zif268 in the anterior insula (AI). This observation suggests that deficits in AI function in juvenile rats could explain their immature pattern of interoceptive cue integration in rational decision-making and compulsive phenotype. In support of this, here we report hypoexcitability of juvenile layer-V pyramidal neurons in the AI, concomitant with reduced glutamatergic synaptic input to these cells. Chemogenetic activation of the AI attenuated the compulsive trait suggesting that delayed maturation of the AI results in suboptimal integration of sensory and cognitive information in adolescents and this contributes to inflexible behaviors in specific conditions of reward availability.

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