标题:Polymethoxyflavones in Citrus Regulate Lipopolysaccharide-Induced Oscillating Decay of Circadian Rhythm Genes by Inhibiting Nlrp3 Expression

作者:Wang, Yue, Song, Bo, Chen, Jiebiao, Cao, Jinping, Li, Xian and Sun, Chongde

摘要:The aim of this study is to compare the regulatory abilities of citrus flavonoids on the oscillating expression of circadian genes. Seven varieties of citrus fruits and twenty-five citrus flavonoids were selected and evaluated. Per2 luciferase bioluminescence report system and serum shock were used to induce circadian gene expression in mouse microglia BV-2 cells. In vivo experiments were carried out using C57BL6/J mice to evaluate the regulation of flavonoids on the oscillatory expression of liver biorhythm genes. Lipopolysaccharide was used to interfere the gene oscillating expression. QRT-PCR was performed to detect the expression of circadian rhythm-related genes, including Clock, Bmal1, Per1, Per2, Per3, Cry1, Cry2, Rev-erb alpha, Rev-erb beta, Ror alpha, Dbp, and Npas2. The results show that the polymethoxyflavones (PMFs) exerted stronger circadian gene regulatory capability, while the flavonoids containing glycosides showed no biological activity. Also, all tested flavonoids decreased LPS-induced nitric oxide release, but only polymethoxyflavones inhibited circadian rhythm disorder. PMFs inhibited Nlrp3 inflammasome-related genes and proteins, including Nlrp3, IL-1 beta, ASC, and Caspase1, while other flavonoids only affected IL-1 beta and Caspase1 expression. This mechanism was preliminarily verified using the Nlrp3 inhibitor INF39.

文献注录:Wang, Yue, Song, Bo, Chen, Jiebiao, Cao, Jinping, Li, Xian and Sun, Chongde. Polymethoxyflavones in Citrus Regulate Lipopolysaccharide-Induced Oscillating Decay of Circadian Rhythm Genes by Inhibiting Nlrp3 Expression [J]. . 2021.

报/刊名:》,发表于2021

文献类型: [J]

页码: 页 / 共

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