Department of Psychology, University of Michigan, Ann Arbor, Michigan 48109.
Neuroscience Institute, New York University, New York, New York 10016.
J Neurosci. 2024 Oct 2;44(40):e1277242024. doi: 10.1523/JNEUROSCI.1277-24.2024.
Neuromodulators act on multiple timescales to affect neuronal activity and behavior. They function as synaptic fine-tuners and master coordinators of neuronal activity across distant brain regions and body organs. While much research on neuromodulation has focused on roles in promoting features of wakefulness and transitions between sleep and wake states, the precise dynamics and functions of neuromodulatory signaling during sleep have received less attention. This review discusses research presented at our minisymposium at the 2024 Society for Neuroscience meeting, highlighting how norepinephrine, dopamine, and acetylcholine orchestrate brain oscillatory activity, control sleep architecture and microarchitecture, regulate responsiveness to sensory stimuli, and facilitate memory consolidation. The potential of each neuromodulator to influence neuronal activity is shaped by the state of the synaptic milieu, which in turn is influenced by the organismal or systemic state. Investigating the effects of neuromodulator release across different sleep substates and synaptic environments offers unique opportunities to deepen our understanding of neuromodulation and explore the distinct computational opportunities that arise during sleep. Moreover, since alterations in neuromodulatory signaling and sleep are implicated in various neuropsychiatric disorders and because existing pharmacological treatments affect neuromodulatory signaling, gaining a deeper understanding of the less-studied aspects of neuromodulators during sleep is of high importance.
神经调质在多个时间尺度上作用于神经元活动和行为。它们作为突触微调器和神经元活动的主协调器,作用于大脑区域和身体器官之间的远距离。虽然神经调质的研究主要集中在促进觉醒特征和睡眠与觉醒状态之间转换的作用上,但睡眠期间神经调质信号的精确动态和功能受到的关注较少。这篇综述讨论了在 2024 年神经科学学会会议上我们的小型专题研讨会展示的研究,强调了去甲肾上腺素、多巴胺和乙酰胆碱如何协调大脑振荡活动,控制睡眠结构和微结构,调节对感觉刺激的反应性,并促进记忆巩固。每种神经调质对神经元活动的影响取决于突触环境的状态,而突触环境又受到机体或系统状态的影响。研究神经调质在不同睡眠亚状态和突触环境下的释放,为深入了解神经调质以及探索睡眠期间出现的独特计算机会提供了独特的机会。此外,由于神经调质信号和睡眠的改变与各种神经精神障碍有关,并且现有的药物治疗会影响神经调质信号,因此深入了解睡眠期间神经调质的这些较少研究的方面非常重要。