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基于网络药理学和实验验证的刺槐素抗脓毒症机制的系统研究

A Systematic Study of the Mechanism of Acacetin Against Sepsis Based on Network Pharmacology and Experimental Validation.

作者信息

Ouyang Yuanshuo, Rong Yi, Wang Yanming, Guo Yanli, Shan Liya, Yu Xiushi, Li Li, Si Junqiang, Li Xinzhi, Ma Ketao

机构信息

Key Laboratory of Xinjiang Endemic and Ethnic Diseases, Ministry of Education, Shihezi University School of Medicine, Shihezi, China.

NHC Key Laboratory of Prevention and Treatment of Central Asia High Incidence Diseases, First Affiliated Hospital, Shihezi University School of Medicine, Shihezi, China.

出版信息

Front Pharmacol. 2021 Aug 16;12:683645. doi: 10.3389/fphar.2021.683645. eCollection 2021.

Abstract

Sepsis is a dysregulated systemic response to infection, and no effective treatment options are available. Acacetin is a natural flavonoid found in various plants, including , and . Studies have revealed that acacetin potentially exerts anti-inflammatory and antioxidative effects on sepsis. In this study, we investigated the potential protective effect of acacetin on sepsis and revealed the underlying mechanisms using a network pharmacology approach coupled with experimental validation and molecular docking. First, we found that acacetin significantly suppressed pathological damage and pro-inflammatory cytokine expression in mice with LPS-induced fulminant hepatic failure and acute lung injury, and experiments further confirmed that acacetin attenuated LPS-induced M1 polarization. Then, network pharmacology screening revealed EGFR, PTGS2, SRC and ESR1 as the top four overlapping targets in a PPI network, and GO and KEGG analyses revealed the top 20 enriched biological processes and signalling pathways associated with the therapeutic effects of acacetin on sepsis. Further network pharmacological analysis indicated that gap junctions may be highly involved in the protective effects of acacetin on sepsis. Finally, molecular docking verified that acacetin bound to the active sites of the four targets predicted by network pharmacology, and experiments further confirmed that acacetin significantly inhibited the upregulation of p-src induced by LPS and attenuated LPS-induced M1 polarization through gap junctions. Taken together, our results indicate that acacetin may protect against sepsis a mechanism involving multiple targets and pathways and that gap junctions may be highly involved in this process.

摘要

脓毒症是一种对感染的失调性全身反应,目前尚无有效的治疗方法。刺槐素是一种存在于多种植物中的天然黄酮类化合物,包括[具体植物未给出]、[具体植物未给出]和[具体植物未给出]。研究表明,刺槐素对脓毒症可能具有抗炎和抗氧化作用。在本研究中,我们研究了刺槐素对脓毒症的潜在保护作用,并通过网络药理学方法结合实验验证和分子对接揭示了其潜在机制。首先,我们发现刺槐素显著抑制了脂多糖诱导的暴发性肝衰竭和急性肺损伤小鼠的病理损伤和促炎细胞因子表达,[具体实验未说明]实验进一步证实刺槐素减弱了脂多糖诱导的M1极化。然后,网络药理学筛选显示表皮生长因子受体(EGFR)、环氧合酶-2(PTGS2)、原癌基因酪氨酸蛋白激酶(SRC)和雌激素受体1(ESR1)是蛋白质-蛋白质相互作用(PPI)网络中的前四个重叠靶点,基因本体(GO)和京都基因与基因组百科全书(KEGG)分析揭示了与刺槐素对脓毒症治疗作用相关的前20个富集生物过程和信号通路。进一步的网络药理学分析表明,缝隙连接可能高度参与刺槐素对脓毒症的保护作用。最后,分子对接验证了刺槐素与网络药理学预测的四个靶点的活性位点结合,[具体实验未说明]实验进一步证实刺槐素显著抑制脂多糖诱导的p-src上调,并通过缝隙连接减弱脂多糖诱导的M1极化。综上所述,我们的结果表明,刺槐素可能通过一种涉及多个靶点和途径的机制来预防脓毒症,并且缝隙连接可能高度参与这一过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1d0/8415621/b55621b9a3e2/fphar-12-683645-g001.jpg

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