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Altered responsiveness of BNST and amygdala neurons in trauma-induced anxiety

机译:BNST和杏仁核神经元在创伤性焦虑中的反应性改变

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A highly conserved network of brain structures regulates the expression of fear and anxiety in mammals. Many of these structures display abnormal activity levels in post-traumatic stress disorder (PTSD). However, some of them, like the bed nucleus of the stria terminalis (BNST) and amygdala, are comprised of several small sub-regions or nuclei that cannot be resolved with human neuroimaging techniques. Therefore, we used a well-characterized rat model of PTSD to compare neuronal properties in resilient vs PTSD-like rats using patch recordings obtained from different BNST and amygdala regions in vitro . In this model, a persistent state of extreme anxiety is induced in a subset of susceptible rats following predatory threat. Previous animal studies have revealed that the central amygdala (CeA) and BNST are differentially involved in the genesis of fear and anxiety-like states, respectively. Consistent with these earlier findings, we found that between resilient and PTSD-like rats were marked differences in the synaptic responsiveness of neurons in different sectors of BNST and CeA, but whose polarity was region specific. In light of prior data about the role of these regions, our results suggest that control of fear/anxiety expression is altered in PTSD-like rats such that the influence of CeA is minimized whereas that of BNST is enhanced. A model of the amygdalo-BNST interactions supporting the PTSD-like state is proposed.
机译:高度保守的大脑结构网络调节着哺乳动物恐惧和焦虑的表达。这些结构中有许多在创伤后应激障碍(PTSD)中显示出异常的活动水平。但是,其中一些,如终末纹的床核(BNST)和杏仁核,是由几个小的子区域或核组成的,这些子区域或​​核无法用人类的神经成像技术分辨。因此,我们使用了特征明确的PTSD大鼠模型,使用从不同BNST和杏仁核区域体外获得的斑片记录来比较弹性和PTSD样大鼠的神经元特性。在该模型中,掠食性威胁后,在一部分易感大鼠中诱发了极端焦虑的持续状态。先前的动物研究表明,中央杏仁核(CeA)和BNST分别与恐惧和焦虑样状态的发生有关。与这些早期发现一致,我们发现在有弹性和PTSD样大鼠之间,BNST和CeA不同区段的神经元的突触反应能力存在明显差异,但其极性是区域特异性的。根据有关这些区域的作用的先前数据,我们的结果表明,在PTSD样大鼠中,恐惧/焦虑表达的控制发生了改变,从而使CeA的影响最小,而BNST的影响增强。提出了支持类PTSD状态的杏仁核-BNST相互作用模型。

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