Methylglyoxal Drives a Distinct, Nonclassical Macrophage Activation Status

Author:

Tsokanos Foivos-Filippos123,Muley Carolin1234,Khani Sajjad1234,Hass Daniela123,Fleming Thomas23,Wolff Gretchen123,Bartelt Alexander1345,Nawroth Peter23,Herzig Stephan1236

Affiliation:

1. Institute for Diabetes and Cancer, Helmholtz Center Munich, German Research Center for Environmental Health, Neuherberg, Germany

2. Joint Heidelberg-IDC Transnational Diabetes Program, Inner Medicine I, Heidelberg University Hospital, Heidelberg, Germany

3. German Center for Diabetes Research, Neuherberg, Germany

4. Institute for Cardiovascular Prevention, Ludwig-Maximilians-University, Munich, Germany

5. German Center for Cardiovascular Research, Partner Site Munich Heart Alliance, Technische Universität München, Munich, Germany

6. Chair Molecular Metabolic Control, Medical Faculty, Technical University Munich, Germany

Abstract

AbstractMetabolic complications in diabetic patients are driven by a combination of increased levels of nutrients and the presence of a proinflammatory environment. Methylglyoxal (MG) is a toxic byproduct of catabolism and has been strongly associated with the development of such complications. Macrophages are key mediators of inflammatory processes and their contribution to the development of metabolic complications has been demonstrated. However, a direct link between reactive metabolites and macrophage activation has not been demonstrated yet. Here, we show that acute MG treatment activated components of the p38 MAPK pathway and enhanced glycolysis in primary murine macrophages. MG induced a distinct gene expression profile sharing similarities with classically activated proinflammatory macrophages as well as metabolically activated macrophages usually found in obese patients. Transcriptomic analysis revealed a set of 15 surface markers specifically upregulated in MG-treated macrophages, thereby establishing a new set of targets for diagnostic or therapeutic purposes under high MG conditions, including diabetes. Overall, our study defines a new polarization state of macrophages that may specifically link aberrant macrophage activation to reactive metabolites in diabetes.

Funder

Deutsche Forschungsgemeinschaft

Helmholtz Association

Publisher

Georg Thieme Verlag KG

Subject

Hematology

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