Acute sleep disruption- and high-fat diet-induced hypothalamic inflammation are not related to glucose tolerance in mice

Q2 Medicine
Jacqueline M. Ho , Nicole H. Ducich , Nhat-Quynh K. Nguyen , Mark R. Opp
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引用次数: 12

Abstract

Chronic insufficient sleep is a major societal problem and is associated with increased risk of metabolic disease. Hypothalamic inflammation contributes to hyperphagia and weight gain in diet-induced obesity, but insufficient sleep-induced neuroinflammation has yet to be examined in relation to metabolic function. We therefore fragmented sleep of adult male C57BL/6 J mice for 18 h daily for 9 days to determine whether sleep disruption elicits inflammatory responses in brain regions that regulate energy balance and whether this relates to glycemic control. To additionally test the hypothesis that exposure to multiple inflammatory factors exacerbates metabolic outcomes, responses were compared in mice exposed to sleep fragmentation (SF), high-fat diet (HFD), both SF and HFD, or control conditions. Three or 9 days of high-fat feeding reduced glucose tolerance but SF alone did not. Transient loss of body mass in SF mice may have affected outcomes. Comparisons of pro-inflammatory cytokine concentrations among central and peripheral metabolic tissues indicate that patterns of liver interleukin-1β concentrations best reflects observed changes in glucose tolerance. However, we demonstrate that SF rapidly and potently increases Iba1 immunoreactivity (-ir), a marker of microglia. After 9 days of manipulations, Iba1-ir remains elevated only in mice exposed to both SF and HFD, indicating a novel interaction between sleep and diet on microglial activation that warrants further investigation.

急性睡眠中断和高脂肪饮食引起的下丘脑炎症与小鼠的葡萄糖耐量无关
慢性睡眠不足是一个主要的社会问题,与代谢疾病的风险增加有关。下丘脑炎症会导致饮食性肥胖的贪食和体重增加,但睡眠性神经炎症不足与代谢功能的关系尚未得到研究。因此,我们将成年雄性C57BL/6 J小鼠的睡眠片段化,每天18小时,持续9天,以确定睡眠中断是否会引发调节能量平衡的大脑区域的炎症反应,以及这是否与血糖控制有关。为了进一步验证暴露于多种炎症因子会加剧代谢结果的假设,研究人员比较了暴露于睡眠碎片化(SF)、高脂肪饮食(HFD)、高脂肪饮食和高脂肪饮食或对照条件下的小鼠的反应。3天或9天的高脂肪喂养降低了葡萄糖耐量,但单独服用SF没有作用。SF小鼠短暂的体重损失可能影响了结果。中枢和外周代谢组织中促炎细胞因子浓度的比较表明,肝脏白细胞介素-1β浓度的模式最能反映糖耐量的变化。然而,我们证明SF迅速而有效地增加Iba1免疫反应性(-ir),这是小胶质细胞的标志。经过9天的操作,Iba1-ir仅在同时暴露于SF和HFD的小鼠中保持升高,这表明睡眠和饮食之间对小胶质细胞激活的新相互作用值得进一步研究。
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来源期刊
Neurobiology of Sleep and Circadian Rhythms
Neurobiology of Sleep and Circadian Rhythms Neuroscience-Behavioral Neuroscience
CiteScore
4.50
自引率
0.00%
发文量
9
审稿时长
69 days
期刊介绍: Neurobiology of Sleep and Circadian Rhythms is a multidisciplinary journal for the publication of original research and review articles on basic and translational research into sleep and circadian rhythms. The journal focuses on topics covering the mechanisms of sleep/wake and circadian regulation from molecular to systems level, and on the functional consequences of sleep and circadian disruption. A key aim of the journal is the translation of basic research findings to understand and treat sleep and circadian disorders. Topics include, but are not limited to: Basic and translational research, Molecular mechanisms, Genetics and epigenetics, Inflammation and immunology, Memory and learning, Neurological and neurodegenerative diseases, Neuropsychopharmacology and neuroendocrinology, Behavioral sleep and circadian disorders, Shiftwork, Social jetlag.
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