4.6 Article

Inflammation in obesity is the common link between defects in fatty acid metabolism and insulin resistance

Journal

CELL CYCLE
Volume 6, Issue 8, Pages 888-894

Publisher

TAYLOR & FRANCIS INC
DOI: 10.4161/cc.6.8.4135

Keywords

AMPK; ACC; TNF alpha; protein phosphatase 2C; skeletal muscle; macrophage

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Over the past two decades increases in obesity, due to high caloric intakes and immobilizing technologies, has led to a surge in type 2 diabetes. In obesity elevated circulating fatty acids set-off a pro-inflammatory cascade that increases the production of tumour necrosis factor-alpha (TNF alpha) from macrophages. Obesity is associated with blunted skeletal muscle fatty acid oxidation, accumulation of bioactive lipids and insulin resis tance. The factors contributing to defects in fatty acid metabolism are not understood but new data demonstrates that increased TNF alpha in obesity increases protein phosphatase 2C ( PP2C), which in turn suppresses the activity of AMP - activated protein kinase ( AMPK), a critical regulator of energy metabolism.(1) These data identify a novel mechanism by which inflammation in obesity is a precursor to defects in skeletal muscle fatty acid oxidation that generates a vicious cycle exacerbating the development of insulin resistance.

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