Interferon regulatory factor-5-dependent CD11c+ macrophages contribute to the formation of rupture-prone atherosclerotic plaques

被引:56
作者
Edsfeldt, Andreas [1 ,2 ,3 ,4 ]
Swart, Maarten [3 ]
Singh, Pratibha [1 ]
Dib, Lea [3 ]
Sun, Jiangming [1 ]
Cole, Jennifer E. [3 ]
Park, Inhye [3 ]
Al-Sharify, Dania [1 ]
Persson, Ana [1 ]
Nitulescu, Mihaela [1 ]
Borges, Patricia Das Neves [3 ]
Kassiteridi, Christina [3 ]
Goddard, Michael E. [3 ]
Lee, Regent [8 ]
Volkov, Petr [1 ]
Orho-Melander, Marju [1 ]
Maegdefessel, Lars [5 ,6 ,7 ]
Nilsson, Jan [1 ]
Udalova, Irina [3 ]
Goncalves, Isabel [1 ,2 ]
Monaco, Claudia [3 ]
机构
[1] Lund Univ, Clin Res Ctr, Dept Clin Sci, Malmo, Sweden
[2] Skane Univ Hosp, Dept Cardiol, Lund, Sweden
[3] Univ Oxford, Nuffield Dept Orthopaed Rheumatol & Musculoskelet, Kennedy Inst Rheumatol, Roosevelt Dr, Oxford, England
[4] Lund Univ, Wallenberg Ctr Mol Med, Malmo, Sweden
[5] Karolinska Inst, Dept Med, Stockholm, Sweden
[6] Tech Univ Munich, Dept Vasc & Endovasc Surg, Munich, Germany
[7] DZHK Partner Site Munich, Munich, Germany
[8] Univ Oxford, Nuffield Dept Surg Sci, Oxford, England
基金
瑞典研究理事会;
关键词
IRF5; Macrophages; Atherosclerosis; Plaque rupture; CALCIFIED NODULE; POLARIZATION; DEFICIENCY; MECHANISMS; ULTRASOUND; STABILITY; EROSION; DISEASE;
D O I
10.1093/eurheartj/ehab920
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims Inflammation is a key factor in atherosclerosis. The transcription factor interferon regulatory factor-5 (IRF5) drives macrophages towards a pro-inflammatory state. We investigated the role of IRF5 in human atherosclerosis and plaque stability. Methods and results Bulk RNA sequencing from the Carotid Plaque Imaging Project biobank were used to mine associations between major macrophage associated genes and transcription factors and human symptomatic carotid disease. Immunohistochemistry, proximity extension assays, and Helios cytometry by time of flight (CyTOF) were used for validation. The effect of IRF5 deficiency on carotid plaque phenotype and rupture in ApoE(-/-) mice was studied in an inducible model of plaque rupture. Interferon regulatory factor-5 and ITGAX/CD11c were identified as the macrophage associated genes with the strongest associations with symptomatic carotid disease. Expression of IRF5 and ITGAX/CD11c correlated with the vulnerability index, pro-inflammatory plaque cytokine levels, necrotic core area, and with each other. Macrophages were the predominant CD11c-expressing immune cells in the plaque by CyTOF and immunohistochemistry. Interferon regulatory factor-5 immunopositive areas were predominantly found within CD11c(+) areas with a predilection for the shoulder region, the area of the human plaque most prone to rupture. Accordingly, an inducible plaque rupture model of ApoE(-/-)Irf5(-/-) mice had significantly lower frequencies of carotid plaque ruptures, smaller necrotic cores, and less CD11c(+) macrophages than their IRF5-competent counterparts. Conclusion Using complementary evidence from data from human carotid endarterectomies and a murine model of inducible rupture of carotid artery plaque in IRF5-deficient mice, we demonstrate a mechanistic link between the pro-inflammatory transcription factor IRF5, macrophage phenotype, plaque inflammation, and its vulnerability to rupture. Key question The transcription factor interferon regulatory factor-5 (IRF5) is a master regulator of macrophage activation that has been shown to have a role in murine atherogenesis. Its role in human atherosclerosis and its complications is unknown. Key finding Interferon regulatory factor-5 is linked to plaque vulnerability and symptoms in human carotid endarterectomies. In a murine model of inducible carotid artery plaque rupture, IRF5 drives plaque rupture. Interferon regulatory factor-5 modulates macrophage phenotype and it colocalises with CD11c(+) macrophages at the plaque shoulder. Take-home message We demonstrate a mechanistic link between the IRF5, plaque macrophages, and plaque vulnerability to rupture. Interferon regulatory factor-5 is a potential candidate therapeutic target in human atherosclerosis
引用
收藏
页码:1864 / 1877
页数:14
相关论文
共 39 条
[1]   Repetitive Intermittent Hyperglycemia Drives the M1 Polarization and Inflammatory Responses in THP-1 Macrophages Through the Mechanism Involving the TLR4-IRF5 Pathway [J].
Al-Rashed, Fatema ;
Sindhu, Sardar ;
Arefanian, Hossein ;
Al Madhoun, Ashraf ;
Kochumon, Shihab ;
Thomas, Reeby ;
Al-Kandari, Sarah ;
Alghaith, Abdulwahab ;
Jacob, Texy ;
Al-Mulla, Fahd ;
Ahmad, Rasheed .
