4.6 Article

Type II NKT Cells Stimulate Diet-Induced Obesity by Mediating Adipose Tissue Inflammation, Steatohepatitis and Insulin Resistance

期刊

PLOS ONE
卷 7, 期 2, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0030568

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资金

  1. Japan Society for the Promotion of Science (JSPS) [20390106]
  2. Establishment of International Collaboration Center for Zoonosis Control
  3. Ministry of Education, Culture, Sports, Science, and Technology (MEXT) of Japan
  4. Ministry of Health, Labor and Welfare of Japan
  5. Heisei Ijuku Tomakomai East Hospital
  6. Parent's Association (Keyaki Kai) Grant of Kitasa
  7. Grants-in-Aid for Scientific Research [23592073, 24390192, 23591096, 22501024, 20390106, 22590139, 21390147] Funding Source: KAKEN

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The progression of obesity is accompanied by a chronic inflammatory process that involves both innate and acquired immunity. Natural killer T (NKT) cells recognize lipid antigens and are also distributed in adipose tissue. To examine the involvement of NKT cells in the development of obesity, C57BL/6 mice (wild type; WT), and two NKT-cell-deficient strains, J alpha 18(-/-) mice that lack the type I subset and CD1d(-/-) mice that lack both the type I and II subsets, were fed a high fat diet (HFD). CD1d(-/-) mice gained the least body weight with the least weight in perigonadal and brown adipose tissue as well as in the liver, compared to WT or J alpha 18(-/-) mice fed an HFD. Histologically, CD1d(-/-) mice had significantly smaller adipocytes and developed significantly milder hepatosteatosis than WT or J alpha 8(-/-) mice. The number of NK1.1(+)TCR beta(+) cells in adipose tissue increased when WT mice were fed an HFD and were mostly invariant V alpha 14J alpha 18-negative. CD11b(+) macrophages (M phi) were another major subset of cells in adipose tissue infiltrates, and they were divided into F4/80(high) and F4/80(low) cells. The F4/80(low)-M phi subset in adipose tissue was increased in CD1d(-/-) mice, and this population likely played an anti-inflammatory role. Glucose intolerance and insulin resistance in CD1d(-/-) mice were not aggravated as in WT or J alpha 18(-/-) mice fed an HFD, likely due to a lower grade of inflammation and adiposity. Collectively, our findings provide evidence that type II NKT cells initiate inflammation in the liver and adipose tissue and exacerbate the course of obesity that leads to insulin resistance.

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