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上行迷走感觉和中枢去甲肾上腺素能通路调节雄性大鼠被动回避记忆的提取。

Ascending Vagal Sensory and Central Noradrenergic Pathways Modulate Retrieval of Passive Avoidance Memory in Male Rats.

机构信息

Department of Psychology, Program in Neuroscience, Florida State University, Tallahassee, Florida, USA.

出版信息

J Neurosci Res. 2024 Oct;102(10):e25390. doi: 10.1002/jnr.25390.

Abstract

Visceral feedback from the body is often subconscious, but plays an important role in guiding motivated behaviors. Vagal sensory neurons relay "gut feelings" to noradrenergic (NA) neurons in the caudal nucleus of the solitary tract (cNTS), which in turn project to the anterior ventrolateral bed nucleus of the stria terminalis (vlBNST) and other hypothalamic-limbic forebrain regions. Prior work supports a role for these circuits in modulating memory consolidation and extinction, but a potential role in retrieval of conditioned avoidance remains untested. To examine this, adult male rats underwent passive avoidance conditioning. We then lesioned gut-sensing vagal afferents by injecting cholecystokinin-conjugated saporin toxin (CSAP) into the vagal nodose ganglia (Experiment 1), or lesioned NA inputs to the vlBNST by injecting saporin toxin conjugated to an antibody against dopamine-beta hydroxylase (DSAP) into the vlBNST (Experiment 2). When avoidance behavior was later assessed, rats with vagal CSAP lesions or NA DSAP lesions displayed significantly increased conditioned passive avoidance. These new findings support the view that gut vagal afferents and the cNTS-to-vlBNST circuit play a role in modulating the expression/retrieval of learned passive avoidance. Overall, our data suggest a dynamic modulatory role of vagal sensory feedback to the limbic forebrain in integrating interoceptive signals with contextual cues that elicit conditioned avoidance behavior.

摘要

来自身体的内脏反馈通常是潜意识的,但在指导动机行为方面起着重要作用。迷走感觉神经元将“直觉”传递到孤束核尾侧部的去甲肾上腺素能 (NA) 神经元,然后投射到终纹床核腹外侧部 (vlBNST) 和其他下丘脑-边缘前脑区域。先前的工作支持这些回路在调节记忆巩固和遗忘中的作用,但在条件回避的检索中潜在作用仍未得到检验。为了检验这一点,成年雄性大鼠进行了被动回避训练。然后,我们通过将胆囊收缩素缀合的 SAP 毒素 (CSAP) 注入迷走神经结状神经节来损伤感应内脏的迷走传入神经 (实验 1),或者通过将针对多巴胺-β羟化酶的 SAP 毒素缀合抗体注入 vlBNST 来损伤 NA 输入到 vlBNST (实验 2)。当稍后评估回避行为时,具有迷走神经 CSAP 损伤或 NA DSAP 损伤的大鼠表现出明显增加的条件性被动回避。这些新发现支持这样一种观点,即内脏迷走传入和 CNTS 到 vlBNST 回路在调节习得性被动回避的表达/检索中起作用。总的来说,我们的数据表明,迷走感觉反馈对边缘前脑的动态调节作用,将内脏感觉信号与引发条件回避行为的上下文线索整合在一起。

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