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Deficiency of Invariant Natural Killer T Cells Does Not Protect Against Obesity but Exacerbates Atherosclerosis in Ldlr Mice.

Citation
Subramanian, S., et al. “Deficiency Of Invariant Natural Killer T Cells Does Not Protect Against Obesity But Exacerbates Atherosclerosis In Ldlr Mice.”. International Journal Of Molecular Sciences.
Center University of Washington
Author Savitha Subramanian, Leela Goodspeed, Shari Wang, Yilei Ding, Kevin D O'Brien, Godfrey S Getz, Alan Chait, Catherine A Reardon
Keywords Adipose tissue, atherosclerosis, inflammation, natural killer T cells
Abstract

Obesity is a chronic inflammatory state characterized by altered levels of adipose tissue immune cell populations. Natural killer T (NKT) cells are CD1d restricted lymphocyte subsets that recognize lipid antigens whose level decreases in obese adipose tissue. However, studies in mice with deficiency or increased levels of NKT cells have yielded contradictory results, so the exact role of these cells in obesity and adipose tissue inflammation is not yet established. We previously showed that mice with excess invariant NKT (iNKT) cells demonstrate significant weight gain, adiposity, metabolic abnormalities, and atherosclerosis. The current study evaluates the effects of NKT cell deficiency on obesity, associated metabolic changes, and atherosclerosis in (lacking iNKT cells) and (lacking invariant and type II NKT cells) mice, and control mice were fed an obesogenic diet (high fat, sucrose, cholesterol) for 16 weeks. Contrary to expectations, mice gained significantly more weight than or mice, developed hypertriglyceridemia, and had worsened adipose tissue inflammation. All the mice developed insulin resistance and hepatic triglyceride accumulation. mice also had increased atherosclerotic lesion area. Our findings suggest that iNKT cells exacerbates the metabolic, inflammatory, and atherosclerotic features of diet-induced obesity. Further work is required to unravel the paradox of an apparently similar effect of iNKT cell surplus and depletion on obesity.

Year of Publication
2018
Journal
International journal of molecular sciences
Volume
19
Issue
2
Date Published
02/2018
ISSN Number
1422-0067
DOI
10.3390/ijms19020510
Alternate Journal
Int J Mol Sci
PMID
29419749
PMCID
PMC5855732
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