An Eclectic Cast of Cellular Actors Orchestrates Innate Immune Responses in the Mechanisms Driving Obesity and Metabolic Perturbation

被引:17
作者
Arivazhagan, Lakshmi [1 ]
Ruiz, Henry H. [1 ]
Wilson, Robin A. [1 ]
Manigrasso, Michaele B. [1 ]
Gugger, Paul F. [1 ]
Fisher, Edward A. [2 ,3 ]
Moore, Kathryn J. [2 ,3 ]
Ramasamy, Ravichandran [1 ]
Schmidt, Ann Marie [1 ]
机构
[1] NYU, Dept Med, Grossman Sch Med, Diabet Res Program,Div Endocrinol Diabet & Metab, 435 E 30th St,615 Sci Bldg, New York, NY 10016 USA
[2] NYU, Grossman Sch Med, Cardiovasc Res Ctr, New York, NY USA
[3] NYU, Dept Med, Leon H Charney Div Cardiol, Marc & Ruti Bell Program Vasc Biol,Langone Med Ct, 550 1St Ave, New York, NY 10016 USA
关键词
cardiovascular disease; diabetes mellitus; immunity; innate; insulin resistance; obesity; DIET-INDUCED OBESITY; ADIPOSE-TISSUE INFLAMMATION; BETA/NF-KAPPA-B; LYMPHOID-CELLS; INSULIN SENSITIVITY; MAST-CELLS; NLRP3; INFLAMMASOME; GLYCEMIC CONTROL; WEIGHT-LOSS; NK CELLS;
D O I
10.1161/CIRCRESAHA.120.315900
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The escalating problem of obesity and its multiple metabolic and cardiovascular complications threatens the health and longevity of humans throughout the world. The cause of obesity and one of its chief complications, insulin resistance, involves the participation of multiple distinct organs and cell types. From the brain to the periphery, cell-intrinsic and intercellular networks converge to stimulate and propagate increases in body mass and adiposity, as well as disturbances of insulin sensitivity. This review focuses on the roles of the cadre of innate immune cells, both those that are resident in metabolic organs and those that are recruited into these organs in response to cues elicited by stressors such as overnutrition and reduced physical activity. Beyond the typical cast of innate immune characters invoked in the mechanisms of metabolic perturbation in these settings, such as neutrophils and monocytes/macrophages, these actors are joined by bone marrow-derived cells, such as eosinophils and mast cells and the intriguing innate lymphoid cells, which are present in the circulation and in metabolic organ depots. Upon high-fat feeding or reduced physical activity, phenotypic modulation of the cast of plastic innate immune cells ensues, leading to the production of mediators that affect inflammation, lipid handling, and metabolic signaling. Furthermore, their consequent interactions with adaptive immune cells, including myriad T-cell and B-cell subsets, compound these complexities. Notably, many of these innate immune cell-elicited signals in overnutrition may be modulated by weight loss, such as that induced by bariatric surgery. Recently, exciting insights into the biology and pathobiology of these cell type-specific niches are being uncovered by state-of-the-art techniques such as single-cell RNA-sequencing. This review considers the evolution of this field of research on innate immunity in obesity and metabolic perturbation, as well as future directions.
引用
收藏
页码:1565 / 1589
页数:25
相关论文
共 141 条
[21]   Obesity induced by a high-fat diet is associated with increased immune cell entry into the central nervous system [J].
Buckman, Laura B. ;
Hasty, Alyssa H. ;
Flaherty, David K. ;
Buckman, Christopher T. ;
Thompson, Misty M. ;
Matlock, Brittany K. ;
Weller, Kevin ;
Ellacott, Kate L. J. .
BRAIN BEHAVIOR AND IMMUNITY, 2014, 35 :33-42
[22]   GRANULOCYTE-MACROPHAGE-COLONY-STIMULATING, MEGAKARYOCYTE-COLONY-STIMULATING, EOSINOPHIL-COLONY-STIMULATING AND ERYTHROID-COLONY-STIMULATING FACTORS PRODUCED BY MOUSE SPLEEN-CELLS [J].
