Toth Brandon A, Burgess Christian R
Michigan Neuroscience Institute, University of Michigan, Ann Arbor, Michigan 48109.
Neuroscience Graduate Program, University of Michigan, Ann Arbor, Michigan 48109.
J Neurosci. 2025 Feb 26;45(9):e1374242024. doi: 10.1523/JNEUROSCI.1374-24.2024.
Based on the activity of dopamine (DA) neurons during behavioral states, the DA system has long been thought to be foundational in regulating sleep-wake behavior; over the past decade, advances in circuit manipulation and recording techniques have strengthened this perspective. Recently, several studies have demonstrated that DA release in regions of the limbic system is important in the promotion of REM sleep. Yet how DA dynamics change within bouts of sleep, how these changes are regulated, and whether they influence future state changes remains unclear. To address these questions, in mice of both sexes we used in vivo fiber photometry and inhibitory optogenetics to identify a specific role of DA transients in the nucleus accumbens (NAcc) in state transitions from NREM sleep. We found that DA transients increase their frequency and amplitude over the duration of NREM sleep and that this increase is more pronounced during NREM bouts that transition into REM sleep. Next, we found that DA transients in NREM sleep are influenced by changes in REM sleep pressure. Finally, we show that transient DA release in the NAcc plays a functional role in regulating the timing of REM sleep entrances, as inhibition of midbrain DA neuron terminals in the NAcc prolonged bouts of NREM sleep and decreased the frequency of bouts of REM sleep. These findings demonstrate that DA release in the NAcc is dynamically regulated by sleep pressure and has a functional role in transitions from NREM sleep, particularly those into REM sleep.
基于多巴胺(DA)神经元在行为状态期间的活动,长期以来人们一直认为DA系统是调节睡眠-觉醒行为的基础;在过去十年中,电路操纵和记录技术的进步强化了这一观点。最近,几项研究表明,边缘系统区域的DA释放对促进快速眼动睡眠很重要。然而,DA在睡眠过程中的动态变化情况、这些变化是如何被调节的,以及它们是否会影响未来的状态变化,仍然不清楚。为了解决这些问题,我们在雌雄小鼠中使用体内光纤光度法和抑制性光遗传学,来确定伏隔核(NAcc)中DA瞬变在从非快速眼动睡眠的状态转变中的特定作用。我们发现,在非快速眼动睡眠期间,DA瞬变的频率和幅度会随着时间增加,并且在向快速眼动睡眠转变的非快速眼动阶段,这种增加更为明显。接下来,我们发现非快速眼动睡眠中的DA瞬变受快速眼动睡眠压力变化的影响。最后,我们表明,NAcc中的DA瞬态释放,在调节快速眼动睡眠开始时间方面发挥着功能性作用,因为抑制NAcc中的中脑DA神经元终末会延长非快速眼动睡眠阶段,并降低快速眼动睡眠阶段的频率。这些发现表明,NAcc中的DA释放受睡眠压力动态调节,并在从非快速眼动睡眠的转变中发挥功能性作用,特别是那些向快速眼动睡眠的转变。