Corilagin在体内外通过Olfr2信号通路抑制NLRP3炎症小体激活减轻动脉粥样硬化

Corilagin alleviates atherosclerosis by inhibiting NLRP3 inflammasome activation via the Olfr2 signaling pathway in vitro and in vivo.

作者信息Jinqian Mao, Yunfei Chen, Qiushuo Zong, Cuiling Liu, Jiao Xie, Yujie Wang, David Fisher, Nguyen Thi Thu Hien, Khrystyna Pronyuk, Erkin Musabaev, Yiqing Li, Lei Zhao, Yiping Dang
PMID38803504
发布时间2024-05-13
DOI10.3389/fimmu.2024.1364161

实验完整度

包含ApoE−/−小鼠体内模型、Ana-1细胞和原代BMDMs体外模型,并通过Olfr2敲低和过表达进行功能验证,检测了病理、脂质、炎症因子及通路分子表达。

摘要

Introduction: Atherosclerosis, a leading cause of global cardiovascular mortality, is characterized by chronic inflammation. Central to this process is the NOD-like receptor pyrin domain containing 3 (NLRP3) inflammasome, which significantly influences atherosclerotic progression. Recent research has identified that the olfactory receptor 2 (Olfr2) in vascular macrophages is instrumental in driving atherosclerosis through NLRP3- dependent IL-1 production.Methods: To investigate the effects of Corilagin, noted for its anti-inflammatory attributes, on atherosclerotic development and the Olfr2 signaling pathway, our study employed an atherosclerosis model in ApoE-/- mice, fed a high-fat, high-cholesterol diet, alongside cellular models in Ana-1 cells and mouse bone marrow-derived macrophages, stimulated with lipopolysaccharides and oxidized low-density lipoprotein.Results: The vivo and vitro experiments indicated that Corilagin could effectively reduce serum lipid levels, alleviate aortic pathological changes, and decrease intimal lipid deposition. Additionally, as results showed, Corilagin was able to cut down expressions of molecules associated with the Olfr2 signaling pathway.Discussion: Our findings indicated that Corilagin effectively inhibited NLRP3 inflammasome activation, consequently diminishing inflammation, macrophage polarization, and pyroptosis in the mouse aorta and cellular models via the Olfr2 pathway. This suggests a novel therapeutic mechanism of Corilagin in the treatment of atherosclerosis.

实验结论

提炼研究问题、关键发现与证据,快速把握文章的核心贡献。

研究问题
Corilagin是否通过Olfr2信号通路抑制NLRP3炎症小体激活,从而减轻动脉粥样硬化?
核心机制
Corilagin通过抑制Olfr2信号通路,下调Adcy3等下游分子,抑制NLRP3炎症小体激活,减少炎症因子表达、M1巨噬细胞极化和细胞焦亡。
主要证据
在ApoE−/−小鼠、Ana-1细胞和BMDMs中,Corilagin降低Olfr2、NLRP3、Caspase-1等表达,减少主动脉病理损伤和脂质沉积;Olfr2敲低减弱其疗效,过表达增强其疗效。
研究意义
Corilagin可能作为治疗动脉粥样硬化的新型治疗策略,为动脉粥样硬化的治疗提供新思路。

研究路径

按研究推进顺序梳理实验设计、验证步骤与关键观察。

1

建立动脉粥样硬化动物模型和细胞模型

模拟动脉粥样硬化病理环境,用于评估Corilagin的作用

ApoE−/−小鼠喂食高脂高胆固醇饮食8周;Ana-1细胞和BMDMs用LPS和ox-LDL刺激24小时。

2

Corilagin处理

观察Corilagin对动脉粥样硬化的治疗作用

动物模型中,经尾静脉注射慢病毒(4×10^7 Tfu,20μl),并灌胃给予Corilagin(10、20、40mg/kg)或阿司匹林,每2天一次,持续2周。细胞模型中,Corilagin(25、50、100μg/ml)或阿司匹林处理24小时。

3

评价动脉粥样硬化病变程度

评估Corilagin对主动脉病理和脂质沉积的影响

通过HE染色观察主动脉病理变化,油红O染色评估脂质斑块面积,检测血清脂质水平(TG、TC、HDL-C、LDL-C)。

4

检测Olfr2信号通路及炎症相关分子表达

探究Corilagin对Olfr2及下游NLRP3炎症小体通路的影响

通过RT-qPCR、Western blot、免疫荧光和免疫组化检测Olfr2、Adcy3、NLRP3、Caspase-1、ASC、NEK7、GSDMD、iNOS、Arg-1及炎症因子(IL-1β、IL-18、TNF-α)的表达。

