TLR4型
促炎细胞因子
脂多糖
化学
激活剂(遗传学)
电泳迁移率测定
STAT1
STAT蛋白
体内
体外
分子生物学
信号转导
一氧化氮
转录因子
NF-κB
车站3
药理学
细胞生物学
炎症
受体
生物
生物化学
免疫学
有机化学
生物技术
基因
作者
Hwi‐Ho Lee,Ji‐Sun Shin,Kyung‐Sook Chung,Jae‐Min Kim,Seang-Hwan Jung,Hyung‐Seok Yoo,Ahmed H.E. Hassan,Jong Kil Lee,Kyung‐Soo Inn,Sangmin Lee,Nam‐Jung Kim,Kyung‐Tae Lee
出处
期刊:Phytomedicine
[Elsevier BV]
日期:2022-11-17
卷期号:109: 154553-154553
被引量:19
标识
DOI:10.1016/j.phymed.2022.154553
摘要
We previously reported the potential inhibitory activity of 3',4'-dihydroxyflavone (DHF) on nitric oxide (NO) and prostaglandin E2 (PGE2) production in lipopolysaccharide (LPS)-stimulated macrophages.We investigated the underlying molecular mechanisms of DHF in LPS-activated macrophages and evaluated its effect on LPS-induced septic shock in mice.To explore the anti-inflammatory effect of DHF, nitrite, PGE2, and cytokines were measured in vitro and in vivo experiments. In addition, to verify the molecular signaling pathway, quantitative real time-PCR, luciferase assay, nuclear extraction, electrophoretic mobility shift assay, immunocytochemistry, immunoprecipitation, molecular docking analysis, and myeloid differentiation 2 (MD2)-LPS binding assay were conducted.DHF suppressed the LPS-induced expression of proinflammatory mediators through nuclear factor-κB (NF-κB), activator protein-1 (AP-1), and interferon regulatory factor 3 (IRF3) inactivation pathways in RAW 264.7 macrophages. Importantly, molecular docking analysis and in vitro binding assays showed that DHF interacts with the hydrophobic pocket of MD2 and then interferes with the interaction between LPS and toll-like receptor 4 (TLR4). DHF inhibited LPS-induced oxidative stress by upregulating nuclear factor erythroid 2-related factor 2 (Nrf2). Treatment of LPS-induced endotoxemia mice with DHF reduced the expression levels of pro-inflammatory mediators via the inactivation of NF-κB, AP-1, and signal transducer and activator of transcription 1 (STAT1) in the lung tissue, thus increasing the survival rate.Taken together, our data first time revealed the underlying mechanism of the DHF-dependent anti-inflammatory effect by preventing LPS from binding to the TLR4/MD2 complex. Therefore, DHF may be a possible anti-inflammatory agent for the treatment of LPS-mediated inflammatory diseases.
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