Adipose tissue macrophages: implications for obesity-associated cancer

被引:29
作者
Li, Bei [1 ]
Sun, Si [2 ]
Li, Juan-Juan [3 ]
Yuan, Jing-Ping [1 ]
Sun, Sheng-Rong [3 ]
Wu, Qi [3 ,4 ]
机构
[1] Renmin Hosp Wuhan Univ, Dept Pathol, Wuhan 430060, Peoples R China
[2] Renmin Hosp Wuhan Univ, Dept Clin Lab, Wuhan 430060, Peoples R China
[3] Renmin Hosp Wuhan Univ, Dept Breast & Thyroid Surg, Wuhan 430060, Peoples R China
[4] Tongji Univ, Tongji Univ Canc Ctr, Shanghai Peoples Hosp Tongji Univ 10, Sch Med, Shanghai 200092, Peoples R China
基金
中国国家自然科学基金;
关键词
Adipose tissue macrophages; Macrophage; Adipose; Obesity; Cancer; Therapy; TUMOR-ASSOCIATED MACROPHAGES; CALORIC RESTRICTION MIMETICS; BREAST-CANCER; ALTERNATIVE ACTIVATION; RESIDENT MACROPHAGES; METABOLIC-REGULATION; BINDING PROTEIN; GENE-EXPRESSION; GUT MICROBIOTA; TNF-ALPHA;
D O I
10.1186/s40779-022-00437-5
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Obesity is one of the most serious global health problems, with an incidence that increases yearly and coincides with the development of cancer. Adipose tissue macrophages (ATMs) are particularly important in this context and contribute to linking obesity-related inflammation and tumor progression. However, the functions of ATMs on the progression of obesity-associated cancer remain unclear. In this review, we describe the origins, phenotypes, and functions of ATMs. Subsequently, we summarize the potential mechanisms on the reprogramming of ATMs in the obesity-associated microenvironment, including the direct exchange of dysfunctional metabolites, inordinate cytokines and other signaling mediators, transfer of extracellular vesicle cargo, and variations in the gut microbiota and its metabolites. A better understanding of the properties and functions of ATMs under conditions of obesity will lead to the development of new therapeutic interventions for obesity-related cancer.
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收藏
页数:15
相关论文
共 175 条
[1]   Obesity Promotes Breast Cancer by CCL2-Mediated Macrophage Recruitment and Angiogenesis [J].
Arendt, Lisa M. ;
McCready, Jessica ;
Keller, Patricia J. ;
Baker, Dana D. ;
Naber, Stephen P. ;
Seewaldt, Victoria ;
Kuperwasser, Charlotte .
CANCER RESEARCH, 2013, 73 (19) :6080-6093
[2]   Extracellular nicotinamide phosphoribosyltransferase (NAMPT) promotes M2 macrophage polarization in chronic lymphocytic leukemia [J].
Audrito, Valentina ;
Serra, Sara ;
Brusa, Davide ;
Mazzola, Francesca ;
Arruga, Francesca ;
Vaisitti, Tiziana ;
Coscia, Marta ;
Maffei, Rossana ;
Rossi, Davide ;
Wang, Tao ;
Inghirami, Giorgio ;
Rizzi, Menico ;
Gaidano, Gianluca ;
Garcia, Joe G. N. ;
Wolberger, Cynthia ;
Raffaelli, Nadia ;
Deaglio, Silvia .
BLOOD, 2015, 125 (01) :111-123
[3]   IL-1β (Interleukin-1β) and TNF-α (Tumor Necrosis Factor-α) Impact Abdominal Aortic Aneurysm Formation by Differential Effects on Macrophage Polarization [J].
Batra, Rishi ;
Suh, Melissa K. ;
Carson, Jeffrey S. ;
Dale, Matthew A. ;
Meisinger, Trevor M. ;
Fitzgerald, Matthew ;
Opperman, Patrick J. ;
Luo, Jiangtao ;
Pipinos, Iraklis I. ;
Xiong, Wanfen ;
Baxter, B. Timothy .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2018, 38 (02) :457-463
[4]   Gut Microbiome Dysbiosis and Immunometabolism: New Frontiers for Treatment of Metabolic Diseases [J].
