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大鼠前脑结合¹⁸F-尼非那韦的烟碱型乙酰胆碱受体:与 PET 成像、放射自显影和行为相关。

Nicotinic acetylcholine receptors in rat forebrain that bind ¹⁸F-nifene: relating PET imaging, autoradiography, and behavior.

机构信息

Department of Neurobiology & Behavior, University of California, Irvine, California, USA.

出版信息

Synapse. 2012 May;66(5):418-34. doi: 10.1002/syn.21530. Epub 2012 Feb 15.

Abstract

Nicotinic acetylcholine receptors (nAChRs) in the brain are important for cognitive function; however, their specific role in relevant brain regions remains unclear. In this study, we used the novel compound ¹⁸F-nifene to examine the distribution of nAChRs in the rat forebrain, and for individual animals related the results to behavioral performance on an auditory-cognitive task. We first show negligible binding of ¹⁸F-nifene in mice lacking the β2 nAChR subunit, consistent with previous findings that ¹⁸F-nifene binds to α4β2* nAChRs. We then examined the distribution of ¹⁸F-nifene in rat using three methods: in vivo PET, ex vivo PET and autoradiography. Generally, ¹⁸F-nifene labeled forebrain regions known to contain nAChRs, and the three methods produced similar relative binding among regions. Importantly, ¹⁸F-nifene also labeled some white matter (myelinated axon) tracts, most prominently in the temporal subcortical region that contains the auditory thalamocortical pathway. Finally, we related ¹⁸F-nifene binding in several forebrain regions to each animal's performance on an auditory-cued, active avoidance task. The strongest correlations with performance after 14 days training were found for ¹⁸F-nifene binding in the temporal subcortical white matter, subiculum, and medial frontal cortex (correlation coefficients, r > 0.8); there was no correlation with binding in the auditory thalamus or auditory cortex. These findings suggest that individual performance is linked to nicotinic functions in specific brain regions, and further support a role for nAChRs in sensory-cognitive function.

摘要

脑内烟碱型乙酰胆碱受体(nAChRs)对于认知功能很重要;然而,其在相关脑区的具体作用仍不清楚。在这项研究中,我们使用新型化合物¹⁸F-烟碱来研究大鼠前脑内 nAChRs 的分布,并将结果与听觉认知任务中的个体动物行为表现相关联。我们首先在缺乏β2 nAChR 亚基的小鼠中观察到¹⁸F-烟碱的结合可忽略不计,这与之前¹⁸F-烟碱结合到α4β2* nAChRs 的发现一致。然后,我们使用三种方法在大鼠中检查了¹⁸F-烟碱的分布:体内 PET、离体 PET 和放射自显影。通常,¹⁸F-烟碱标记了已知含有 nAChRs 的前脑区域,并且这三种方法在区域之间产生了相似的相对结合。重要的是,¹⁸F-烟碱还标记了一些白质(髓鞘化轴突)束,在包含听觉丘脑皮质通路的颞下皮质区域最为明显。最后,我们将几种前脑区域的¹⁸F-烟碱结合与每个动物在听觉提示、主动回避任务中的表现相关联。在 14 天训练后,与表现相关性最强的是颞下皮质白质、下托和内侧额皮质中的¹⁸F-烟碱结合(相关系数 r > 0.8);而听觉丘脑或听觉皮质中的结合与表现没有相关性。这些发现表明,个体表现与特定脑区的烟碱能功能相关,进一步支持 nAChRs 在感觉认知功能中的作用。

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