Kaempferol Suppresses Abdominal Aortic Aneurysm Development via Modulation of Macrophage Polarization Through the STAT / TNF Signaling Pathway

巨噬细胞极化 腹主动脉瘤 信号转导 体内 药理学 磷酸化 化学 癌症研究 医学 巨噬细胞 肿瘤坏死因子α 炎症 山奈酚 体外 主动脉瘤 NF-κB 弹性蛋白 作用机理 病理生理学 主动脉破裂 细胞生物学 受体 发病机制 细胞信号
作者
Mengsha Li,Liwei You,Shu Luo,Fujia Xu,Bing Li,Na Deng,Haijun Guo,Yingying Wei,Siying Zuo,Yaping Zuo,Lintao Zhong,Xiang He,Wei Li,Xiaoyun Si
出处
期刊:Phytotherapy Research [Wiley]
卷期号:40 (5): 2948-2964
标识
DOI:10.1002/ptr.70233
摘要

The global incidence of abdominal aortic aneurysm (AAA) is rising, posing a significant health threat. AAA rupture can lead to life-threatening internal bleeding, yet its underlying pathophysiological mechanisms remain incompletely understood. Furthermore, effective pharmacological interventions to slow or halt AAA progression remain elusive. This study investigates the potential of kaempferol (KA) as a preventive agent for AAA. Using a PPE-induced murine AAA model with preventive KA administration commencing on the day of surgery, we evaluated its effects on AAA formation. Further analysis in vivo and in vitro assessed KA's impact on macrophage polarization. Network pharmacology was employed to predict key targets, which were subsequently validated through molecular docking, cellular thermal shift assay (CETSA), and rescue experiments. Preventive KA administration significantly attenuated AAA formation, as evidenced by reduced aortic dilation, elastin degradation, and collagen deposition. KA inhibited M1 macrophage polarization (reducing iNOS/CD86) and promoted M2 polarization (increasing Arg1/CD206). Network pharmacology predicted STAT3, STAT1, and TNF as key targets, which was confirmed by molecular docking and CETSA showing direct binding. Importantly, KA inhibited LPS-induced STAT3/STAT1 phosphorylation and TNF expression. Rescue experiments using specific agonists reversed KA's effects on macrophage polarization, demonstrating its action is mediated through the STAT/TNF signaling pathway. Our findings suggest that KA holds promise as a novel preventive strategy for AAA, with its mechanisms of action involving the regulation of macrophage polarization and the STAT/TNF signaling pathway.
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