Thiazolidinediones Reduce Endothelial Expression of Receptors for Advanced Glycation End Products

Author:

Marx Nikolaus1,Walcher Daniel1,Ivanova Nina1,Rautzenberg Kirstin1,Jung Annelie1,Friedl Reinhard2,Hombach Vinzenz1,de Caterina Raffaele3,Basta Giuseppina4,Wautier Marie-Paule5,Wautiers Jean-Luc

Affiliation:

1. Department of Internal Medicine II–Cardiology, University of Ulm, Germany

2. Department of Cardiac Surgery, University of Ulm, Germany

3. University Cardiology Division, G. d’Annunzio University, Chieti, Italy

4. Institute of Clinical Physiology, CNR Pisa, Italy

5. Institut National de la Transfusion Sanguine, Paris, France

Abstract

Advanced glycation end products (AGEs) are critically involved in atherogenesis in diabetes by binding to receptors for AGE (RAGEs) in vascular cells, thus inducing the expression of proinflammatory mediators. In animal models, interruption of the AGE-RAGE interaction reduces lesion size and plaque development. Therefore, limiting RAGE expression might be an intriguing concept to modulate vascular disease in diabetic patients. The present study investigated whether thiazolidinediones (TZDs), antidiabetic agents clinically used to treat patients with type 2 diabetes, might modulate endothelial RAGE expression. Stimulation of human endothelial cells with rosiglitazone or pioglitazone decreased basal as well as tumor necrosis factor-α–induced RAGE cell surface and total protein expression. In addition, TZDs reduced RAGE mRNA expression in endothelial cells. These effects on RAGE expression were caused by an inhibition of nuclear factor-κB (NF-κB) activation at the proximal NF-κB site of the RAGE promoter. The functional relevance of reduced RAGE expression was demonstrated by showing that pretreatment of endothelial cells with TZDs decreased AGE- as well as β-amyloid–induced monocyte chemoattractant protein-1 expression. In conclusion, TZDs reduce RAGE expression in human endothelial cells, thus limiting the cells’ susceptibility toward proinflammatory AGE effects. These data provide new insight on how TZDs, in addition to their metabolic effects, might modulate the development of vascular dysfunction in diabetic patients.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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