Belizario, Jose E. ;
Faintuch, Joel ;
Garay-Malpartida, Miguel .
MEDIATORS OF INFLAMMATION, 2018, 2018
[5]   Leukocyte Overexpression of Intracellular NAMPT Attenuates Atherosclerosis by Regulating PPARγ-Dependent Monocyte Differentiation and Function [J].
Bermudez, Beatriz ;
Dahl, Tuva Borresdatter ;
Medina, Indira ;
Groeneweg, Mathijs ;
Holm, Sverre ;
Montserrat-de la Paz, Sergio ;
Rousch, Mat ;
Otten, Jeroen ;
Herias, Veronica ;
Varela, Lourdes M. ;
Ranheim, Trine ;
Yndestad, Arne ;
Ortega-Gomez, Almudena ;
Abia, Rocio ;
Nagy, Laszlo ;
Aukrust, Pal ;
Muriana, Francisco J. G. ;
Halvorsen, Bente ;
Leonardus Biessen, Erik Anna .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2017, 37 (06) :1157-+
[6]   SREBP1-induced fatty acid synthesis depletes macrophages antioxidant defences to promote their alternative activation [J].
Bidault, Guillaume ;
Virtue, Samuel ;
Petkevicius, Kasparas ;
Jolin, Helen E. ;
Dugourd, Aurelien ;
Guenantin, Anne-Claire ;
Leggat, Jennifer ;
Mahler-Araujo, Betania ;
Lam, Brian Y. H. ;
Ma, Marcella K. ;
Dale, Martin ;
Carobbio, Stefania ;
Kaser, Arthur ;
Fallon, Padraic G. ;
Saez-Rodriguez, Julio ;
McKenzie, Andrew N. J. ;
Vidal-Puig, Antonio .
NATURE METABOLISM, 2021, 3 (09) :1150-+
[7]   Macrophage plasticity and interaction with lymphocyte subsets: cancer as a paradigm [J].
Biswas, Subhra K. ;
Mantovani, Alberto .
NATURE IMMUNOLOGY, 2010, 11 (10) :889-896
[8]   Macrophage Ontogeny Underlies Differences in Tumor-Specific Education in Brain Malignancies [J].
Bowman, Robert L. ;
Klemm, Florian ;
Akkari, Leila ;
Pyonteck, Stephanie M. ;
Sevenich, Lisa ;
Quail, Daniela F. ;
Dhara, Surajit ;
Simpson, Kenishana ;
Gardner, Eric E. ;
Iacobuzio-Donahue, Christine A. ;
Brennan, Cameron W. ;
Tabar, Viviane ;
Gutin, Philip H. ;
Joyce, Johanna A. .
CELL REPORTS, 2016, 17 (09) :2445-2459
[9]   IL-6 Regulates M2 Polarization and Local Proliferation of Adipose Tissue Macrophages in Obesity [J].
Braune, Julia ;
Weyer, Ulrike ;
Hobusch, Constance ;
Mauer, Jan ;
Bruening, Jens C. ;
Bechmann, Ingo ;
Gericke, Martin .
JOURNAL OF IMMUNOLOGY, 2017, 198 (07) :2927-2934
[10]   Tissue-resident macrophages provide a pro-tumorigenic niche to early NSCLC cells [J].
Casanova-Acebes, Maria ;
Dalla, Erica ;
Leader, Andrew M. ;
LeBerichel, Jessica ;
Nikolic, Jovan ;
Morales, Blanca M. ;
Brown, Markus ;
Chang, Christie ;
Troncoso, Leanna ;
Chen, Steven T. ;
Sastre-Perona, Ana ;
Park, Matthew D. ;
Tabachnikova, Alexandra ;
Dhainaut, Maxime ;
Hamon, Pauline ;
Maier, Barbara ;
Sawai, Catherine M. ;
Agullo-Pascual, Esperanza ;
Schober, Markus ;
Brown, Brian D. ;
Reizis, Boris ;
Marron, Thomas ;
Kenigsberg, Ephraim ;
Moussion, Christine ;
Benaroch, Philippe ;
Aguirre-Ghiso, Julio A. ;
Merad, Miriam .
NATURE, 2021, 595 (7868) :578-+