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Voluntary exercise attenuates obesity-associated inflammation through ghrelin expressed in macrophages

  作者 Kizaki, T; Maegawa, T; Sakurai, T; Ogasawara, JE; Ookawara, T; Oh-ishi, S; Izawa, T; Haga, S; Ohno, H  
  选自 期刊  Biochemical and Biophysical Research Communications;  卷期  2011年413-3;  页码  454-459  
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[摘要]Chronic low-level inflammation is associated with obesity and a sedentary lifestyle, causing metabolic disturbances such as insulin resistance. Exercise training has been shown to decrease chronic low-level systemic inflammation in high-fat diet (HFD)-induced obesity. However, the molecular mechanisms mediating its beneficial effects are not fully understood. Ghrelin is a peptide hormone predominantly produced in the stomach that stimulates appetite and induces growth hormone release. In addition to these well-known functions, recent studies suggest that ghrelin localizes to immune cells and exerts an anti-inflammatory effect. The purpose of the current study was to investigate the role of ghrelin expressed in macrophages in the anti-inflammatory effects of voluntary exercise training. Expression of tumor necrosis factor-alpha (TNF-alpha), monocyte chemotactic protein (MCP)-1 and F4/80 was increased in adipose tissue from mice fed a HFD (HFD mice) compared with mice fed a standard diet (SD mice), whereas the expression of these inflammatory cytokines was markedly decreased in mice performing voluntary wheel running during the feeding of a HFD (HFEx mice). The expression of TNF-alpha was also increased in peritoneal macrophages by a HFD and exercise training inhibited the increase of TNF-a expression. Interestingly, expression of ghrelin in peritoneal macrophages was decreased by a HFD and recovered by exercise training. Suppression of ghrelin expression by siRNA increased TNF-a expression and LPS-stimulated NF-kappa B activation in RAW264 cells, which is a macrophage cell line. TNF-a expression by stimulation with LPS was significantly suppressed in RAW264 cells cultured in the presence of ghrelin. These results suggest that ghrelin exerts potent anti-inflammatory effects in macrophages and functions as a mediator of the beneficial effects of exercise training. (C) 2011 Elsevier Inc. All rights reserved.

 
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