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采用整合药理学策略评估槲皮素 3,7-二鼠李糖苷的抗炎机制。

Assessment of the anti-inflammatory mechanism of quercetin 3,7-dirhamnoside using an integrated pharmacology strategy.

机构信息

Artemisinin Research Center, Guangzhou University of Chinese Medicine, Guangzhou, China.

The First Affiliated Hospital of Clinical Medicine, Guangzhou University of Chinese Medicine, Guangzhou, China.

出版信息

Chem Biol Drug Des. 2023 Dec;102(6):1534-1552. doi: 10.1111/cbdd.14346. Epub 2023 Oct 8.

Abstract

Pouzolzia zeylanica (L.) Benn. is a Chinese herbal medicine widely used for its anti-inflammatory and pus-removal properties. To explore its potential anti-inflammatory mechanism, quercetin 3,7-dirhamnoside (QDR), the main flavonoid component of P. zeylanica (L.) Benn., was extracted and purified. The potential anti-inflammatory targets of QDR were predicted using network analysis. These potential targets were verified using molecular docking, molecular dynamics simulations, and in vitro experiments. Consequently, 342 potential anti-inflammatory QDR targets were identified. By analyzing the intersection between the protein-protein interaction and the Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways, we identified several potential protein targets of QDR, including RAC-alpha serine/threonine-protein kinase (AKT1), Ras-related C3 botulinum toxin substrate 1 (RAC1), nitric oxide synthase 3 (NOS3), serine/threonine-protein kinase mTOR (mTOR), epidermal growth factor receptor (EGFR), growth factor receptor-bound protein 2 (GRB2), and endothelin-1 receptor (EDNRA). QDR has anti-inflammatory activity and regulates immune responses and apoptosis through chemokines, Phosphatidylinositol 3-kinase 3(PI3K)/AKT, cAMP, T-cell receptor, and Ras signaling pathways. Molecular docking analysis showed that QDR has good binding abilities with AKT1, mTOR, and NOS3. In addition, molecular dynamics simulations demonstrated that the protein-ligand complex systems formed between QDR and AKT1, mTOR, and NOS3 have high dynamic stability, and their protein-ligand complex systems possess strong binding ability. In RAW264.7 macrophages, QDR significantly inhibited lipopolysaccharides (LPS)-induced inducible nitric oxide synthase expression, nitric oxide (NO) release and the generation of proinflammatory cytokines IL-6, IL-1β, and TNF-α. QDR downregulated the expression of p-AKT1(Ser473)/AKT1 and p-mTOR (Ser2448)/mTOR, and upregulated the expression of NOS3, Rictor, and Raptor. This indicates that the anti-inflammatory mechanisms of QDR involve regulation of AKT1 and mTOR to prevent apoptosis and of NOS3 which leads to the release of endothelial NO. Thus, our study elucidated the potential anti-inflammatory mechanism of QDR, the main flavonoid found in P. zeylanica (L.) Benn.

摘要

鸡矢藤(Pouzolzia zeylanica (L.) Benn.)是一种中草药,具有抗炎和排脓作用,被广泛应用。为了探索其潜在的抗炎机制,从鸡矢藤中提取并纯化了主要的类黄酮成分槲皮素 3,7-二鼠李糖苷(QDR)。利用网络分析预测 QDR 的潜在抗炎靶点,通过分子对接、分子动力学模拟和体外实验对潜在靶点进行验证。结果鉴定出 342 个潜在的 QDR 抗炎靶点。通过分析蛋白质-蛋白质相互作用和京都基因与基因组百科全书(KEGG)通路的交集,确定了 QDR 的几个潜在蛋白靶点,包括 RAC-alpha 丝氨酸/苏氨酸蛋白激酶(AKT1)、Ras 相关 C3 肉毒毒素底物 1(RAC1)、一氧化氮合酶 3(NOS3)、丝氨酸/苏氨酸蛋白激酶 mTOR(mTOR)、表皮生长因子受体(EGFR)、生长因子受体结合蛋白 2(GRB2)和内皮素-1 受体(EDNRA)。QDR 具有抗炎活性,通过趋化因子、磷脂酰肌醇 3-激酶 3(PI3K)/AKT、cAMP、T 细胞受体和 Ras 信号通路调节免疫反应和细胞凋亡。分子对接分析表明,QDR 与 AKT1、mTOR 和 NOS3 具有良好的结合能力。此外,分子动力学模拟表明,QDR 与 AKT1、mTOR 和 NOS3 形成的蛋白-配体复合物系统具有较高的动力学稳定性,其蛋白-配体复合物系统具有较强的结合能力。在 RAW264.7 巨噬细胞中,QDR 显著抑制脂多糖(LPS)诱导的诱导型一氧化氮合酶表达、一氧化氮(NO)释放以及促炎细胞因子 IL-6、IL-1β和 TNF-α的产生。QDR 下调了 p-AKT1(Ser473)/AKT1 和 p-mTOR(Ser2448)/mTOR 的表达,上调了 NOS3、Rictor 和 Raptor 的表达。这表明,QDR 的抗炎机制涉及调节 AKT1 和 mTOR 以防止细胞凋亡,以及调节 NOS3 以促进内皮型一氧化氮的释放。因此,我们的研究阐明了 QDR 的潜在抗炎机制,QDR 是鸡矢藤(L.)宾中发现的主要类黄酮。

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