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下丘脑前部回路控制应激易感性。

An anterior hypothalamic circuit gates stress vulnerability.

作者信息

Pennington Zachary T, LaBanca Alexa R, Abdel-Raheim Shereen D, Bacon Madeline E, Mahmoud Afra N, Sompolpong Patlapa, Baggetta Austin M, Zaki Yosif, Ko BumJin, Dong Zhe, Smith Alexander Cw, Kenny Paul J, Cai Denise J

机构信息

Nash Family Department of Neuroscience, Icahn School of Medicine at Mount Sinai.

Department of Pharmacology, Icahn School of Medicine at Mount Sinai.

出版信息

bioRxiv. 2024 Oct 28:2024.10.28.620614. doi: 10.1101/2024.10.28.620614.

Abstract

Prior adversity increases susceptibility to subsequent stressful events, but the causal underlying changes in brain circuitry are poorly understood. We harnessed unbiased whole-brain activity mapping to identify circuits that are functionally remodeled by prior adversity. This revealed that the anterior hypothalamic nucleus (AHN) displays heightened stress reactivity in previously stressed mice. This was accompanied by increased functional connectivity between the AHN and a threat-related limbic network. Using Miniscope imaging, we found that neuronal activity in the AHN encodes stressor valence. Moreover, stimulating AHN neurons enhanced, and inhibiting their activity mitigated, reactivity to stressful events. Lastly, silencing amygdala inputs to the AHN abolished the ability of prior adversity to increase stress sensitivity. These findings define a key role of the AHN in gating stress vulnerability by scaling valence signals from the amygdala.

摘要

既往的逆境会增加对随后应激事件的易感性,但大脑回路中潜在的因果变化却知之甚少。我们利用无偏全脑活动图谱来识别因既往逆境而发生功能重塑的回路。这表明,下丘脑前核(AHN)在先前受到应激的小鼠中表现出增强的应激反应性。同时,AHN与一个与威胁相关的边缘网络之间的功能连接也增加了。使用微型显微镜成像,我们发现AHN中的神经元活动对应激源效价进行编码。此外,刺激AHN神经元会增强对应激事件的反应性,而抑制其活动则会减轻这种反应性。最后,沉默杏仁核向AHN的输入消除了既往逆境增加应激敏感性的能力。这些发现确定了AHN在通过缩放来自杏仁核的效价信号来控制应激易感性方面的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/461c/11565748/bccf4d2ee89e/nihpp-2024.10.28.620614v1-f0001.jpg

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