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Prepronociceptin-Expressing Neurons in the Extended Amygdala Encode and Promote Rapid Arousal Responses to Motivationally Salient Stimuli

机译:在延长的杏仁酵母中表达前孕妇的神经元编码并促进快速唤醒反应,以促进阳光刺激

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Motivational states consist of cognitive, emotional, and physiological components controlled by multiple brain regions. An integral component of this neural circuitry is the bed nucleus of the stria terminalis (BNST). Here, we identify that neurons within BNST that express the gene prepronociceptin ( Pnoc BNST ) modulate rapid changes in physiological arousal that occur upon exposure to motivationally salient stimuli. Using in?vivo two-photon calcium imaging, we find that Pnoc BNST neuronal responses directly correspond with rapid increases in pupillary size when mice are exposed to aversive and rewarding odors. Furthermore, optogenetic activation of these neurons increases pupillary size and anxiety-like behaviors but does not induce approach, avoidance, or locomotion. These findings suggest that excitatory responses in Pnoc BNST neurons encode rapid arousal responses that modulate anxiety states. Further histological, electrophysiological, and single-cell RNA sequencing data reveal that Pnoc BNST neurons are composed of genetically and anatomically identifiable subpopulations that may differentially tune rapid arousal responses to motivational stimuli.
机译:励志态由多脑区控制的认知,情绪和生理成分组成。该神经电路的整体组分是Stria末端(BNST)的床核。在这里,我们鉴定了BNST内的神经元,其表达基因预孕皮肤蛋白(Pnoc BNST)调节暴露于动机阳光刺激后发生的生理唤起的快速变化。使用在αvivo两光子钙成像中,发现当小鼠暴露于厌恶和奖励气味时,Pnoc BNST神经元反应直接对应于瞳孔大小的快速增加。此外,这些神经元的致敏活化增加了瞳孔大小和类似焦虑的行为,但不会引起接近,避免或运动。这些研究结果表明,Pnoc BNST神经元中的兴奋反应编码了调节焦虑状态的快速唤醒反应。进一步的组织学,电生理学和单细胞RNA测序数据揭示了Pnoc BNST神经元由遗传和解剖学上可识别的群体组成,其可以差异调节快速唤醒对促进刺激的反应。
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