Committee on Neurobiology, University of Chicago, Chicago, IL, 60637, USA.
Department of Anesthesia & Critical Care, University of Chicago, Chicago, IL, 60637, USA.
Nat Commun. 2018 Jul 13;9(1):2710. doi: 10.1038/s41467-018-04654-2.
Nicotine use can lead to dependence through complex processes that are regulated by both its rewarding and aversive effects. Recent studies show that aversive nicotine doses activate excitatory inputs to the interpeduncular nucleus (IPN) from the medial habenula (MHb), but the downstream targets of the IPN that mediate aversion are unknown. Here we show that IPN projections to the laterodorsal tegmentum (LDTg) are GABAergic using optogenetics in tissue slices from mouse brain. Selective stimulation of these IPN axon terminals in LDTg in vivo elicits avoidance behavior, suggesting that these projections contribute to aversion. Nicotine modulates these synapses in a concentration-dependent manner, with strong enhancement only seen at higher concentrations that elicit aversive responses in behavioral tests. Optogenetic inhibition of the IPN-LDTg connection blocks nicotine conditioned place aversion, suggesting that the IPN-LDTg connection is a critical part of the circuitry that mediates the aversive effects of nicotine.
尼古丁的使用会通过复杂的过程导致依赖,这些过程受到其奖赏和厌恶效应的调节。最近的研究表明,厌恶剂量的尼古丁会激活中脑脚间核(IPN)来自内侧缰核(MHb)的兴奋性输入,但介导厌恶的 IPN 的下游靶标尚不清楚。在这里,我们使用来自小鼠大脑组织切片的光遗传学显示,IPN 投射到外侧脑桥被盖核(LDTg)的投射是 GABA 能的。在体内选择性刺激 LDTg 中的这些 IPN 轴突末梢会引起回避行为,这表明这些投射有助于厌恶。尼古丁以浓度依赖的方式调节这些突触,只有在较高浓度下才会出现强烈增强,而这些较高浓度在行为测试中会引起厌恶反应。光遗传学抑制 IPN-LDTg 连接会阻断尼古丁条件性位置厌恶,这表明 IPN-LDTg 连接是介导尼古丁厌恶效应的电路的关键部分。