羟色胺调节非快速眼动睡眠期间齿状回的次低振荡

Gergely F Turi, Sasa Teng, Xinyue Chen, Emily Cy Lim, Carla Dias, Ruining Hu, Ruizhi Wang, Fenghua Zhen, Yueqing Peng
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摘要

在不同的脑区和大脑状态下,神经元的同步活动被组织成具有不同频率和时域的神经元振荡。例如,海马的θ波、γ波和尖波振荡对于记忆的形成以及海马亚区与大脑皮层之间的交流至关重要。在这项研究中,我们利用电生理和光学成像工具研究了齿状回(DG)在睡眠-觉醒周期中的神经元活动。我们发现,在 NREM 睡眠期间,DG 中主要谷氨酸能细胞群的活动被组织成次低振荡(0.01 - 0.03 Hz)。尽管在清醒状态下,DG 被认为是一个稀疏活跃的网络,但我们发现,在 NREM 睡眠期间,50% 的颗粒细胞和约 25% 的苔藓细胞表现出更高的活性。进一步的实验发现,DG 的次低频振荡受到睡眠时节律性血清素释放的调节,血清素的振荡频率相同,但相位相反。对5-羟色胺受体的遗传操作显示,这种神经调节是由5-羟色胺1a受体介导的,而敲除这些受体会导致记忆受损。我们的研究结果为了解 5-HT 系统如何影响睡眠过程中的海马活动模式提供了新的机理。
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Serotonin modulates infraslow oscillation in the dentate gyrus during Non-REM sleep.

Synchronous neuronal activity is organized into neuronal oscillations with various frequency and time domains across different brain areas and brain states. For example, hippocampal theta, gamma and sharp wave oscillations are critical for memory formation and communication between hippocampal subareas and the cortex. In this study, we investigated the neuronal activity of the dentate gyrus (DG) with optical imaging tools during sleep-wake cycles. We found that the activity of major glutamatergic cell populations in the DG is organized into infraslow oscillations (0.01 - 0.03 Hz) during NREM sleep. Although the DG is considered a sparsely active network during wakefulness, we found that 50% of granule cells and about 25% of mossy cells exhibit increased activity during NREM sleep. Further experiments revealed that the infraslow oscillation in the DG was correlated with rhythmic serotonin release during sleep, which oscillates at the same frequency but in an opposite phase. Genetic manipulation of 5-HT receptors revealed that this neuromodulatory regulation is mediated by 5-HT1a receptors and the knockdown of these receptors leads to memory impairment. Together, our results provide novel mechanistic insights into how the 5-HT system can influence hippocampal activity patterns during sleep.

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