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新奇环境暴露促进幼年小鼠的长期情境恐惧记忆形成:行为标记的证据。

Exposure to Novelty Promotes Long-Term Contextual Fear Memory Formation in Juvenile Mice: Evidence for a Behavioral Tagging.

机构信息

Department of Pharmacology, College of Medicine, National Cheng Kung University, No. 1, University Rd., Tainan, 70101, Taiwan.

Institute of Basic Medical Sciences, College of Medicine, National Cheng Kung University, Tainan, Taiwan.

出版信息

Mol Neurobiol. 2020 Sep;57(9):3956-3968. doi: 10.1007/s12035-020-02005-1. Epub 2020 Jul 6.

Abstract

Episodic memories acquired early in life are fragile and rapidly forgotten in both humans and nonhuman animals. However, early life experiences have been documented to profoundly affect brain function and physiology throughout life, suggesting that in certain circumstances, the developing brain is capable of producing long-term memory (LTM). In this study, we asked whether exposure to a novel environment, a process named "behavioral tagging," may promote the persistence of weak memories in male juvenile mice. Using a contextual fear conditioning (CFC) paradigm, we found that a weak training protocol, which typically induces a transient form of memory, results in LTM when paired with an exploration to a novel but not a familiar environment that occurs close in time to the training session. The promoting effect of the novel context exploration (NCE) on CFC-LTM formation is dependent on the activation of dopamine DD receptors and requires novel protein synthesis in the dorsal hippocampus. Moreover, NCE increases the size of overlapping CA1 neuronal ensembles engaged by CFC and NCE. These results provide direct support for the existence of a behavioral tagging process, in which exposure to novelty provides newly synthesized proteins to stabilize the contextual fear memory trace in juvenile mice.

摘要

个体早期获得的情景记忆非常脆弱,在人和非人类动物中都会迅速遗忘。然而,已有研究记录表明,早期生活经历会深刻影响大脑功能和生理学,这表明在某些情况下,发育中的大脑能够产生长期记忆(LTM)。在这项研究中,我们探讨了暴露于新环境(称为“行为标记”)是否可以促进雄性幼年小鼠中弱记忆的持久性。使用情景恐惧条件反射(CFC)范式,我们发现,当与接近训练时间的新环境而不是熟悉环境的探索相结合时,一种典型诱导短暂记忆的弱训练方案会导致 LTM。新环境探索(NCE)对 CFC-LTM 形成的促进作用取决于多巴胺 DD 受体的激活,并且需要在背侧海马体中新的蛋白质合成。此外,NCE 增加了由 CFC 和 NCE 激活的重叠 CA1 神经元集合的大小。这些结果为行为标记过程的存在提供了直接支持,在该过程中,暴露于新奇事物为稳定幼年小鼠的情景恐惧记忆痕迹提供了新合成的蛋白质。

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