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      Role of oxidative stress in endothelial insulin resistance.

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          Abstract

          The International Diabetes Federation estimates that 316 million people are currently affected by impaired glucose tolerance (IGT). Most importantly, recent forecasts anticipate a dramatic IGT increase with more that 470 million people affected by the year 2035. Impaired insulin sensitivity is major feature of obesity and diabetes and is strongly linked with adverse cardiometabolic phenotypes. However, the etiologic pathway linking impaired glucose tolerance and cardiovascular disease remains to be deciphered. Although insulin resistance has been attributed to inflammatory programs starting in adipose tissue, emerging evidence indicates that endothelial dysfunction may represent the upstream event preceding peripheral impairment of insulin sensitivity. Indeed, suppression of reactive oxygen species-dependent pathways in the endothelium has shown to restore insulin delivery to peripheral organs by preserving nitric oxide (NO) availability. Here we describe emerging theories concerning endothelial insulin resistance, with particular emphasis on the role oxidative stress. Complex molecular circuits including endothelial nitric oxide synthase, prostacyclin synthase, mitochondrial adaptor p66(Shc), nicotinamide adenine dinucleotide phosphate-oxidase oxidase and nuclear factor kappa-B are discussed. Moreover, the review provides insights on the effectiveness of available compounds (i.e., ruboxistaurin, sildenafil, endothelin receptor antagonists, NO donors) in restoring endothelial insulin signalling. Taken together, these aspects may significantly contribute to design novel therapeutic approaches to restore glucose homeostasis in patients with obesity and diabetes.

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          Author and article information

          Journal
          World J Diabetes
          World journal of diabetes
          1948-9358
          Mar 15 2015
          : 6
          : 2
          Affiliations
          [1 ] Francesco Paneni, Sarah Costantino, Francesco Cosentino, Cardiology Unit, Department of Medicine, Karolinska University Hospital, 17176 Stockholm, Sweden.
          Article
          10.4239/wjd.v6.i2.326
          4360426
          25789114
          3a4f8996-2cb9-4ac9-91b0-30411f1e0d8f
          History

          Cardiometabolic risk,Endothelium,Insulin resistance,Obesity,Oxidative stress,Vascular disease

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