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抑制性中间神经元调节小鼠蓝斑核去甲肾上腺素能神经元的相位活动及其功能意义。

Inhibitory interneurons regulate phasic activity of noradrenergic neurons in the mouse locus coeruleus and functional implications.

机构信息

Department of Life Science, College of Life Science, National Taiwan University, Taipei, 10617, Taiwan.

Departments of Biomedical Sciences and Medical Research, Chung-Shan Medical University and Chung-Shan Medical University Hospital, Taichung, 40201, Taiwan.

出版信息

J Physiol. 2020 Sep;598(18):4003-4029. doi: 10.1113/JP279557. Epub 2020 Jul 21.

Abstract

KEY POINTS

The locus coeruleus (LC) contains noradrenergic (NA) neurons that respond to novel stimuli in the environment with phasic activation to initiate an orienting response; phasic LC activation is also triggered by stimuli, representing the outcome of task-related decision processes, to facilitate ensuing behaviours and help optimize task performance. Here, we report that LC-NA neurons exhibit bursts of action potentials in vitro resembling phasic LC activation in vivo, and the activity is gated by inhibitory interneurons (I-INs) located in the peri-LC. We also observe that inhibition of peri-LC I-INs enhances prepulse inhibition and axons from cortical areas that play important roles in evaluating the cost/reward of a stimulus synapse on both peri-LC I-INs and LC-NA neurons. The results help us understand the cellular mechanisms underlying the generation and regulation of phasic LC activation with a focus on the role of peri-LC I-INs.

ABSTRACT

Noradrenergic (NA) neurons in the locus coeruleus (LC) have global axonal projection to the brain. These neurons discharge action potentials phasically in response to either novel stimuli in the environment to initiate an orienting behaviour or stimuli representing the outcome of task-related decision processes to facilitate ensuing behaviours and help optimize task performance. Nevertheless, the cellular mechanisms underlying the generation and regulation of phasic LC activation remain unknown. We report here that LC-NA neurons recorded in brain slices exhibit bursts of action potentials that resembled the phasic activation-pause profile observed in animals. The activity was referred to as phasic-like activity (PLA) and was suppressed and enhanced by blocking excitatory and inhibitory synaptic transmissions, respectively. These results suggest the existence of a local circuit to drive PLA, and the activity could be regulated by the excitatory-inhibitory balance of the circuit. In support of this notion, we located a population of inhibitory interneurons (I-INs) in the medial part of the peri-LC that exerted feedforward inhibition of LC-NA neurons through GABAergic and glycinergic transmissions. Selective inhibition of peri-LC I-INs with chemogenetic methods could enhance PLA in brain slices and increase prepulse inhibition in animals. Moreover, axons from the orbitofrontal and prelimbic cortices, which play important roles in evaluating the cost/reward of a stimulus, synapse on both peri-LC I-INs and LC-NA neurons. These observations demonstrate functional roles of peri-LC I-INs in integrating inputs of the frontal cortex onto LC-NA neurons and gating the phasic LC output.

摘要

要点

蓝斑核(LC)包含去甲肾上腺素能(NA)神经元,这些神经元对环境中的新刺激以相位激活做出反应,从而引发定向反应;刺激也会引发相位 LC 激活,以促进随后的行为,并帮助优化任务表现。在这里,我们报告 LC-NA 神经元在体外表现出类似于体内相位 LC 激活的动作电位爆发,并且该活动由位于 LC 周围的抑制性中间神经元(I-IN)门控。我们还观察到,抑制 LC 周围的 I-IN 会增强预脉冲抑制,并且来自皮层区域的轴突在评估刺激的成本/回报方面发挥重要作用,它们与 LC 周围的 I-IN 和 LC-NA 神经元都形成突触。这些结果有助于我们了解相位 LC 激活的产生和调节的细胞机制,重点是 LC 周围的 I-IN 的作用。

摘要

蓝斑核(LC)中的去甲肾上腺素能(NA)神经元具有向大脑的全局轴突投射。这些神经元以相位方式放电,对环境中的新刺激或代表与任务相关的决策过程结果的刺激做出反应,以促进随后的行为并帮助优化任务表现。然而,相位 LC 激活的产生和调节的细胞机制仍不清楚。我们在此报告,在脑切片中记录的 LC-NA 神经元表现出动作电位爆发,类似于在动物中观察到的相位激活-暂停模式。该活动被称为类似相位的活动(PLA),分别通过阻断兴奋性和抑制性突触传递来抑制和增强。这些结果表明存在一个局部回路来驱动 PLA,并且该活动可以通过回路的兴奋性-抑制性平衡来调节。支持这一观点,我们在 LC 周围的内侧部分定位了一群抑制性中间神经元(I-IN),它们通过 GABA 能和甘氨酸能传递对 LC-NA 神经元施加前馈抑制。化学遗传方法选择性抑制 LC 周围的 I-IN 可以增强脑切片中的 PLA,并增加动物中的预脉冲抑制。此外,来自眶额和前额叶皮层的轴突在评估刺激的成本/回报方面发挥重要作用,它们与 LC 周围的 I-IN 和 LC-NA 神经元形成突触。这些观察结果表明,LC 周围的 I-IN 在整合前额叶皮层的输入到 LC-NA 神经元上以及门控 LC 的相位输出方面发挥着功能作用。

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