首页> 美国卫生研究院文献>The Journal of Physiology >Microdialysis perfusion of 5-HT into hypoglossal motor nucleus differentially modulates genioglossus activity across natural sleep-wake states in rats
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Microdialysis perfusion of 5-HT into hypoglossal motor nucleus differentially modulates genioglossus activity across natural sleep-wake states in rats

机译:5-HT在舌下运动神经核中的微透析灌注在大鼠自然睡眠-觉醒状态下差异调节gen舌肌的活动

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摘要

class="enumerated" style="list-style-type:decimal">Serotonin (5-hydroxytryptamine, 5-HT) excites hypoglossal (XII) motoneurons in reduced preparations, and it has been suggested that withdrawal of 5-HT may underlie reduced genioglossus (GG) muscle activity in sleep. However, systemic administration of 5-HT agents in humans has limited effects on GG activity. Whether 5-HT applied directly to the XII motor nucleus increases GG activity in an intact preparation either awake or asleep has not been tested.The aim of this study was to develop a novel freely behaving animal model for in vivo microdialysis of the XII motor nucleus across sleep-wake states, and test the hypothesis that 5-HT application will increase GG activity.Eighteen rats were implanted with electroencephalogram and neck muscle electrodes to record sleep-wake states, and GG and diaphragm electrodes for respiratory muscle recording. Microdialysis probes were implanted into the XII motor nucleus and perfused with artificial cerebrospinal fluid (ACSF) or 10 mm 5-HT.Normal decreases in GG activity occurred from wakefulness to non-rapid eye movement (non-REM) and REM sleep with ACSF (P < 0.01). Compared to ACSF, 5-HT caused marked GG activation across all sleep-wake states (increases of 91-251 %, P < 0.015). Importantly, 5-HT increased sleeping GG activity to normal waking levels for as long as 5-HT was applied (3-5 h). Despite tonic stimulation by 5-HT, periods of phasic GG suppression and excitation occurred in REM sleep compared with non-REM.The results show that sleep-wake states differentially modulate GG responses to 5-HT at the XII motor nucleus. This animal model using in vivo microdialysis of the caudal medulla will enable the determination of neural mechanisms underlying pharyngeal motor control in natural sleep.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 5-羟色胺(5-羟色胺,5-HT)在减少的制剂中刺激舌下(XII)运动神经元,并且有人提出5-HT的戒断可能是睡眠中舌肌(GG)肌肉活动减少的基础。但是,在人体内全身施用5-HT剂对GG活性的作用有限。 5-HT是否直接应用于XII运动核是否能提高完整制剂在清醒或睡眠状态下的GG活性。 本研究的目的是开发一种新的自由行为的动物模型。 XII运动核在整个睡眠-清醒状态下的体内微透析,并检验5-HT的应用会增加GG活性的假说。 十八只大鼠被植入脑电图和颈肌电极以记录睡眠-清醒状态以及用于呼吸肌记录的GG和隔膜电极。将微透析探针植入XII运动核中,并灌注人工脑脊液(ACSF)或10 mm 5-HT。 从觉醒到快速眼动(非快速眼动),正常的GG活性降低。 )和使用ACSF的REM睡眠(P <0.01)。与ACSF相比,5-HT在所有睡眠-觉醒状态下均引起明显的GG激活(增加91-251%,P <0.015)。重要的是,只要应用5-HT(3-5小时),5-HT可使睡眠GG活性增加到正常的苏醒水平。尽管5-HT刺激了强直性,但与非REM相比,REM睡眠中发生了阶段性的GG抑制和兴奋。第十二运动核。这种动物模型利用尾部髓质进行体内微透析,将能够确定自然睡眠中咽运动控制的神经机制。

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