Silva Bianca A, Mattucci Camilla, Krzywkowski Piotr, Cuozzo Rachel, Carbonari Laura, Gross Cornelius T
Mouse Biology Unit, European Molecular Biology Laboratory (EMBL), via Ramarini 32, 00015, Monterotondo, Italy.
Eur J Neurosci. 2016 Jun;43(11):1431-9. doi: 10.1111/ejn.13239. Epub 2016 Apr 29.
The amygdala has been shown to be essential for the processing of acute and learned fear across animal species. However, the downstream neural circuits that mediate these fear responses differ according to the nature of the threat, with separate pathways having been identified for predator, conspecific and physically harmful threats. In particular, the dorsomedial part of the ventromedial hypothalamus (VHMdm) is critical for the expression of defensive responses to predators. Here, we tested the hypothesis that this circuit also participates in predator fear memory by transient pharmacogenetic inhibition of the VMHdm and its downstream effector, the dorsal periaqueductal grey, during predator fear learning in the mouse. Our data demonstrate that neural activity in the VMHdm is required for both the acquisition and recall of predator fear memory, whereas that of its downstream effector, the dorsal periaqueductal grey, is required only for the acute expression of fear. These findings are consistent with a role for the medial hypothalamus in encoding an internal emotional state of fear.
杏仁核已被证明对于跨动物物种的急性和习得性恐惧的处理至关重要。然而,介导这些恐惧反应的下游神经回路因威胁的性质而异,针对捕食者、同种个体和身体有害威胁已确定了不同的途径。特别是,腹内侧下丘脑的背内侧部分(VHMdm)对于对捕食者的防御反应的表达至关重要。在此,我们通过在小鼠捕食者恐惧学习过程中对VMHdm及其下游效应器导水管周围灰质背侧进行短暂的药物遗传学抑制,来测试该回路也参与捕食者恐惧记忆的假设。我们的数据表明,VMHdm中的神经活动对于捕食者恐惧记忆的获取和回忆都是必需的,而其下游效应器导水管周围灰质背侧的神经活动仅在恐惧的急性表达中是必需的。这些发现与内侧下丘脑在编码内部恐惧情绪状态中的作用一致。