Abstract 4344131: Ecdysterone inhibits ferroptosis of endothelial cell by inhibiting NCF2 and activating PI3K/Akt/Nrf2 pathway to alleviate atherosclerosis

脐静脉 医学 内皮干细胞 炎症 人脐静脉内皮细胞 细胞凋亡 药理学 转染 细胞 激活剂(遗传学) 免疫学 内皮 癌症研究 下调和上调 细胞生物学 体外 内皮功能障碍 促炎细胞因子 细胞培养 体内 分泌物 信号转导 内皮细胞活化 NADPH氧化酶 肿瘤坏死因子α
作者
Hao-Yu Wu,Fengchao Wu,Zhenyu Wang,Yan Ju
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:152 (Suppl_3)
标识
DOI:10.1161/circ.152.suppl_3.4344131
摘要

Background: Ecdysterone (Ecd), a bioactive compound derived from trianthema, exhibits potent anti-inflammatory properties. This study investigates the underlying mechanisms through which Ecd mitigates atherosclerosis (AS). Methods: Human umbilical vein endothelial cells (HUVECs) were treated with 100 μg/mL (ox-LDL) for 24 h to induce endothelial injury. The cells were then treated with Ecd (40 μg/mL) for 24 h, and the protective effect of Ecd on Ox-LDL-treated HUVEC was evaluated by in vitro cell viability, ferroptosis, secretion of inflammatory factors, and levels of endothelial cell function markers (ET-1, eNOS, and NO). 1.5 μg/mL pcDNA-NCF2 was transfected into Ox-LDL-stimulated HUVECs for the recovery experiments. The PI3K/Akt/Nrf2 pathway inhibitor LY294002 (3 μM) and the pathway activator 1,3-Dicaffeoylquinic acid (10 mM) were used to confirm whether the pathway was involved in Ox-LDL-induced cell damage. ApoE −/− mice were fed a high-fat diet to establish an AS model, Ecd (25 mg/kg) was fed every day, and 500 μL of Neutrophil cytoplasmic factor 2 (NCF2) lentivirus overexpression vector (1 × 10 12 PFU/mL) was injected into the tail vein every two weeks. Subsequently, levels of arterial ferroptosis and AS lesions in mice were analyzed. Results: Ecd protected HUVECs from Ox-LDL-mediated inflammation and ferroptosis. NCF2 expression was upregulated in Ox-LDL-treated HUVECs and overexpression of NCF2 reversed this effect. In addition, Ecd activated the PI3K/Akt/Nrf2 pathway, whereas NCF2 promoted ferroptosis in Ox-LDL-treated HUVECs by inhibiting the PI3K/Akt/Nrf2 pathway. Further experiments showed that Ecd feeding reduced arterial ferroptosis in AS model mice, attenuated the levels of inflammatory markers, and alleviated AS. Conclusion: The study demonstrates that Ecd ameliorates AS primarily by downregulating NCF2 and stimulating the PI3K/Akt/Nrf2 pathway, thereby inhibiting ferroptosis. These findings suggest Ecd as a promising therapeutic agent for AS by targeting ferroptosis-driven inflammation.

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