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丘脑-杏仁核环路是远程恐惧记忆消除的基础。

A thalamo-amygdalar circuit underlying the extinction of remote fear memories.

机构信息

Laboratory of Neuroepigenetics, Brain Mind Institute, School of Life Sciences, École Polytechnique Fédérale Lausanne, Lausanne, Switzerland.

National Research Council of Italy, Institute of Neuroscience, Humanitas Clinical and Research Center - IRCCS, Rozzano, Milan, Italy.

出版信息

Nat Neurosci. 2021 Jul;24(7):964-974. doi: 10.1038/s41593-021-00856-y. Epub 2021 May 20.

Abstract

Fear and trauma generate some of the longest-lived memories. Despite the corresponding need to understand how such memories can be attenuated, the underlying brain circuits remain unknown. Here, combining viral tracing, neuronal activity mapping, fiber photometry, chemogenetic and closed-loop optogenetic manipulations in mice, we show that the extinction of remote (30-day-old) fear memories depends on thalamic nucleus reuniens (NRe) inputs to the basolateral amygdala (BLA). We found that remote, but not recent (1-day-old), fear extinction activates NRe-to-BLA inputs, which become potentiated upon fear reduction. Furthermore, both monosynaptic NRe-to-BLA and total NRe activity increase shortly before freezing cessation, suggesting that the NRe registers and transmits safety signals to the BLA. Accordingly, pan-NRe and pathway-specific NRe-to-BLA inhibition impairs, whereas their activation facilitates, remote fear extinction. These findings identify the NRe as a crucial BLA regulator for extinction and provide the first functional description of the circuits underlying the attenuation of consolidated fear memories.

摘要

恐惧和创伤会产生一些持续时间最长的记忆。尽管有必要了解这些记忆是如何减弱的,但相关的大脑回路仍然未知。在这里,我们结合病毒追踪、神经元活动映射、光纤光度测定、化学遗传学和闭环光遗传学操作,在小鼠中表明,远距离(30 天)恐惧记忆的消除取决于丘脑核再结合(NRe)对基底外侧杏仁核(BLA)的输入。我们发现,远距离但不是最近(1 天)的恐惧消除会激活 NRe 到 BLA 的输入,这些输入在恐惧减少时会增强。此外,在冻结停止前不久,单突触 NRe 到 BLA 和总 NRe 活动都会增加,这表明 NRe 向 BLA 记录并传递安全信号。因此,NRe 的广泛抑制和特定途径的 NRe 到 BLA 的抑制会损害远距离恐惧的消除,而它们的激活则会促进这种消除。这些发现确定了 NRe 作为 BLA 中对消除至关重要的调节剂,并为巩固恐惧记忆衰减的相关回路提供了第一个功能描述。

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