5

调节Olfr2表达验证机制

验证Corilagin的作用是否依赖Olfr2信号通路

通过慢病毒介导Olfr2敲低(Sh-Olfr2)和过表达(Olfr2-OE),在体内外模型中观察Corilagin疗效的变化。

研究方法

按研究目的归类文中使用的方法,便于定位所需技术。

产品清单

实验环节名称品牌货号
Corilagin标准品SolarbioSC9500
阿司匹林SolarbioA8830
动物实验用CorilaginHengcheng Zhiyuan BiotechnologyN0272
细胞用阿司匹林Yuanye BiotechnologyB21505
氧化低密度脂蛋白Yiyuan BiotechnologyYB-002
脂多糖SolarbioL8880
胎牛血清Gibco10099-141
RPMI-1640培养基Gibco--
磷酸盐缓冲液ServicebioG4202
嘌呤霉素Sigma-Aldrich--
细胞筛网BiosharpBS-70-XBS
红细胞裂解液SolarbioR1010
小鼠重组巨噬细胞集落刺激因子Peprotech315-02
Trizol试剂VazymeR401-01
HiScript II Q RT SuperMix逆转录试剂VazymeR223-01
HiScript II一步法RT-qPCR SYBR Green试剂盒VazymeQ221-01
StepOne™ Plus实时荧光定量PCR仪Applied Biosystems--
RIPA裂解液BeyotimeP0013B
蛋白酶抑制剂BeyotimeP1005
BCA蛋白定量试剂盒BeyotimeP0012
一抗iNOSAbclonalA3774
一抗Adcy3Proteintech19492-1-AP
一抗NLRP3Abcamab270449
一抗GSDMDProteintech66387-1-Ig
一抗Caspase-1Proteintech22915-1-AP
一抗Arg-1Proteintech16001-1-AP
一抗NEK7AbclonalA19816
一抗ASCCell Signaling Technology67824
二抗ProteintechSA00001-1
二抗ProteintechSA00001-2
电化学发光试剂BiosharpBL520
GAPDH抗体Proteintech60004-1-Ig
全自动生化分析仪Shenzhen Leidu Life Sciences--
ELISA试剂盒Ruixin Biotechnology--
电子显微镜Olympus--
Olfr2抗体Thermo FischerOSR00025G
山羊抗兔IgGServicebioG1213
自动扫描显微镜Zeiss--
小鼠Fc阻断剂BD Biosciences553141
FITC标记抗F4/80抗体BioLegend123107
PE标记抗CD86抗体ElabscienceE-AB-F099D
PerCP/Cyanine5.5标记抗CD11b抗体ElabscienceE-AB-F1081J
BD Cytofix/Cytoperm™固定透化液BD Biosciences554722
BD Perm/Wash™缓冲液BD Biosciences554723
APC标记抗CD206抗体BioLegend141707
BD FACSCalibur™流式细胞仪BD Biosciences--
圆形盖玻片BiosharpBS-14-RC
24孔板Nest703001
牛血清白蛋白ServicebioG1208
Olfr2抗体Thermo FischerOSR00025G
二抗ServicebioGB25303
DAPI染色液ServicebioG1012
抗荧光淬灭剂ServicebioG1401

关键环节

汇总复现实验时建议重点确认的条件及原文阅读提示。

环节核对要点
动物模型
ApoE−/−小鼠(雄性,5周龄,18-24g)喂食高脂高胆固醇饮食(D12108C)8周
阅读提示:Materials and methods: Animal treatments and sample collection
细胞模型
Ana-1细胞和BMDMs用LPS(1μg/ml)和ox-LDL(100μg/ml)刺激24小时
阅读提示:Materials and methods: Cell stimulation and treatment
药物处理
动物实验Corilagin剂量(10、20、40mg/kg)或阿司匹林,灌胃每2天一次持续2周;细胞实验Corilagin浓度(25、50、100μg/ml)或阿司匹林处理24小时
阅读提示:Materials and methods: Cell stimulation and treatment; Animal treatments and sample collection
Olfr2调节
慢病毒敲低(Sh-Olfr2)和过表达(Olfr2-OE)的感染效率,动物尾静脉注射剂量(4×10^7 Tfu, 20μl),细胞MOI=40;嘌呤霉素筛选浓度(2μg/ml)和时间(2周)
阅读提示:Materials and methods: Cell culture and infection; Animal treatments and sample collection
分子检测
RT-qPCR引物序列(Table 1),Western blot抗体及稀释比例未详细说明
阅读提示:Materials and methods: Quantitative real-time PCR analysis; Western blotting analysis