MCH神经元的KNDy神经支配以雌二醇依赖的方式调节睡眠

IF 5.3 2区 医学 Q1 PHYSIOLOGY Physiology Pub Date : 2023-05-01 DOI:10.1152/physiol.2023.38.s1.5732862
Bethany G Beekly, Katherine Furman, C. Burgess, C. Elias
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引用次数: 0

摘要

包括雌激素在内的循环性腺激素水平会影响睡眠质量的主观和客观指标。然而,将性别变量与睡眠结构联系起来的机制尚不完全清楚。下丘脑弓状核(ARH)是已知受循环雌二醇水平有效调节的一个大脑区域。特别是,ARH神经元含有kisspeptin、neurokinin B (NKB)和dynorphin(“KNDy神经元”)这三种神经肽,它们表达ERα,并对雌二醇有反应。我们试图确定ARH KNDy神经元是否与雌激素对睡眠的影响有关。下丘脑外侧的黑色素集中激素(MCH)神经元是公认的睡眠调节因子。MCH神经元的一个子集也表达NKB受体NK3R,并由NKB免疫反应纤维支配。因此,我们假设ARH KNDy神经元通过向表达nk3r的MCH神经元发送NKB信号,以雌二醇依赖的方式调节睡眠结构。为了验证这一假设,我们在kisspeptin表达通道视紫红质的雌性Kiss1-Cre;ChR2-eYFP转基因小鼠的LHA中采用光遗传刺激,激活与mch表达细胞相对应的KNDy神经元末端。在随机交叉设计中,我们通过脑电图(EEG)记录了有和没有光遗传刺激的睡眠情况。使用切除卵巢的成年雌性小鼠(“OVX和OVX+E2小鼠”)进行雌二醇替代和不替代。在两种情况下记录每只小鼠,以尽量减少个体差异的影响,并随机分配第一种情况(即,植入雌二醇与未植入雌二醇)。EEG数据首先使用半自动评分算法进行评估,然后进行人工检查。这些步骤至少由两名不同的研究人员执行,以确保准确、可重复的评分。在光照阶段,当小鼠的睡眠压力最高时,刺激LHA中的KNDy终端导致OVX雌性花更多的时间清醒,主要是以牺牲快速眼动(REM)睡眠为代价的。相反,当KNDy神经元末梢受到刺激时,OVX+E2雌性小鼠的清醒程度降低。这与快速眼动和非快速眼动睡眠的增加相对应。在暗期,观察到相反的表型。光遗传刺激导致OVX雌性在黑暗期的快速眼动和非快速眼动睡眠中清醒时间减少,而在快速眼动和非快速眼动睡眠中清醒时间增加,而OVX+E2雌性在快速眼动和非快速眼动睡眠中清醒时间增加。综上所述,这些数据表明,LHA中KNDy神经元末梢的激活以循环雌激素和昼夜节律决定的方式影响睡眠。(NIH)资助R01HD069702, R01HD096324;T32HD079342 F31HD102160;1R01DK129366-01,密歇根糖尿病研究中心试点和可行性奖,白厅基金会新研究者资助#2018-08-50这是2023年美国生理学峰会会议上发表的全文摘要,仅以HTML格式提供。此摘要没有附加版本或附加内容。生理学没有参与同行评议过程。
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KNDy innervation of MCH neurons modulates sleep in an estradiol-dependent manner
Levels of circulating gonadal hormones, including estrogens, affect both subjective and objective measures of sleep quality. However, the mechanisms linking sex variables to sleep architecture are incompletely understood. One brain region known to be potently regulated by circulating levels of estradiol is the arcuate nucleus of the hypothalamus (ARH). In particular, ARH neurons containing the trio of neuropeptides kisspeptin, neurokinin B (NKB), and dynorphin (“KNDy neurons”) express ERα and are well-known to respond to estradiol. We sought to determine whether ARH KNDy neurons are implicated in estrogenic effects on sleep.Melanin-concentrating hormone (MCH) neurons of the lateral hypothalamus are established regulators of sleep. A subset of MCH neurons also express the NKB receptor, NK3R, and are innervated by NKB immunoreactive fibers. Thus, we hypothesized that ARH KNDy neurons modulate sleep architecture in an estradiol-dependent manner via NKB signaling to NK3R-expressing MCH neurons. To test this hypothesis, we employed optogenetic stimulation in the LHA of female Kiss1-Cre;ChR2-eYFP transgenic mice, which express channelrhodopsin in kisspeptin-expressing neurons, to activate KNDy neuron terminals apposing MCH-expressing cells.We recorded sleep via electroencephalogram (EEG) with and without optogenetic stimulation in a randomized-crossover design. Adult ovariectomized female mice with and without estradiol replacement were used (“OVX and OVX+E2 mice”). Each mouse was recorded under both conditions to minimize the effects of individual variation, with the first condition (i.e., with vs without estradiol implant) randomly assigned. EEG data were first evaluated using a semiautomated scoring algorithm and then manually checked. These steps were performed by at least two different researchers to ensure accurate, reproducible scoring.During the light phase, when sleep pressure is highest for mice, stimulation of KNDy terminals in the LHA caused OVX females to spend more time awake, primarily at the expense of rapid-eye movement (REM) sleep. Conversely, OVX+E2 females exhibited reduced wakefulness when KNDy neuron terminals were stimulated. This corresponded to increases to both REM and non-REM sleep. During the dark phase, the reverse phenotype was observed. Optogenetic stimulation caused OVX females to spend less time awake and more time in both REM and non-REM sleep during the dark phase, while it resulted in OVX+E2 females spending more time awake at the expense of both REM and non-REM sleep. Taken together, these data suggest that the activation of KNDy neuron terminals in the LHA affects sleep in manner determined by both circulating estrogens and circadian rhythms. (NIH) Grants R01HD069702, R01HD096324; T32HD079342, F31HD102160; 1R01DK129366-01, the Michigan Diabetes Research Center Pilot and Feasibility Award, and the Whitehall Foundation New Investigator Grant #2018-08-50 This is the full abstract presented at the American Physiology Summit 2023 meeting and is only available in HTML format. There are no additional versions or additional content available for this abstract. Physiology was not involved in the peer review process.
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Physiology
Physiology 医学-生理学
CiteScore
14.50
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0.00%
发文量
37
期刊介绍: Physiology journal features meticulously crafted review articles penned by esteemed leaders in their respective fields. These articles undergo rigorous peer review and showcase the forefront of cutting-edge advances across various domains of physiology. Our Editorial Board, comprised of distinguished leaders in the broad spectrum of physiology, convenes annually to deliberate and recommend pioneering topics for review articles, as well as select the most suitable scientists to author these articles. Join us in exploring the forefront of physiological research and innovation.
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