CELLS, 2020, 9 (08)
[2]   Mechanisms of Plaque Formation and Rupture [J].
Bentzon, Jacob Fog ;
Otsuka, Fumiyuki ;
Virmani, Renu ;
Falk, Erling .
CIRCULATION RESEARCH, 2014, 114 (12) :1852-1866
[3]   Coronary risk factors and plaque morphology in men with coronary disease who died suddenly [J].
Burke, AP ;
Farb, A ;
Malcom, GT ;
Liang, YH ;
Smialek, J ;
Virmani, R .
NEW ENGLAND JOURNAL OF MEDICINE, 1997, 336 (18) :1276-1282
[4]   Immune cell census in murine atherosclerosis: cytometry by time of flight illuminates vascular myeloid cell diversity [J].
Cole, Jennifer E. ;
Park, Inhye ;
Ahern, David J. ;
Kassiteridi, Christina ;
Abeam, Dina Danso ;
Goddard, Michael E. ;
Green, Patricia ;
Maffia, Pasquale ;
Monaco, Claudia .
CARDIOVASCULAR RESEARCH, 2018, 114 (10) :1360-1371
[5]   Irf5 deficiency in macrophages promotes beneficial adipose tissue expansion and insulin sensitivity during obesity [J].
Dalmas, Elise ;
Toubal, Amine ;
Alzaid, Fawaz ;
Blazekt, Katrina ;
Eames, Hayley L. ;
Lebozec, Kristen ;
Pini, Maria ;
Hainault, Isabelle ;
Montastier, Emilie ;
Denis, Raphael G. P. ;
Ancel, Patricia ;
Lacombe, Amelie ;
Ling, Yin ;
Allatif, Omran ;
Cruciani-Guglielmacci, Celine ;
Andre, Sebastien ;
Viguerie, Nathalie ;
Poitou, Christine ;
Stich, Vladimir ;
Torcivia, Alexandra ;
Foufelle, Fabienne ;
Luquet, Serge ;
Aron-Wisnewsky, Judith ;
Langin, Dominique ;
Clement, Karine ;
Udalova, Irina A. ;
Venteclef, Nicolas .
NATURE MEDICINE, 2015, 21 (06) :610-618
[6]   Microanatomy of the Human Atherosclerotic Plaque by Single-Cell Transcriptomics [J].
Depuydt, Marie A. C. ;
Prange, Koen H. M. ;
Slenders, Lotte ;
Ord, Tiit ;
Elbersen, Danny ;
Boltjes, Arjan ;
de Jager, Saskia C. A. ;
Asselbergs, Folkert W. ;
de Borst, Gert J. ;
Aavik, Einari ;
Lonnberg, Tapio ;
Lutgens, Esther ;
Glass, Christopher K. ;
den Ruijter, Hester M. ;
Kaikkonen, Minna U. ;
Bot, Ilze ;
Slutter, Bram ;
van der Laan, Sander W. ;
Yla-Herttuala, Seppo ;
Mokry, Michal ;
Kuiper, Johan ;
de Winther, Menno P. J. ;
Pasterkamp, Gerard .
CIRCULATION RESEARCH, 2020, 127 (11) :1437-1455
[7]   MicroRNA-210 Enhances Fibrous Cap Stability in Advanced Atherosclerotic Lesions [J].
Eken, Suzanne M. ;
Jin, Hong ;
Chernogubova, Ekaterina ;
Li, Yuhuang ;
Simon, Nancy ;
Sun, Changyan ;
Korzunowicz, Greg ;
Busch, Albert ;
Backlund, Alexandra ;
Osterholm, Cecilia ;
Razuvaev, Anton ;
Renne, Thomas ;
Eckstein, Hans Henning ;
Pelisek, Jaroslav ;
Eriksson, Per ;
Diez, Maria Gonzlez ;
Matic, Ljubica Perisic ;
Schellinger, Isabel N. ;
Raaz, Uwe ;
Leeper, Nicholas J. ;
Hansson, Goran K. ;
Paulsson-Berne, Gabrielle ;
Hedin, Ulf ;
Maegdefessel, Lars .
CIRCULATION RESEARCH, 2017, 120 (04) :633-+
[8]   Determining carotid plaque vulnerability using ultrasound center frequency shifts [J].
Erlov, Tobias ;
Cinthio, Magnus ;
Edsfeldt, Andreas ;
Segstedt, Simon ;
Dias, Nuno ;
Nilsson, Jan ;
Goncalves, Isabel .
ATHEROSCLEROSIS, 2016, 246 :293-300
[9]   Update on acute coronary syndromes: the pathologists view [J].
Falk, Erling ;
Nakano, Masataka ;
Bentzon, Jacob Fog ;
Finn, Aloke V. ;
Virmani, Renu .
EUROPEAN HEART JOURNAL, 2013, 34 (10) :719-+
[10]   Changes related to age and the extracellular matrix cerebrovascular symptoms in of human carotid plaques [J].
Gonçalves, I ;
Moses, J ;
Dias, N ;
Pedro, LM ;
Fernandes, JFE ;
Nilsson, J ;
Ares, MPS .
STROKE, 2003, 34 (03) :616-622