Plasticité du Cerveau CNRS UMR8249, École supérieure de physique et de chimie industrielles de la Ville de Paris (ESPCI Paris), Paris, France.
Neuroscience Paris Seine CNRS UMR 8246 INSERM U1130, Institut de Biologie Paris Seine, Sorbonne Université, Paris, France.
Nat Commun. 2024 Oct 18;15(1):9017. doi: 10.1038/s41467-024-53327-w.
How nicotine acts on developing neurocircuitry in adolescence to promote later addiction vulnerability remains largely unknown, but may hold the key for informing more effective intervention efforts. We found transient nicotine exposure in early adolescent (PND 21-28) male mice was sufficient to produce a marked vulnerability to nicotine in adulthood (PND 60 + ), associated with disrupted functional connectivity in dopaminergic circuits. These mice showed persistent adolescent-like behavioral and physiological responses to nicotine, suggesting that nicotine exposure in adolescence prolongs an immature, imbalanced state in the function of these circuits. Chemogenetically resetting the balance between the underlying dopamine circuits unmasked the mature behavioral response to acute nicotine in adolescent-exposed mice. Together, our results suggest that the perseverance of a developmental imbalance between dopamine pathways may alter vulnerability profiles for later dopamine-dependent psychopathologies.
尼古丁在青少年时期如何作用于发育中的神经回路,从而促进以后的成瘾易感性,在很大程度上仍然未知,但这可能是为更有效的干预措施提供信息的关键。我们发现,在早期青春期(PND 21-28)雄性小鼠中短暂接触尼古丁足以使其成年后(PND 60+)对尼古丁产生明显的易感性,这与多巴胺能回路的功能连接中断有关。这些小鼠对尼古丁表现出持续的青少年样行为和生理反应,这表明青春期接触尼古丁会延长这些回路功能的不成熟、不平衡状态。化学遗传重置多巴胺回路的基础平衡揭示了青春期暴露于尼古丁的小鼠对急性尼古丁的成熟行为反应。总之,我们的研究结果表明,多巴胺通路之间发育失衡的持续存在可能会改变以后与多巴胺相关的精神病理的易感性特征。