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山柰酚苷通过靶向Nrf2/NF-κB/NLRP3/GSDMD对脂多糖引起的急性肺损伤的保护作用:整合实验和计算研究

Protective effect of kaempferol glucoside against lipopolysaccharide-caused acute lung injury via targeting Nrf2/NF-κB/NLRP3/GSDMD: Integrating experimental and computational studies.

作者信息

Abdulaal Wesam H, Omar Ulfat M, Zeyadi Mustafa, El-Agamy Dina S, Alhakamy Nabil A, A R Almalki Naif, Asfour Hani Z, Al-Rabia Mohammed W, Alzain Abdulrahim A, Mohamed Gamal A, Ibrahim Sabrin R M

机构信息

Department of Biochemistry, Faculty of Science, Cancer and Mutagenesis Unit, King Fahd Medical Research Center, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

Center of Excellence for Drug Research and Pharmaceutical Industries, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

出版信息

Saudi Pharm J. 2024 Jun;32(6):102073. doi: 10.1016/j.jsps.2024.102073. Epub 2024 Apr 18.

Abstract

The current study explored the protective potential of kaempferol 3-sophoroside-7-glucoside (KSG) against acute lung injury (ALI). Pre-treatment with KSG effectively secured mice from ALI and showed similar efficaciousness to dexamethasone. KSG markedly increased the survival rate and alleviated lung pathological lesions induced by lipopolysaccharide (LPS). Furthermore, KSG attenuated differential and total cell counts in BALF (bronchoalveolar lavage fluid) and MPO (myeloperoxidase) activity. KSG counteracted the NF-κB (nuclear factor-κB) activation and significantly ameliorated the downstream inflammatory cytokine, TNF-α (tumor necrosis factor-α). Simultaneously, KSG suppressed the over-expression of NLRP3 (NOD-like receptor protein 3, caspase-1, and pro-inflammatory cytokine interleukin IL-1β (interleukine-1β) and prohibited the elevation of the pyroptotic parameter GSDMD-N (N-terminal domain of gasdermin D) induced by LPS challenge. In addition, KSG significantly enhanced Nrf2 (nuclear-factor erythroid-2-related factor) and HO-1 (heme-oxygenase-1) expression. Meanwhile, KSG mitigated lipid peroxidative markers (malondialdehyde, protein carbonyl and 4-hydroxynonenal) and boosted endogenous antioxidants (superoxide dismutase/reduced glutathione/catalase) in lung tissue. analyses revealed that KSG disrupts Keap1-Nrf2 protein-protein interactions by binding to the KEAP1 domain, consequently activating Nrf2. Specifically, molecular docking demonstrated superior binding affinity of KSG to KEAP1 compared to the reference inhibitor, with docking scores of -9.576 and -6.633 Kcal/mol, respectively. Additionally, the MM-GBSA binding free energy of KSG (-67.25 Kcal/mol) surpassed that of the reference inhibitor (-56.36 Kcal/mol). Furthermore, MD simulation analysis revealed that the KSG-KEAP1 complex exhibits substantial and stable binding interactions with various amino acids over a duration of 100 ns. These findings showed the protective anti-inflammatory and anti-oxidative modulatory efficiencies of KSG that effectively counteracted LPS-induced ALI and encouraged future research and clinical applications of KSG as a protective strategy for ALI.

摘要

本研究探讨了山奈酚3 -槐糖苷 - 7 -葡萄糖苷(KSG)对急性肺损伤(ALI)的潜在保护作用。用KSG预处理可有效保护小鼠免受ALI侵害,且显示出与地塞米松相似的疗效。KSG显著提高了存活率,并减轻了脂多糖(LPS)诱导的肺部病理损伤。此外,KSG降低了支气管肺泡灌洗液(BALF)中的细胞分类计数和总细胞计数以及髓过氧化物酶(MPO)活性。KSG抑制了核因子κB(NF -κB)的激活,并显著改善了下游炎症细胞因子肿瘤坏死因子 -α(TNF -α)。同时,KSG抑制了NOD样受体蛋白3(NLRP3)、半胱天冬酶 - 1和促炎细胞因子白细胞介素 - 1β(IL - 1β)的过度表达,并阻止了LPS刺激诱导的细胞焦亡参数gasdermin D的N端结构域(GSDMD - N)的升高。此外,KSG显著增强了核因子红细胞2相关因子(Nrf2)和血红素加氧酶 - 1(HO - 1)的表达。同时,KSG减轻了肺组织中的脂质过氧化标志物(丙二醛、蛋白质羰基和4 -羟基壬烯醛),并增强了内源性抗氧化剂(超氧化物歧化酶/还原型谷胱甘肽/过氧化氢酶)。分析表明,KSG通过与KEAP1结构域结合破坏Keap1 - Nrf2蛋白 - 蛋白相互作用,从而激活Nrf2。具体而言,分子对接显示KSG与KEAP1的结合亲和力优于参考抑制剂,对接分数分别为 -9.576和 -6.633千卡/摩尔。此外,KSG的MM - GBSA结合自由能(-67.25千卡/摩尔)超过了参考抑制剂(-56.36千卡/摩尔)。此外,分子动力学模拟分析表明,KSG - KEAP1复合物在100纳秒的时间内与各种氨基酸表现出大量且稳定的结合相互作用。这些发现表明了KSG具有保护性抗炎和抗氧化调节功效,能有效对抗LPS诱导的ALI,并鼓励未来对KSG作为ALI保护策略的研究和临床应用。

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