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Deconstructing metabolic inflammation using cellular systems

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpendo.00039.2017

关键词

metabolic inflammation; cell-to-cell communication; insulin resistance; muscle, endothelial, and immune cell communication

资金

  1. Canadian Diabetes Association
  2. Canadian Institutes of Health Research
  3. Banting and Best Diabetes Centre of the University of Toronto
  4. Ontario Graduate Scholarship
  5. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP), Brazil
  6. Canada Research Chair on Cell Biology of Insulin Action

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Over the past years, we have embarked in a systematic analysis of the effect of obesity or fatty acids on circulating monocytes, microvascular endothelial cells, macrophages, and skeletal muscle cells. With the use of cell culture strategies, we have deconstructed complex physiological systems and then reconstructed partial equations to better understand cell-to-cell communication. Through these approaches, we identified that in high saturated fat environments, cell-autonomous proinflammatory pathways are activated in monocytes and endothelial cells, promoting monocyte adhesion and transmigration. We think of this as a paradigm of the conditions promoting immune cell infiltration into tissues during obesity. In concert, it is possible that muscle and adipose tissue secrete immune cell chemoattractants, and indeed, our tissue culture reconstructions reveal that myotubes treated with the saturated fatty acid palmitate, but not the unsaturated fatty acid palmitoleate, release nucleotides that attract monocytes and other compounds that promote proinflammatory classically activated (M1)-like polarization in macrophages. In addition, palmitate directly triggers an M1-like macrophage phenotype, and secretions from these activated macrophages confer insulin resistance to target muscle cells. Together, these studies suggest that in pathophysiological conditions of excess fat, the muscle, endothelial and immune cells engage in a synergistic crosstalk that exacerbates tissue inflammation, leukocyte infiltration, polarization, and consequent insulin resistance.

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