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非经典皮质-杏仁核通路对飞行的自上而下控制。

Top-down control of flight by a non-canonical cortico-amygdala pathway.

机构信息

Department of Psychology, Tulane University, New Orleans, LA, USA.

Tulane Brain Institute, Tulane University, New Orleans, LA, USA.

出版信息

Nature. 2024 Jan;625(7996):743-749. doi: 10.1038/s41586-023-06912-w. Epub 2024 Jan 17.

Abstract

Survival requires the selection of appropriate behaviour in response to threats, and dysregulated defensive reactions are associated with psychiatric illnesses such as post-traumatic stress and panic disorder. Threat-induced behaviours, including freezing and flight, are controlled by neuronal circuits in the central amygdala (CeA); however, the source of neuronal excitation of the CeA that contributes to high-intensity defensive responses is unknown. Here we used a combination of neuroanatomical mapping, in vivo calcium imaging, functional manipulations and electrophysiology to characterize a previously unknown projection from the dorsal peduncular (DP) prefrontal cortex to the CeA. DP-to-CeA neurons are glutamatergic and specifically target the medial CeA, the main amygdalar output nucleus mediating conditioned responses to threat. Using a behavioural paradigm that elicits both conditioned freezing and flight, we found that CeA-projecting DP neurons are activated by high-intensity threats in a context-dependent manner. Functional manipulations revealed that the DP-to-CeA pathway is necessary and sufficient for both avoidance behaviour and flight. Furthermore, we found that DP neurons synapse onto neurons within the medial CeA that project to midbrain flight centres. These results elucidate a non-canonical top-down pathway regulating defensive responses.

摘要

生存需要根据威胁选择适当的行为,而失调的防御反应与创伤后应激和恐慌症等精神疾病有关。威胁诱导的行为,包括冻结和逃跑,由中央杏仁核(CeA)中的神经元回路控制;然而,导致高强度防御反应的 CeA 神经元兴奋的来源尚不清楚。在这里,我们使用神经解剖学图谱、体内钙成像、功能操作和电生理学的组合,来描述从前未知的来自背侧被盖(DP)前额叶皮层到 CeA 的投射。DP 到 CeA 的神经元是谷氨酸能的,并且专门针对内侧 CeA 进行靶向,内侧 CeA 是介导对威胁的条件反应的主要杏仁核输出核。使用一种既能引发条件性冻结又能引发飞行的行为范式,我们发现 DP 投射到 CeA 的神经元以依赖上下文的方式被高强度威胁激活。功能操作表明,DP 到 CeA 的通路对于回避行为和飞行都是必要且充分的。此外,我们发现 DP 神经元与投射到中脑飞行中心的内侧 CeA 内的神经元形成突触。这些结果阐明了调节防御反应的非经典自上而下的途径。

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