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γ-氨基丁酸能机制对杏仁核分类性化学感觉信号反应的作用。

GABAergic mechanisms contributing to categorical amygdala responses to chemosensory signals.

作者信息

Westberry Jenne M, Meredith Michael

机构信息

Program in Neuroscience and Department Biological Science, Florida State University, Tallahassee, FL 32306-4295, USA.

出版信息

Neuroscience. 2016 Sep 7;331:186-96. doi: 10.1016/j.neuroscience.2016.06.020. Epub 2016 Jun 18.

Abstract

Chemosensory stimuli from conspecific and heterospecific animals, elicit categorically different immediate-early gene response-patterns in medial amygdala in male hamsters and mice. We previously showed that conspecific signals activate posterior (MeP) as well as anterior medial amygdala (MeA), and especially relevant heterospecific signals such as chemosensory stimuli from potential predators also activate MeP in mice. Other heterospecific chemosignals activate MeA, but not MeP. Here we show that male hamster amygdala responds significantly differentially to different conspecific signals, by activating different proportions of cells of different phenotype, possibly leading to differential activation of downstream circuits. Heterospecific signals that fail to activate MeP do activate GABA-immunoreactive cells in the adjacent caudal main intercalated nucleus (mICNc) and elicit selective suppression of MeP cells bearing GABA-Receptors, suggesting GABA inhibition in MeP by GABAergic cells in mICNc. Overall, work presented here suggests that medial amygdala may discriminate between important conspecific social signals, distinguish them from the social signals of other species and convey that information to brain circuits eliciting appropriate social behavior.

摘要

来自同种和异种动物的化学感觉刺激,在雄性仓鼠和小鼠的内侧杏仁核中引发截然不同的即刻早期基因反应模式。我们之前表明,同种信号会激活后内侧杏仁核(MeP)以及前内侧杏仁核(MeA),而特别相关的异种信号,如来自潜在捕食者的化学感觉刺激,在小鼠中也会激活MeP。其他异种化学信号会激活MeA,但不会激活MeP。在这里我们表明,雄性仓鼠杏仁核对不同的同种信号有显著不同的反应,通过激活不同比例的不同表型细胞,这可能导致下游回路的差异激活。未能激活MeP的异种信号确实会激活相邻尾侧主插入核(mICNc)中的GABA免疫反应性细胞,并引发对携带GABA受体的MeP细胞的选择性抑制,这表明mICNc中的GABA能细胞对MeP有GABA抑制作用。总体而言,本文所呈现的研究表明,内侧杏仁核可能能够区分重要的同种社会信号,将它们与其他物种的社会信号区分开来,并将该信息传递给引发适当社会行为的脑回路。

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