Mesolimbic dopamine release precedes actively sought aversive stimuli in mice

In some models, animals approach aversive stimuli more than those housed in an enriched environment. Here, we found that male mice in an impoverished and unstimulating ( i.e ., boring) chamber without toys sought aversive air puffs more often than those in an enriched chamber. Using this animal mode...

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Veröffentlicht in:Nature communications 2023-04, Vol.14 (1), p.2433-2433, Article 2433
Hauptverfasser: Yawata, Yosuke, Shikano, Yu, Ogasawara, Jun, Makino, Kenichi, Kashima, Tetsuhiko, Ihara, Keiko, Yoshimoto, Airi, Morikawa, Shota, Yagishita, Sho, Tanaka, Kenji F., Ikegaya, Yuji
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Sprache:eng
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Zusammenfassung:In some models, animals approach aversive stimuli more than those housed in an enriched environment. Here, we found that male mice in an impoverished and unstimulating ( i.e ., boring) chamber without toys sought aversive air puffs more often than those in an enriched chamber. Using this animal model, we identified the insular cortex as a regulator of aversion-seeking behavior. Activation and inhibition of the insular cortex increased and decreased the frequencies of air-puff self-stimulation, respectively, and the firing patterns of insular neuron ensembles predicted the self-stimulation timing. Dopamine levels in the ventrolateral striatum decreased with passive air puffs but increased with actively sought puffs. Around 20% of mice developed intense self-stimulation despite being offered toys, which was prevented by administering opioid receptor antagonists. This study establishes a basis for comprehending the neural underpinnings of usually avoided stimulus-seeking behaviors. Animals may approach normally aversive stimuli such as an air puff when in a non-enriched environment. Here the authors show that dopamine release in the ventral lateral striatum was reduced by aversive stimulation, but was increased when it was actively sought.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-023-38130-3