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饮食诱导的肥胖以昼夜节律的方式扰乱小胶质细胞的免疫代谢。

Diet-Induced Obesity Disturbs Microglial Immunometabolism in a Time-of-Day Manner.

作者信息

Milanova Irina V, Kalsbeek Martin J T, Wang Xiao-Lan, Korpel Nikita L, Stenvers Dirk Jan, Wolff Samantha E C, de Goede Paul, Heijboer Annemieke C, Fliers Eric, la Fleur Susanne E, Kalsbeek Andries, Yi Chun-Xia

机构信息

Department of Endocrinology and Metabolism, Amsterdam University Medical Center, University of Amsterdam, Amsterdam, Netherlands.

Laboratory of Endocrinology, Amsterdam University Medical Center, Amsterdam Gastroenterology & Metabolism, University of Amsterdam, Amsterdam, Netherlands.

出版信息

Front Endocrinol (Lausanne). 2019 Jun 26;10:424. doi: 10.3389/fendo.2019.00424. eCollection 2019.

Abstract

Disturbance of immunometabolic signaling is a key process involved in the progression of obesity. Microglia-the resident immune cells in the brain, initiate local immune responses. It is known that hypercaloric diets lead to microglial activation. Previously, we observed that hypothalamic microglial cells from mice fed high-fat diet (HFD) lose their day/night rhythm and are constantly activated. However, little is known about daily rhythmicity in microglial circadian, immune and metabolic functions, either in lean or obese conditions. Therefore, we hypothesized that HFD disturbs microglial immunometabolism in a day/night-dependent manner. Obesity was induced in Wistar rats by feeding them HFD for the duration of 8 weeks. Microglia were isolated from HFD- and chow-fed control animals at six time points during 24 h [every 4 h starting 2 h after lights on, i.e., Zeitgeber Time 2 (ZT2)]. Gene expression was evaluated using quantitative RT-PCR. JTK_Cycle software was used to estimate daily rhythmicity. Statistical analysis was performed with two-way ANOVA test. Consumption of the obesogenic diet resulted in a 40 g significantly higher body weight gain in week 8, compared to chow diet ( < 0.0001), associated with increased adiposity. We observed significant rhythmicity of circadian clock genes in microglia under chow conditions, which was partially lost in diet-induced obesity (DIO). Microglial immune gene expression also showed time-of-day differences, which were disrupted in HFD-fed animals. Microglia responded to the obesogenic conditions by a shift of substrate utilization with decreased glutamate and glucose metabolism in the active period of the animals, and an overall increase of lipid metabolism, as indicated by gene expression evaluation. Additionally, data on mitochondria bioenergetics and dynamics suggested an increased energy production in microglia during the inactive period on HFD. Finally, evaluation of monocyte functional gene expression showed small or absent effect of HFD on peripheral myeloid cells, suggesting a cell-specific microglial inflammatory response in DIO. An obesogenic diet affects microglial immunometabolism in a time-of-day dependent manner. Given the central role of the brain in energy metabolism, a better knowledge of daily rhythms in microglial immunometabolism could lead to a better understanding of the pathogenesis of obesity.

摘要

免疫代谢信号紊乱是肥胖进展过程中的一个关键过程。小胶质细胞是大脑中的常驻免疫细胞,可引发局部免疫反应。已知高热量饮食会导致小胶质细胞活化。此前,我们观察到喂食高脂饮食(HFD)的小鼠下丘脑小胶质细胞失去其昼夜节律并持续活化。然而,无论是在 lean 还是肥胖状态下,关于小胶质细胞昼夜节律、免疫和代谢功能的每日节律性,我们所知甚少。因此,我们假设 HFD 以昼夜依赖的方式扰乱小胶质细胞的免疫代谢。通过给 Wistar 大鼠喂食 HFD 持续 8 周来诱导肥胖。在 24 小时内的六个时间点(即从开灯后 2 小时开始,每 4 小时一次,即 Zeitgeber 时间 2(ZT2))从小胶质细胞从喂食 HFD 和普通饲料的对照动物中分离出来。使用定量 RT-PCR 评估基因表达。使用 JTK_Cycle 软件估计每日节律性。使用双向 ANOVA 检验进行统计分析。与普通饮食相比,致肥胖饮食的摄入导致第 8 周体重显著增加 40 克(<0.0001),与肥胖增加相关。我们观察到在普通条件下小胶质细胞中昼夜节律基因有显著的节律性,而在饮食诱导的肥胖(DIO)中部分丧失。小胶质细胞免疫基因表达也显示出一天中的时间差异,在喂食 HFD 的动物中这种差异被破坏。通过基因表达评估表明,小胶质细胞对致肥胖条件的反应是在动物活跃期底物利用发生转变,谷氨酸和葡萄糖代谢减少,脂质代谢总体增加。此外,关于线粒体生物能量学和动力学的数据表明,在 HFD 条件下小胶质细胞在非活跃期能量产生增加。最后,对单核细胞功能基因表达的评估表明 HFD 对外周髓样细胞的影响很小或没有影响,这表明在 DIO 中存在细胞特异性的小胶质细胞炎症反应。致肥胖饮食以一天中的时间依赖方式影响小胶质细胞的免疫代谢。鉴于大脑在能量代谢中的核心作用,更好地了解小胶质细胞免疫代谢的每日节律可能有助于更好地理解肥胖的发病机制。

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