Polymethoxyflavones in Citrus Regulate Lipopolysaccharide-Induced Oscillating Decay of Circadian Rhythm Genes by Inhibiting Nlrp3 Expression
Author(s) -
Yue Wang,
Bo Song,
Jiebiao Chen,
Jinping Cao,
Xian Li,
Chongde Sun
Publication year - 2021
Publication title -
oxidative medicine and cellular longevity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.494
H-Index - 93
eISSN - 1942-0900
pISSN - 1942-0994
DOI - 10.1155/2021/8419415
Subject(s) - circadian rhythm , lipopolysaccharide , rhythm , gene expression , gene , microbiology and biotechnology , chemistry , biology , biochemistry , medicine , neuroscience , endocrinology
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-erbα , Rev-erbβ , Rorα , 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 β , ASC, and Caspase1, while other flavonoids only affected IL-1 β and Caspase1 expression. This mechanism was preliminarily verified using the Nlrp3 inhibitor INF39.
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