Migratory and Dancing Macrophage Subsets in Atherosclerotic Lesions

被引:59
|
作者
McArdle, Sara [1 ,2 ]
Buscher, Konrad [2 ,3 ]
Ghosheh, Yanal [2 ]
Pramod, Akula Bala [2 ]
Miller, Jacqueline [2 ]
Winkels, Holger [2 ]
Wolf, Dennis [2 ,4 ,5 ]
Ley, Klaus [2 ,6 ]
机构
[1] La Jolla Inst Immunol, Microscopy Core Facil, San Diego, CA USA
[2] La Jolla Inst Immunol, Div Inflammat Biol, San Diego, CA USA
[3] Univ Hosp Muenster, Dept Nephrol & Rheumatol, Munster, Germany
[4] Univ Freiburg, Univ Heart Ctr, Freiburg, Germany
[5] Univ Freiburg, Med Ctr, Freiburg, Germany
[6] Univ Calif San Diego, Dept Bioengn, San Diego, CA 92103 USA
基金
美国国家卫生研究院;
关键词
atherosclerosis; cytokines; macrophages; microscopy; transcriptome; CELLS; EXPRESSION; INFLAMMATION; MONOCYTES; HETEROGENEITY; MODULATION;
D O I
10.1161/CIRCRESAHA.119.315175
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rationale: Macrophages are essential regulators of atherosclerosis. They secrete cytokines, process lipoproteins and cholesterol, and take up apoptotic cells. Multiple subsets of plaque macrophages exist and their differential roles are emerging. Objective: Here, we explore macrophage heterogeneity in atherosclerosis plaques using transgenic fluorescent mice in which subsets of macrophages are labeled by GFP (green fluorescent protein), YFP (yellow fluorescent protein), neither, or both. The objective was to define migration patterns of the visible subsets and relate them to their phenotypes and transcriptomes. Methods and Results: Apoe(-/-) Cx3cr1(GFP) Cd11c(YFP) mice have 4 groups of macrophages in their aortas. The 3 visible subsets show varying movement characteristics. GFP and GFP+YFP+ macrophages extend and retract dendritic processes, dancing on the spot with little net movement while YFP macrophages have a more rounded shape and migrate along the arteries. RNA sequencing of sorted cells revealed significant differences in the gene expression patterns of the 4 subsets defined by GFP and YFP expression, especially concerning chemokine and cytokine expression, matrix remodeling, and cell shape dynamics. Gene set enrichment analysis showed that GFP+ cells have similar transcriptomes to cells found in arteries with tertiary lymphoid organs and regressing plaques while YFP+ cells were associated with progressing and stable plaques. Conclusions: The combination of quantitative intravital imaging with deep transcriptomes identified 4 subsets of vascular macrophages in atherosclerosis that have unique transcriptomic profiles. Our data link vascular macrophage transcriptomes to their in vivo migratory function. Future work on the functional significance of the change in gene expression and motility characteristics will be needed to fully understand how these subsets contribute to disease progression.
引用
收藏
页码:1038 / 1051
页数:14
相关论文
共 50 条
  • [41] Macrophage subsets in atherosclerosis as defined by single-cell technologies
    Willemsen, Lisa
    de Winther, Menno P. J.
    JOURNAL OF PATHOLOGY, 2020, 250 (05) : 705 - 714
  • [42] Treatment with sulphated galactan inhibits macrophage chemotaxis and reduces intraplaque macrophage content in atherosclerotic mice
    Gomes Quindere, Ana Luiza
    Benevides, Norma Maria Barros
    Pelli, Graziano
    Lenglet, Sebastien
    Burger, Fabienne
    Carbone, Federico
    Fraga-Silva, Rodrigo A.
    Stergiopulos, Nikolaos
    Pagano, Sabrina
    Bertolotto, Maria
    Dallegri, Franco
    Vuilleumier, Nicolas
    Mach, Francois
    Montecucco, Fabrizio
    VASCULAR PHARMACOLOGY, 2015, 71 : 84 - 92
  • [43] Neutrophil Extracellular Trap Degradation by Differently Polarized Macrophage Subsets
    Haider, Patrick
    Kral-Pointner, Julia B.
    Mayer, Julia
    Richter, Manuela
    Kaun, Christoph
    Brostjan, Christine
    Eilenberg, Wolf
    Fischer, Michael B.
    Speidl, Walter S.
    Hengstenberg, Christian
    Huber, Kurt
    Wojta, Johann
    Hohensinner, Philipp
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2020, 40 (09) : 2265 - 2278
  • [44] Dual-wavelength multifrequency photothermal wave imaging combined with optical coherence tomography for macrophage and lipid detection in atherosclerotic plaques using gold nanoparticles
    Wang, Tianyi
    Mancuso, J. Jacob
    Sapozhnikova, Veronika
    Dwelle, Jordan
    Ma, Li L.
    Willsey, Brian
    Kazmi, S. M. Shams
    Qiu, Jinze
    Li, Xiankai
    Asmis, Reto
    Johnston, Keith P.
    Feldman, Marc D.
    Milner, Thomas E.
    JOURNAL OF BIOMEDICAL OPTICS, 2012, 17 (03)
  • [45] Macrophage p53 controls macrophage death in atherosclerotic lesions of apolipoprotein E deficient mice
    Boesten, Lianne S. M.
    Zadelaar, A. Susanne M.
    van Nieuwkoop, Anita
    Hu, Lihui
    Teunisse, Amina F. A. S.
    Jochemsen, Aart G.
    Evers, Bastiaan
    van de Water, Bob
    Gijbels, Marion J. J.
    van Vlijmen, Bart J. M.
    Havekes, Louis M.
    de Winther, Menno P. J.
    ATHEROSCLEROSIS, 2009, 207 (02) : 399 - 404
  • [46] Reduced atherosclerotic lesions in mice deficient for total or macrophage-specific expression of scavenger receptor-A
    Babaev, VR
    Gleaves, LA
    Carter, KJ
    Suzuki, H
    Kodama, T
    Fazio, S
    Linton, MF
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2000, 20 (12) : 2593 - 2599
  • [47] New insights into macrophage subsets in atherosclerosis
    Yurong Wang
    Qiong Wang
    Danyan Xu
    Journal of Molecular Medicine, 2022, 100 : 1239 - 1251
  • [48] MACROPHAGE SUBSETS IN DIFFERENT TYPES OF URTICARIA
    CZARNETZKI, BM
    ZWADLOKLARWASSER, G
    BROCKER, EB
    SORG, C
    ARCHIVES OF DERMATOLOGICAL RESEARCH, 1990, 282 (02) : 93 - 97
  • [49] New insights into macrophage subsets in atherosclerosis
    Wang, Yurong
    Wang, Qiong
    Xu, Danyan
    JOURNAL OF MOLECULAR MEDICINE-JMM, 2022, 100 (09): : 1239 - 1251
  • [50] Autophagy of vascular smooth muscle cells in atherosclerotic lesions
    Jia, Guanghong
    Cheng, Gang
    Agrawal, Devendra K.
    AUTOPHAGY, 2007, 3 (01) : 63 - 64