4.5 Review

Molecular mechanism of crosstalk between immune and metabolic systems in metabolic syndrome

期刊

INFLAMMATION AND REGENERATION
卷 42, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s41232-022-00198-7

关键词

TLR4; Mincle; Fatty acids; Crown-like structure; Obesity; Metabolic syndrome

资金

  1. Ministry of Education, Culture, Sports, Science and Technology of Japan [20H03447, 20H05503, 20H04944, 19 K09038]
  2. Japan Agency for Medical Research and Development (CREST) [JP20gm1210009s0102, 20fk0210082s0101]
  3. FGHR (Forum on Growth Hormone Research) Clinical Research Grant
  4. Grants-in-Aid for Scientific Research [20H03447, 20H04944, 20H05503] Funding Source: KAKEN

向作者/读者索取更多资源

Chronic inflammation, particularly obesity-induced inflammation in adipose tissue, is considered as the molecular basis of metabolic syndrome. The crosstalk between different cell types in adipose tissue in obesity is not fully understood. The review highlights the role of innate immune receptors in the interaction between immune and metabolic systems in metabolic syndrome.
Chronic inflammation is currently considered as a molecular basis of metabolic syndrome. Particularly, obesity-induced inflammation in adipose tissue is the origin of chronic inflammation of metabolic syndrome. Adipose tissue contains not only mature adipocytes with large lipid droplets, but also a variety of stromal cells including adipocyte precursors, vascular component cells, immune cells, and fibroblasts. However, crosstalk between those various cell types in adipose tissue in obesity still remains to be fully understood. We focus on two innate immune receptors, Toll-like receptor 4 (TLR4) and macrophage-inducible C-type lectin (Mincle). We provided evidence that adipocyte-derived saturated fatty acids (SFAs) activate macrophage TLR4 signaling pathway, thereby forming a vicious cycle of inflammatory responses during the development of obesity. Intriguingly, the TLR4 signaling pathway is modulated metabolically and epigenetically: SFAs augment TLR4 signaling through the integrated stress response and chromatin remodeling, such as histone methylation, regulates dynamic transcription patterns downstream of TLR4 signaling. Another innate immune receptor Mincle senses cell death, which is a trigger of chronic inflammatory diseases including obesity. Macrophages form a histological structure termed crown-like structure (CLS), in which macrophages surround dead adipocytes to engulf cell debris and residual lipids. Mincle is exclusively expressed in macrophages forming the CLS in obese adipose tissue and regulates adipocyte death-triggered adipose tissue fibrosis. In addition to adipose tissue, we found a structure similar to CLS in the liver of nonalcoholic steatohepatitis (NASH) and the kidney after acute kidney injury. This review article highlights the recent progress of the crosstalk between immune and metabolic systems in metabolic syndrome, with a focus on innate immune receptors.

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