Division of Glial Disease and Therapeutics, Center for Translational Neuromedicine, University of Copenhagen, Copenhagen, Denmark.
Division of Glial Disease and Therapeutics, Center for Translational Neuromedicine, Department of Neurosurgery, University of Rochester Medical Center, Rochester, NY, USA.
Nat Neurosci. 2022 Aug;25(8):1059-1070. doi: 10.1038/s41593-022-01102-9. Epub 2022 Jul 7.
Sleep has a complex micro-architecture, encompassing micro-arousals, sleep spindles and transitions between sleep stages. Fragmented sleep impairs memory consolidation, whereas spindle-rich and delta-rich non-rapid eye movement (NREM) sleep and rapid eye movement (REM) sleep promote it. However, the relationship between micro-arousals and memory-promoting aspects of sleep remains unclear. In this study, we used fiber photometry in mice to examine how release of the arousal mediator norepinephrine (NE) shapes sleep micro-architecture. Here we show that micro-arousals are generated in a periodic pattern during NREM sleep, riding on the peak of locus-coeruleus-generated infraslow oscillations of extracellular NE, whereas descending phases of NE oscillations drive spindles. The amplitude of NE oscillations is crucial for shaping sleep micro-architecture related to memory performance: prolonged descent of NE promotes spindle-enriched intermediate state and REM sleep but also associates with awakenings, whereas shorter NE descents uphold NREM sleep and micro-arousals. Thus, the NE oscillatory amplitude may be a target for improving sleep in sleep disorders.
睡眠具有复杂的微观结构,包括微觉醒、睡眠纺锤波和睡眠阶段之间的转换。碎片化的睡眠会损害记忆的巩固,而富含纺锤波和 delta 波的非快速眼动 (NREM) 睡眠和快速眼动 (REM) 睡眠则会促进记忆的巩固。然而,微觉醒与促进睡眠的记忆方面之间的关系尚不清楚。在这项研究中,我们使用纤维光度测定法在小鼠中研究了去甲肾上腺素 (NE) 释放如何塑造睡眠的微观结构。我们在这里表明,微觉醒是在 NREM 睡眠期间以周期性模式产生的,伴随着蓝斑核产生的细胞外 NE 超慢波的峰值,而 NE 振荡的下降阶段则驱动纺锤波。NE 振荡的幅度对于塑造与记忆表现相关的睡眠微观结构至关重要:NE 下降时间延长会促进富含纺锤波的中间状态和 REM 睡眠,但也与觉醒有关,而 NE 下降时间较短则维持 NREM 睡眠和微觉醒。因此,NE 振荡幅度可能是改善睡眠障碍中睡眠的目标。