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新颖性检索-灭绝范式导致远程恐惧记忆的持久衰减。

A novelty-retrieval-extinction paradigm leads to persistent attenuation of remote fear memories.

机构信息

Department of Physiology, Yiyang Medical College, Yiyang, Hunan, 413000, China.

Department of Anatomy and Neurobiology, School of Basic Medical Science, Central South University, Changsha, Hunan, 410013, China.

出版信息

Sci Rep. 2020 Feb 24;10(1):3319. doi: 10.1038/s41598-020-60176-2.

Abstract

Exposure to a novel environment can enhance the extinction of recent contextual fear in mice. This has been explained by a tagging and capture hypothesis. Consistently, we show in mice that exposure to a novel environment before extinction training promoted the extinction of recent auditory fear. However, such a promoting effect of novelty was absent for remote memories. In the present study, we replaced the regular extinction training with a retrieval-extinction session which capitalized on a reconsolidation window. When novelty exposure was followed by a retrieval-extinction session, remote fear was distinguished more easily and permanently. We have termed it as a "novelty-retrieval-extinction" paradigm. This paradigm played a greater role in the extinction of remote fear when fear conditioning and retrieval-extinction occurred in two different contexts other than in one identical context. The mechanism underlying the facilitating effect of this paradigm might involve up-regulation of histone acetylation in the hippocampus, which has been reported to increase functional and structural neuroplasticity. The present work proposes an effective, drug-free paradigm for the extinction of remote fear, which could be easily adapted in humans with least side effects.

摘要

暴露于新环境可以增强小鼠近期情境恐惧的消退。这一现象可以用标记和捕获假说来解释。一致地,我们在小鼠中表明,在消退训练之前暴露于新环境可以促进近期听觉恐惧的消退。然而,这种新奇性的促进作用对于远程记忆并不存在。在本研究中,我们用检索-消退训练取代了常规的消退训练,利用了再巩固窗口。当新奇性暴露后紧接着进行检索-消退训练时,远程恐惧更容易且更持久地被区分开来。我们将其命名为“新奇-检索-消退”范式。当恐惧条件反射和检索-消退发生在两个不同的环境中,而不是在一个相同的环境中时,这种范式在远程恐惧的消退中起着更大的作用。这种范式的促进作用的机制可能涉及海马体中组蛋白乙酰化的上调,这已被报道可以增加功能和结构的神经可塑性。本研究提出了一种有效、无药物的远程恐惧消退范式,它可以在人类中很容易地适应,副作用最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d27/7039928/24003ab444f9/41598_2020_60176_Fig1_HTML.jpg

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