首页|期刊导航|针灸和草药(英文)|柽柳素靶向和促进Nrf2表达抑制缺血性脑卒中大鼠神经元铁死亡

柽柳素靶向和促进Nrf2表达抑制缺血性脑卒中大鼠神经元铁死亡OA

Tamarixetin suppresses neuronal ferroptosis in ischemic stroke rats by targeting and facilitating nuclear factor erythroid-2-related factor 2 expression

中文摘要英文摘要

抑制神经元铁死亡已成为治疗缺血性脑卒中一个有前景的干预策略.柽柳素是一种天然的膳食黄酮类化合物,通过调节神经炎症和氧化应激对缺血性脑卒中发挥保护作用.然而,其在调节神经元铁死亡方面的潜在作用尚不清楚.本文由此展开了机制研究,具体研究内容:(1)药效作用:能够改善中脑动脉闭塞再灌注(MCAO/R)模型大鼠的神经功能障碍及神经元损失;(2)对铁死亡的作用:通过降低铁离子、活性氧、丙二醛和长链酰基辅酶 A 合成酶家族成员 4 的水平,上调超氧化物歧化酶、谷胱甘肽、谷胱甘肽过氧化物酶 4、血红素加氧酶-1 和溶质载体家族 7 成员 11 的表达来抑制神经元铁死亡;(3)机制研究:通过抑制 Keap1 表达,削弱 Keap1 和 Nrf2 的结合,靶向和促进 Nrf2 蛋白表达和核转移以及促进抗氧化反应元件活性来激活 Nrf2 信号通路,为缺血性脑卒中的治疗提供一种有前景的候选药物.

Objective:Neuronal ferroptosis has emerged as a promising therapeutic target for ischemic stroke.Tamarixetin,a natural dietary flavonoid,exerts protective effects against ischemic stroke by modulating neuroinflammatory responses and mitigating oxidative stress.However,its potential role in regulating neuronal ferroptosis remains unclear. Methods:A rat model of middle cerebral artery occlusion and reperfusion and an erastin-treated SH-SY5Y cell model were used for in vivo and in vitro experiments,respectively.The neurological function of the rats was evaluated using a series of behavioral tests,the Garcia scoring system,and 2,3,5-triphenyltetrazolium chloride staining.Neuronal damage was detected via immunofluorescence staining and terminal deoxynucleotidyl transferase(TdT)-mediated deoxyuridine triphosphate(dUTP)nick-end labeling.Commercial kits,western blotting,and coimmunoprecipitation were used to analyze neuronal ferroptosis and the activation of the Nuclear factor erythroid-2-related factor 2(Nrf2)signaling pathway.The direct target protein of tamarixetin was examined using the cellular thermal shift assay,drug affinity-responsive target stability assay,surface plasmon resonance,and molecular docking.Cellular Nrf2 was knocked down using small interfering RNA. Results:Tamarixetin mitigated the neurological dysfunctions of middle cerebral artery occlusion and reperfusion(MCAO/R)rats,including motor dysfunction,limb coordination impairment,neurological deficit,cerebral infarction,and reduced neuronal loss.Furthermore,it alleviated neuronal ferroptosis in vivo and in vitro by lowering the levels of iron ions,reactive oxygen species,malondialdehyde,and acyl-CoA synthetase long-chain family member 4 and upregulating the expression of superoxide dismutase,glutathione,glutathione peroxidase 4,heme oxygenase-1,and solute carrier family 7 member 11.Tamarixetin activated the Nrf2 signaling pathway by suppressing Keap1 protein expression,weakening the interaction between Keap1 and Nrf2,upregulating Nrf2 protein expression and nuclear translocation,and promoting antioxidant response element activity.Nrf2 is the direct binding protein of tamarixetin.It specifically interacts with amino acid residues at arginine 72,arginine 515,and lysine 518.The effects of tamarixetin on Nrf2 signaling pathway activation and neuronal ferroptosis inhibition were abrogated in Nrf2 knockdown cells challenged with erastin. Conclusions:Our findings not only identify tamarixetin as a novel ferroptosis inhibitor but also elucidate its mechanism of action via direct binding and Nrf2 pathway activation,providing a promising therapeutic candidate for ischemic stroke.

杨艳秋;巩仔鹏;侯悦;方铭霞;孟庆琦;米妍;徐丽彬;郭华;刘月阳;李明忠;Nanik Siti Aminah

辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳||东北大学 信息科学与工程学院,沈阳贵州医科大学 中药功能成分发现与利用国家重点实验室 贵阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳辽宁省生物资源研究与开发重点实验室 生命与健康科学学院 工业智能与系统优化国家前沿科学中心 智能产业数据分析与优化教育部重点实验室,沈阳沈阳医学院 沈阳血管生物学重点实验室 药理学研究与服务中心 沈阳德蒙福特大学 莱斯特药学院,英国艾尔朗加大学 科学与技术学院,印度尼西亚

铁死亡缺血性脑卒中柽柳素神经元核因子红系2相关因子2

FerroptosisIschemic strokeTamarixetinNeuronNuclear factor erythroid-2-related factor 2

《针灸和草药(英文)》 2026 (1)

73-90,18

This work is supported by the National Natural Science Foundation of China(82174076),the Construction Project of Liaoning Provincial Key Laboratory,China(2022JH13/10200026),the Natural Science Foundation of Hebei Province(H2024501002),the Fundamental Research Funds for the Central Universities(N2423006),and the 111 Project(B16009).

10.1097/HM9.0000000000000182

评论