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Inhibition of intestinal cholesterol absorption decreases atherosclerosis but not adipose tissue inflammation
Authors:Tomio Umemoto  Savitha Subramanian  Yilei Ding  Leela Goodspeed  Shari Wang  Chang Yeop Han  Antonio Sta. Teresa  Jinkyu Kim  Kevin D. O'Brien  Alan Chait
Affiliation:*Division of Metabolism, Endocrinology, and Nutrition, University of Washington, Seattle, WA;Diabetes Obesity Center for Excellence, University of Washington, Seattle, WA;§Division of Cardiology, University of Washington, Seattle, WA
Abstract:Adipose tissue inflammation is associated with insulin resistance and increased cardiovascular disease risk in obesity. We previously showed that addition of cholesterol to a diet rich in saturated fat and refined carbohydrate significantly worsens dyslipidemia, insulin resistance, adipose tissue macrophage accumulation, systemic inflammation, and atherosclerosis in LDL receptor-deficient (Ldlr−/−) mice. To test whether inhibition of intestinal cholesterol absorption would improve metabolic abnormalities and adipose tissue inflammation in obesity, we administered ezetimibe, a dietary and endogenous cholesterol absorption inhibitor, to Ldlr−/− mice fed chow or high-fat, high-sucrose (HFHS) diets without or with 0.15% cholesterol (HFHS+C). Ezetimibe blunted weight gain and markedly reduced plasma lipids in the HFHS+C group. Ezetimibe had no effect on glucose homeostasis or visceral adipose tissue macrophage gene expression in the HFHS+C fed mice, although circulating inflammatory markers serum amyloid A (SSA) and serum amyloid P (SSP) levels decreased. Nevertheless, ezetimibe treatment led to a striking (>85%) reduction in atherosclerotic lesion area with reduced lesion lipid and macrophage content in the HFHS+C group. Thus, in the presence of dietary cholesterol, ezetimibe did not improve adipose tissue inflammation in obese Ldlr−/− mice, but it led to a major reduction in atherosclerotic lesions associated with improved plasma lipids and lipoproteins.
Keywords:ezetimibe   insulin resistance   hepatic steatosis   macrophage
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