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机械诱发的防御性攻击受下丘脑前核中γ-氨基丁酸能神经元的控制。

Mechanically evoked defensive attack is controlled by GABAergic neurons in the anterior hypothalamic nucleus.

作者信息

Xie Zhiyong, Gu Huating, Huang Meizhu, Cheng Xinyu, Shang Congping, Tao Ting, Li Dapeng, Xie Yuan, Zhao Jidong, Lu Wei, Zhang Zhibin, Zhan Cheng, Tang Zongxiang, Zhang Fan, Cao Peng

机构信息

National Institute of Biological Sciences, Beijing, China.

College of Life Sciences, Beijing Normal University, Beijing, China.

出版信息

Nat Neurosci. 2022 Jan;25(1):72-85. doi: 10.1038/s41593-021-00985-4. Epub 2022 Jan 3.

Abstract

Innate defensive behaviors triggered by environmental threats are important for animal survival. Among these behaviors, defensive attack toward threatening stimuli (for example, predators) is often the last line of defense. How the brain regulates defensive attack remains poorly understood. Here we show that noxious mechanical force in an inescapable context is a key stimulus for triggering defensive attack in laboratory mice. Mechanically evoked defensive attacks were abrogated by photoinhibition of vGAT neurons in the anterior hypothalamic nucleus (AHN). The vGAT AHN neurons encoded the intensity of mechanical force and were innervated by brain areas relevant to pain and attack. Activation of these neurons triggered biting attacks toward a predator while suppressing ongoing behaviors. The projection from vGAT AHN neurons to the periaqueductal gray might be one AHN pathway participating in mechanically evoked defensive attack. Together, these data reveal that vGAT AHN neurons encode noxious mechanical stimuli and regulate defensive attack in mice.

摘要

由环境威胁引发的先天性防御行为对动物生存至关重要。在这些行为中,对威胁性刺激(如捕食者)的防御性攻击通常是最后一道防线。大脑如何调节防御性攻击仍知之甚少。在这里,我们表明,在无法逃避的情境中施加的有害机械力是触发实验室小鼠防御性攻击的关键刺激因素。通过对下丘脑前核(AHN)中vGAT神经元进行光抑制,可消除机械诱发的防御性攻击。vGAT AHN神经元编码机械力的强度,并接受与疼痛和攻击相关的脑区的神经支配。激活这些神经元会触发对捕食者的撕咬攻击,同时抑制正在进行的行为。从vGAT AHN神经元到导水管周围灰质的投射可能是参与机械诱发防御性攻击的一条AHN通路。总之,这些数据表明,vGAT AHN神经元编码有害机械刺激并调节小鼠的防御性攻击。

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