ArticleThe Journal of neuroscience : the official journal of the Society for Neuroscience2025
Nicotine Withdrawal Drives Aversive Behaviors by Recruiting Inhibitory Interpeduncular Nucleus Inputs to the Laterodorsal Tegmentum in Mice.
Article in The Journal of neuroscience : the official journal of the Society for Neuroscience, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- Review: "The Disappointment Dilemma: Short- and Long-Term Learning From Negative Outcomes".The European journal of neuroscience · 2026Review
- Aerobic exercise for substance use disorders: therapeutic effects and underlying mechanisms.Frontiers in medicine · 2026Review
- Article
- Nicotinic Receptors in the Medial Habenula to Interpeduncular Nucleus Pathway: Modulators of Reward, Aversion and Emotion.The European journal of neuroscience · 2025Review
- Complex opioid driven modulation of glutamatergic and cholinergic neurotransmission in a GABAergic brain nucleus associated with emotion, reward and addiction.bioRxiv : the preprint server for biology · 2025Article
Corrections and comments
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Authors and funding
2 authors.
Funding
Abstract
Nicotine addiction remains a major cause of disease and premature death worldwide. Nicotine modulates neural pathways that underlie both rewarding and aversive behavioral effects, but persistent activation of brain reward circuitry drives nicotine consumption despite the negative consequences. When nicotine users attempt to quit, additional neural mechanisms are recruited to generate an aversive withdrawal state, which contributes to the remarkably high relapse rate among nicotine users. The interpeduncular nucleus (IPN) and its presynaptic inputs from the medial habenula are key mediators of aversive nicotine withdrawal symptoms, but the downstream neural targets mediating these effects are unknown. The aversive effects of acute exposure to high doses of nicotine require inhibitory IPN GABAergic projections to the laterodorsal tegmentum (LDTg), a key driver of reward-related dopamine signaling. Here we show that optogenetic inhibition of these IPN→LDTg projections reduces behavioral and physiological effects of nicotine withdrawal in male and female mice. Using fiber photometry, we found that nicotine withdrawal reduced reward-related signaling with decreases in both LDTg neuronal activity and nucleus accumbens dopamine release. These studies demonstrate a direct link between aversive and appetitive neural pathways that is active during nicotine withdrawal, providing novel targets for treating nicotine addiction.
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Registered trials
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