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首页> 外文期刊>Brain Structure and Function >Synaptology of ventral CA1 and subiculum projections to the basomedial nucleus of the amygdala in the mouse: relation to GABAergic interneurons
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Synaptology of ventral CA1 and subiculum projections to the basomedial nucleus of the amygdala in the mouse: relation to GABAergic interneurons

机译:小鼠腹部杏仁核的基底体核的腹侧CA1和下丘脑突触的突触:与GABA能性中间神经元的关系。

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摘要

GABAergic neurons of the amygdala are thought to play a critical role in establishing networks for feedback and feedforward inhibition and in mediating rhythmic network activity patterns relevant for emotional behavior, determination of stimulus salience, and memory strength under stressful experiences. These functions are typically fulfilled in interplay of amygdala and hippocampus. Therefore, we explored the putative connectivity of GABAergic neurons with the hippocampo-amygdalar projection with the anterograde tracers Phaseolus vulgaris leucoagglutinin (Phal) and Miniruby injected to GAD67-GFP knock-in mice in which GABAergic neurons are labeled by the expression of the gene for green fluorescent protein (GFP) inserted to the GAD1 gene locus (Tamamaki et al. J Comp Neurol 467:60–79, 2003). We found that, while hippocampal axons target all nuclei of the amygdala, the densest fiber plexus was found in the posterior basomedial nucleus. Electron microscopy revealed that the vast majority of contacts in this nucleus were formed by thin fibers making small asymmetrical contacts, predominantly on GFP-negative profiles. However, several asymmetrical contacts could also be seen on GFP-positive profiles. A surprising result was the occasional occurrence of anterogradely labeled symmetrical synapses indicating a GABAergic contribution to the projection from the hippocampus to the amygdala. While hippocampal input to the amygdala appears to be largely excitatory and targets non-GABAergic neurons, our data provide evidence for a direct involvement of GABAergic neurons in the interplay of these regions, either as target in the amygdala or as projection neurons from the hippocampus. These particular “interface neurons” may be of relevance for the information processing in the amygdalo-hippocampal system involved in emotional behavior and memory formation.
机译:杏仁核的GABA能神经元被认为在建立反馈和前馈抑制网络以及介导与情绪行为,刺激显着性确定和压力经历下的记忆力有关的节律性网络活动模式方面起着关键作用。这些功能通常在杏仁核和海马体的相互作用中实现。因此,我们探讨了将GABA能神经元与海马-扁桃体投射与顺行示踪剂菜豆白菜凝集素(Phal)和Miniruby注射到GAD67-GFP敲入小鼠中的假定联系,其中GAB67-GFP基因敲入小鼠的基因表达绿色荧光蛋白(GFP)插入GAD1基因位点(Tamamaki et al。J Comp Neurol 467:60–79,2003)。我们发现,虽然海马轴突靶向杏仁核的所有核,但在后泡状核中发现了最密集的纤维丛。电子显微镜显示该核中的绝大多数接触是由细小的非对称接触的细纤维形成的,主要是在GFP阴性的轮廓上。但是,在GFP阳性谱中也可以看到一些不对称的接触。令人惊讶的结果是偶尔出现顺行标记的对称突触,表明GABA能对从海马到杏仁核的投射做出了贡献。尽管向杏仁核的海马输入似乎主要是兴奋性的,并且靶向非GABA能神经元,但我们的数据提供了GABA能神经元直接参与这些区域相互作用的证据,既可以作为杏仁核的靶标,也可以作为海马的投射神经元。这些特定的“界面神经元”可能与参与情绪行为和记忆形成的杏仁核-海马体系统中的信息处理有关。

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