BURGESS, AW ;
METCALF, D ;
RUSSELL, SHM ;
NICOLA, NA .
BIOCHEMICAL JOURNAL, 1980, 185 (02) :301-314
[23]   Microbiota-Induced TNF-like Ligand 1A Drives Group 3 Innate Lymphoid Cell-Mediated Barrier Protection and Intestinal T Cell Activation during Colitis [J].
Castellanos, Jim G. ;
Woo, Viola ;
Viladomiu, Monica ;
Putzel, Gregory ;
Lima, Svetlana ;
Diehl, Gretchen E. ;
Marderstein, Andrew R. ;
Gandara, Jorge ;
Perez, Alexendar R. ;
Withers, David R. ;
Targan, Stephan R. ;
Shih, David Q. ;
Scherl, Ellen J. ;
Longman, Randy S. .
IMMUNITY, 2018, 49 (06) :1077-+
[24]   Macrophage-mediated inflammation in metabolic disease [J].
Chawla, Ajay ;
Nguyen, Khoa D. ;
Goh, Y. P. Sharon .
NATURE REVIEWS IMMUNOLOGY, 2011, 11 (11) :738-749
[25]   Adipose Tissue Dendritic Cells Enhances Inflammation by Prompting the Generation of Th17 Cells [J].
Chen, Yanhong ;
Tian, Jie ;
Tian, Xinyu ;
Tang, Xinyi ;
Rui, Ke ;
Tong, Jia ;
Lu, Liwei ;
Xu, Huaxi ;
Wang, Shengjun .
PLOS ONE, 2014, 9 (03)
[26]   Age-Related Changes in Glucose Metabolism, Hyperglycemia, and Cardiovascular Risk [J].
Chia, Chee W. ;
Egan, Josephine M. ;
Ferrucci, Luigi .
CIRCULATION RESEARCH, 2018, 123 (07) :886-904
[27]   Adipose Tissue Dendritic Cells Are Independent Contributors to Obesity-Induced Inflammation and Insulin Resistance [J].
Cho, Kae Won ;
Zamarron, Brian F. ;
Muir, Lindsey A. ;
Singer, Kanakadurga ;
Porsche, Cara E. ;
DelProposto, Jennifer B. ;
Geletka, Lynn ;
Meyer, Kevin A. ;
O'Rourke, Robert W. ;
Lumeng, Carey N. .
JOURNAL OF IMMUNOLOGY, 2016, 197 (09) :3650-3661
[28]   Microglia, neurodegeneration and loss of neuroendocrine control [J].
Chowen, Julie A. ;
Garcia-Segura, Luis M. .
PROGRESS IN NEUROBIOLOGY, 2020, 184
[29]   Decreased microglial activation through gut-brain axis by prebiotics, probiotics, or synbiotics effectively restored cognitive function in obese-insulin resistant rats [J].
Chunchai, Titikorn ;
Thunapong, Wannipa ;
Yasom, Sakawdaurn ;
Wanchai, Keerati ;
Eaimworawuthikul, Sathima ;
Metzler, Gabrielle ;
Lungkaphin, Anusorn ;
Pongchaidecha, Anchalee ;
Sirilun, Sasithorn ;
Chaiyasut, Chaiyavat ;
Pratchayasakul, Wasana ;
Thiennimitr, Parameth ;
Chattipakorn, Nipon ;
Chattipakorn, Siriporn C. .
JOURNAL OF NEUROINFLAMMATION, 2018, 15
[30]   Adipocyte death defines macrophage localization and function in adipose tissue of obese mice and humans [J].
Cinti, S ;
Mitchell, G ;
Barbatelli, G ;
Murano, I ;
Ceresi, E ;
Faloia, E ;
Wang, SP ;
Fortier, M ;
Greenberg, AS ;
Obin, MS .
JOURNAL OF LIPID RESEARCH, 2005, 46 (11) :2347-2355