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生物钟增强剂川陈皮素通过恢复异常的肝脏昼夜节律改善遗传性肥胖小鼠的脂肪变性。

The biological clock enhancer nobiletin ameliorates steatosis in genetically obese mice by restoring aberrant hepatic circadian rhythm.

机构信息

Vascular Biology Center, Medical College of Georgia, Augusta University, Augusta, Georgia.

Department of Medicine, Medical College of Georgia, Augusta University, Augusta, Georgia.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2022 Oct 1;323(4):G387-G400. doi: 10.1152/ajpgi.00130.2022. Epub 2022 Aug 23.

Abstract

Nonalcoholic fatty liver disease (NAFLD) is associated with disruption of homeostatic lipid metabolism, but underlying processes are poorly understood. One possible mechanism is impairment in hepatic circadian rhythm, which regulates key lipogenic mediators in the liver and whose circadian oscillation is diminished in obesity. Nobiletin enhances biological rhythms by activating RAR-related orphan receptor nuclear receptor, protecting against metabolic syndrome in a clock-dependent manner. The effect of nobiletin in NAFLD is unclear. In this study, we investigate the clock-enhancing effects of nobiletin in genetically obese (db/db) PER2::LUCIFERASE reporter mice with fatty liver. We report microarray expression data suggesting hepatic circadian signaling is impaired in db/db mice with profound hepatic steatosis. Circadian PER2 activity, as assessed by mRNA and luciferase assay, was significantly diminished in liver of db/db PER2::LUCIFERASE reporter mice. Continuous animal monitoring systems and constant dark studies suggest the primary circadian defect in db/db mice lies within peripheral hepatic oscillators and not behavioral rhythms or the master clock. In vitro, nobiletin restored PER2 amplitude in lipid-laden PER2::LUCIFERASE reporter macrophages. In vivo, nobiletin dramatically upregulated core clock gene expression, hepatic PER2 activity, and ameliorated steatosis in db/db PER2::LUCIFERASE reporter mice. Mechanistically, nobiletin reduced serum insulin levels, decreased hepatic Srebp1c, Acaca1, Tnfα, and Fgf21 expression, but did not improve Plin2, Plin5, or Cpt1, suggesting nobiletin attenuates steatosis in db/db mice via downregulation of hepatic lipid accumulation. These data suggest restoring endogenous rhythm with nobiletin resolves steatosis in obesity, proposing that hypothesis that targeting the biological clock may be an attractive therapeutic strategy for NAFLD. NAFLD is the most common chronic liver disease, but underlying mechanisms are unclear. We show here that genetically obese () mice with fatty liver have impaired hepatic circadian rhythm. Hepatic expression and PER2 reporter activity are diminished in PER2::LUCIFERASE mice. The biological clock-enhancer nobiletin restores hepatic PER2 in PER2::LUCIFERASE mice, resolving steatosis via downregulation of . These studies suggest targeting the circadian clock may be beneficial strategy in NAFLD.

摘要

非酒精性脂肪性肝病(NAFLD)与内稳态脂质代谢紊乱有关,但潜在的发病机制仍不清楚。一种可能的机制是肝生物钟紊乱,它调节肝脏中的关键脂质生成介质,而肥胖会使其昼夜节律振荡减弱。诺必特通过激活 RAR 相关孤儿受体核受体增强生物节律,以时钟依赖的方式预防代谢综合征。诺必特在 NAFLD 中的作用尚不清楚。在这项研究中,我们研究了诺必特在具有脂肪肝的遗传性肥胖(db/db) PER2::LUCIFERASE 报告小鼠中增强生物钟的作用。我们报告了微阵列表达数据,表明 db/db 小鼠的肝生物钟信号受损,且肝脂肪变性严重。通过 mRNA 和荧光素酶测定评估的昼夜节律 PER2 活性在 db/db PER2::LUCIFERASE 报告小鼠的肝脏中显著降低。连续动物监测系统和持续黑暗研究表明,db/db 小鼠的主要生物钟缺陷存在于外周肝振荡器中,而不是行为节律或主钟。在体外,诺必特恢复了富含脂质的 PER2::LUCIFERASE 报告巨噬细胞中的 PER2 振幅。在体内,诺必特显著上调了核心时钟基因的表达、肝 PER2 活性,并改善了 db/db PER2::LUCIFERASE 报告小鼠的脂肪变性。在机制上,诺必特降低了血清胰岛素水平,减少了肝 Srebp1c、Acaca1、Tnfα 和 Fgf21 的表达,但没有改善 Plin2、Plin5 或 Cpt1 的表达,这表明诺必特通过下调肝脂质积累来减轻 db/db 小鼠的脂肪变性。这些数据表明,用诺必特恢复内源性节律可解决肥胖中的脂肪变性,这表明靶向生物钟可能是治疗非酒精性脂肪性肝病的一种有吸引力的治疗策略。非酒精性脂肪性肝病是最常见的慢性肝病,但潜在的发病机制尚不清楚。我们在这里表明,具有脂肪肝的遗传性肥胖(db/db)小鼠的肝生物钟节律受损。在 db/db PER2::LUCIFERASE 小鼠中, 表达和 PER2 报告基因活性降低。生物钟增强剂诺必特恢复了 db/db PER2::LUCIFERASE 小鼠的肝 PER2,通过下调 来解决脂肪变性。这些研究表明,靶向生物钟可能是治疗非酒精性脂肪性肝病的一种有益策略。

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