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中文摘要
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描述(由申请人提供):本项目旨在研究下丘脑乳糜上区(SUM)的谷氨酸能神经元群,这可能是一个以前未被认识但重要的上升唤醒系统部分。早期的研究表明,SUM神经元弥漫性地支配大脑皮层,该区域的病变导致深度嗜睡,这不能解释为涉及附近的食欲素或组胺能神经元。我们的初步观察表明,SUM神经元对唤醒系统的许多组成部分有大量的投射,并且它们可能是维持正常清醒状态所必需的。我们将通过首先检测谷氨酸能SUM神经元的投射来验证这一假设,使用含有GFP基因的条件腺相关病毒载体(AAV),该基因仅在表达Cre的神经元中产生,在水泡型谷氨酸2 (Vglut2)启动子下表达Cre重组酶的小鼠中。接下来,我们将选择性地损伤SUM谷氨酸能神经元,并通过在Cre-神经元中表达mCherry的条件AAV和在Cre+神经元中表达白喉毒素a(致死)亚基,研究其剩余的非谷氨酸能邻居的预测,并记录随后的清醒-睡眠行为。为了确定SUM中的Vglut2+神经元是否可能使用谷氨酸以外的其他神经递质引起觉醒,我们将在Vlgut2-flox/flox小鼠中使用AAV-Cre-2A-Venus删除SUM中的Vglut2基因,并在相同的细胞中表达荧光蛋白Venus。我们将测量对清醒-睡眠行为的影响,并将其与含有维纳斯+轴突的目标区域相关联,其中Vglut2已被删除。我们将使用vgate -flox/flox小鼠研究GABA在SUM部分神经元中的作用。最后,我们将研究抑制或刺激SUM中的Vglut2神经元对清醒-睡眠的急性影响,以确定补偿在慢性缺失研究中的作用。我们将给Vglut2-Cre小鼠注射条件hM3-mCherry载体,该载体在Cre+神经元中表达突变的M3毒毒碱受体,该受体被氯氮平- n -氧化物激活并刺激神经元;或者是一种条件伊维菌素载体,它表达与伊维菌素受体融合的YFP,这是一种由抗生素药物伊维菌素激活的无脊椎氯离子通道,可以抑制神经元。然后,我们将研究激活或抑制SUM Vglut2+神经元对清醒-睡眠的急性影响,并通过荧光蛋白标记的轴突将其与SUM靶点的神经支配联系起来。这项工作将表征SUM谷氨酸能神经元的靶点,以及这些投射在介导急性和慢性睡眠和觉醒效应中的作用。这些发现将验证一个假设,即SUM神经元可能比附近的食欲素或组胺能细胞群在维持正常清醒状态方面发挥更重要的作用。
英文摘要
DESCRIPTION (provided by applicant): This project seeks to study a population of glutamatergic neurons in the supramammillary region of the hypothalamus (SUM), which may be a previously unrecognized but important part of the ascending arousal system. Earlier studies have shown that SUM neurons diffusely innervate the cerebral cortex, and that lesions in this area cause profound somnolence not explained by involving nearby orexin or histaminergic neurons. Our preliminary observations indicate that the SUM neurons have massive projections to many components of the arousal system, and that they may be necessary to maintain a normal waking state. We will test this hypothesis by first examining the projections of the glutamatergic SUM neurons, using a conditional adeno- associated viral vector (AAV) containing the gene for GFP which is only produced in Cre-expressing neurons, in mice expressing Cre recombinase under the vesicular glutamate 2 (Vglut2) promoter. We next will selectively lesion the SUM glutamatergic neurons, and study the projections of their remaining non- glutamatergic neighbors, by using a conditional AAV that expresses mCherry in Cre- neurons, and the diphtheria toxin A (lethal) subunit in Cre+ neurons, and recording subsequent wake-sleep behavior. To determine whether the Vglut2+ neurons in the SUM may use other neurotransmitters than glutamate to cause arousal, we will then use AAV-Cre-2A-Venus to delete the Vglut2 gene in the SUM in Vlgut2-flox/flox mice, and express the fluorescent protein Venus in the same cells. We will measure the effect on wake-sleep behavior and correlate that with which target areas contain Venus+ axons, in which Vglut2 has been deleted. We will similarly study the role of GABA in some neurons in the SUM using Vgat-flox/flox mice. Finally, we will examine the acute effects on wake-sleep of either inhibiting or stimulating the Vglut2 neurons in the SUM, to determine the role of compensation in chronic deletion studies. We will inject Vglut2-Cre mice with either a conditional hM3-mCherry vector, which expresses a mutant M3 muscarinic receptor in Cre+ neurons that is activated by clozapine-N-oxide and stimulates neurons; or a conditional ivermectin vector, which expresses YFP fused with the ivermectin receptor, an invertebrate chloride channel that is activated by the antibiotic drug ivermectin, which inhibits neurons. We will then study the acute effects on wake-sleep of either activating or inhibiting the SUM Vglut2+ neurons, and correlate this with the innervation of SUM targets by axons labeled with the fluorescent proteins. This work will characterize the targets of the SUM glutamatergic neurons, and the role of those projections in mediating acute and chronic effects on sleep and wakefulness. These findings will test the hypothesis that the SUM neurons may plan an even more important role than the nearby orexin or histaminergic cell groups in maintaining a normal waking state.
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Project 1
Mechanisms of sleep and sleep apnea
Mechanisms of sleep and sleep apnea
Mechanisms of sleep and sleep apnea
海外基金