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终纹床核的瞬态活动与应激环境中的趋近行为相关,并受臂旁核调节。

BNST transient activity associates with approach behavior in a stressful environment and is modulated by the parabrachial nucleus.

作者信息

Jaramillo A A, Williford K M, Marshall C, Winder D G, Centanni S W

机构信息

Vanderbilt University School of Medicine, Nashville, TN, USA.

Dept. Mol. Phys. & Biophysics, Nashville, TN, USA.

出版信息

Neurobiol Stress. 2020 Aug 1;13:100247. doi: 10.1016/j.ynstr.2020.100247. eCollection 2020 Nov.

Abstract

Studies demonstrate a role for the bed nucleus of the stria terminalis (BNST) in modulating affective behavior and stress-reward integration. To explore the dynamic nature of BNST activity associated with anxiety-like behavior in a stress-inducing context, we utilized fiber photometry and detected BNST calcium transients in mice during the novelty-suppressed feeding task (NSFT). Phasic BNST activity emerged time-locked to novel object or food pellet approach during NSFT. The parabrachial nucleus (PBN) has a large input to the BNST and is thought to function as a danger signal, in arousal responses and in feeding behavior. To explore a potential role for the PBN as a contributor to BNST activity in NSFT, we investigated whether chemogenetic regulation of PBN activity altered the dynamic BNST response synchronized to NSFT approach behavior. We found that activation of the hM3D(G) DREADD in the PBN enhanced the observed transient signal in the BNST synchronized to the consummatory food approach, and was associated at the behavioral level with increased latency to consume food. Because the PBN has multiple efferent pathways, we next used a transsynaptic anterograde AAV-based strategy to express hM3D(G) specifically in PBN-innervated BNST (BNST) neurons in male and female mice. Activation of hM3D(G) in these BNST neurons increased latency to consume food in female, but not male mice. To further explore the population of BNST neurons contributing to phasic BNST activity associated with NSFT, we turned to PKCδ neurons in BNST. BNST(PKCδ) neurons are implicated in stress and food-related behavior, and we previously found that the expression of this kinase is regulated in the BNST by stress in a sex-dependent manner. Here, we demonstrate close apposition of CGRP, a marker of PBN terminals, adjacent to BNST(PKCδ) cells. Finally, we find that PKCδ-expressing BNST cells exhibit a large transient signal synchronized to the consummatory food approach similar to that seen with bulk BNST activity measures. Taken together these data demonstrate phasic BNST activity at a global and cell-specific level that is driven in part by PBN activity at the time of NSFT consummatory approach behavior.

摘要

研究表明终纹床核(BNST)在调节情感行为和应激-奖赏整合中发挥作用。为了探究在应激诱导情境下与焦虑样行为相关的BNST活动的动态特性,我们利用光纤光度法在新奇抑制摄食任务(NSFT)期间检测了小鼠BNST中的钙瞬变。在NSFT期间,阶段性BNST活动出现并与新奇物体或食物颗粒靠近的时间同步。臂旁核(PBN)对BNST有大量输入,并且被认为在唤醒反应和摄食行为中作为危险信号发挥作用。为了探究PBN在NSFT中对BNST活动的潜在贡献作用,我们研究了PBN活动的化学遗传调控是否会改变与NSFT接近行为同步的动态BNST反应。我们发现激活PBN中的hM3D(G) DREADD增强了与摄食接近行为同步的BNST中观察到的瞬态信号,并且在行为水平上与进食延迟增加相关。由于PBN有多个传出通路,接下来我们使用基于AAV的跨突触顺行策略在雄性和雌性小鼠的PBN支配的BNST(BNST)神经元中特异性表达hM3D(G)。激活这些BNST神经元中的hM3D(G)会增加雌性小鼠而非雄性小鼠的进食延迟。为了进一步探究对与NSFT相关的阶段性BNST活动有贡献的BNST神经元群体,我们转向了BNST中的PKCδ神经元。BNST(PKCδ)神经元与应激和食物相关行为有关,并且我们之前发现这种激酶的表达在BNST中受到应激的性别依赖性调控。在这里,我们证明了PBN终末的标志物降钙素基因相关肽(CGRP)紧邻BNST(PKCδ)细胞。最后,我们发现表达PKCδ的BNST细胞表现出与摄食接近行为同步的大瞬态信号,类似于在整体BNST活动测量中看到的信号。综合这些数据表明,在NSFT摄食接近行为时,BNST在整体和细胞特异性水平上的阶段性活动部分是由PBN活动驱动的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c37b/7739036/00356f31178f/gr1.jpg

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