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α2-Null Mutant Mice Have Altered Levels of Neuronal Activity in Restricted Midbrain and Limbic Brain Regions During Nicotine Withdrawal as Demonstrated by Cfos Expression

机译:通过Cfos表达证明α2-无效突变小鼠的尼古丁戒断过程中受限的中脑和边缘脑区域的神经元活性水平发生了改变

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摘要

Neuronal nicotinic acetylcholine receptors (nAChRs) are the primary binding sites for nicotine within the brain. Using alpha(α)2 nAChR subunit-null mutant mice, the current study evaluates whether the absence of this gene product during mecamylamine-precipitated nicotine withdrawal eliminates neuronal activity within selective midbrain and limbic brain regions, as determined by the expression of the immediate early gene, cfos. Our results demonstrate that nicotine withdrawal enhances neuronal activity within the interpeduncular nucleus and dorsal hippocampus, which is absent in mice null for α2-containing nAChRs. In contrast, we observe that α2-null mutant mice exhibit a suppression of neuronal activity in the dentate gyrus in mice undergoing nicotine withdrawal. Interestingly, α2-null mutant mice display potentiated neuronal activity specifically within the stratum lacunosum moleculare layer of the hippocampus, independent of nicotine withdrawal. Overall, our findings demonstrate that α2-null mutant mice have altered cfos expression in distinct populations of neurons within selective midbrain and limbic brain structures that mediate baseline and nicotine withdrawal-induced neuronal activity.
机译:神经元烟碱型乙酰胆碱受体(nAChRs)是大脑中尼古丁的主要结合位点。使用α(α)2 nAChR亚基无效的突变小鼠,当前研究评估美卡明胺沉淀的尼古丁戒断过程中该基因产物的缺失是否消除了选择性中脑和边缘脑区域的神经元活性,这由立即早期的表达确定基因,首席财务官。我们的研究结果表明,尼古丁戒断可增强足突间核和背侧海马内的神经元活性,而对于含α2的nAChRs无效的小鼠则不存在。相反,我们观察到,α2-无效突变小鼠在经历尼古丁戒断的小鼠的齿状回中表现出神经元活性的抑制。有趣的是,无α2突变小鼠表现出增强的神经元活性,特别是在海马的乳头层分子层内,与尼古丁戒断无关。总的来说,我们的发现表明,α2-无效突变小鼠已经改变了选择性中脑和边缘脑结构内介导基线和尼古丁戒断诱导的神经元活动的神经元不同种群中cfos的表达。

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