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在睡眠中醒来时,鼠类皮层神经血管耦联和血液动力学的血清素调节作用。

Serotonergic regulation of cortical neurovascular coupling and hemodynamics upon awakening from sleep in mice.

机构信息

Sleep Disorders Project, Tokyo Metropolitan Institute of Medical Science, Tokyo, Japan.

Department of Electronics, Graduate School of Engineering, Tohoku Institute of Technology, Sendai, Japan.

出版信息

J Cereb Blood Flow Metab. 2024 Sep;44(9):1591-1607. doi: 10.1177/0271678X241238843. Epub 2024 Mar 13.

DOI:10.1177/0271678X241238843
PMID:38477254
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11418750/
Abstract

Neurovascular coupling (NVC) is the functional hyperemia of the brain responding to local neuronal activity. It is mediated by astrocytes and affected by subcortical ascending pathways in the cortex that convey information, such as sensory stimuli and the animal condition. Here, we investigate the influence of the raphe serotonergic system, a subcortical ascending arousal system in animals, on the modulation of cortical NVC and cerebral blood flow (CBF). Raphe serotonergic neurons were optogenically activated for 30 s, which immediately awakened the mice from non-rapid eye movement sleep. This caused a biphasic cortical hemodynamic change: a transient increase for a few seconds immediately after photostimulation onset, followed by a large progressive decrease during the stimulation period. Serotonergic neuron activation increased intracellular Ca levels in cortical pyramidal neurons and astrocytes, demonstrating its effect on the NVC components. Pharmacological inhibition of cortical neuronal firing activity and astrocyte metabolic activity had small hypovolemic effects on serotonin-induced biphasic CBF changes, while blocking 5-HT receptors expressed primarily in cerebral vasculature attenuated the decreasing CBF phase. This suggests that serotonergic neuron activation leading to animal awakening could allow the NVC to exert a hyperemic function during a biphasic CBF response, with a predominant decrease in the cortex.

摘要

神经血管耦合 (NVC) 是大脑对局部神经元活动的功能性充血。它由星形胶质细胞介导,并受皮质中的皮质下上升途径影响,这些途径传递信息,如感觉刺激和动物状态。在这里,我们研究了中缝背核 5-羟色胺能系统(动物中的皮质下上升觉醒系统)对皮质 NVC 和脑血流 (CBF) 调节的影响。中缝背核 5-羟色胺能神经元通过光遗传学方法被激活 30 秒,这立即使小鼠从非快速眼动睡眠中醒来。这导致皮质血流动力学的双相变化:在光刺激开始后的几秒钟内,出现短暂的增加,然后在刺激期间,出现较大的渐进性减少。5-羟色胺能神经元的激活增加了皮质锥体神经元和星形胶质细胞中的细胞内 Ca 水平,表明其对 NVC 成分的作用。皮质神经元放电活动和星形胶质细胞代谢活性的药理学抑制对 5-羟色胺诱导的双相 CBF 变化的低血容量效应较小,而主要在脑血管中表达的 5-HT 受体的阻断则减弱了 CBF 下降相。这表明,导致动物觉醒的 5-羟色胺能神经元的激活可以使 NVC 在双相 CBF 反应期间发挥充血功能,而皮质中的 CBF 则主要下降。

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本文引用的文献

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Parvalbumin interneuron activity drives fast inhibition-induced vasoconstriction followed by slow substance P-mediated vasodilation.钙结合蛋白阳性中间神经元活动驱动快速抑制诱导的血管收缩,随后是缓慢的 P 物质介导的血管舒张。
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Single-cell transcriptomes and whole-brain projections of serotonin neurons in the mouse dorsal and median raphe nuclei.小鼠中缝背核和中缝核的血清素神经元的单细胞转录组和全脑投射。
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