Hyperamylinemia Increases IL-1β Synthesis in the Heart via Peroxidative Sarcolemmal Injury

Author:

Liu Miao1,Verma Nirmal1,Peng Xiaoli1,Srodulski Sarah1,Morris Andrew2,Chow Martin3,Hersh Louis B.3,Chen Jing3,Zhu Haining3,Netea Mihai G.4,Margulies Kenneth B.5,Despa Sanda1,Despa Florin1

Affiliation:

1. Department of Pharmacology and Nutritional Sciences, College of Medicine, University of Kentucky, Lexington, KY

2. Division of Cardiovascular Medicine, Gill Heart Institute, University of Kentucky, Lexington, KY

3. Department of Molecular and Cellular Biochemistry, College of Medicine, University of Kentucky, Lexington, KY

4. Department of Internal Medicine, Radboud University Nijmegen Medical Center, Nijmegen, the Netherlands

5. Cardiovascular Research Institute, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA

Abstract

Hypersecretion of amylin is common in individuals with prediabetes, causes amylin deposition and proteotoxicity in pancreatic islets, and contributes to the development of type 2 diabetes. Recent studies also identified amylin deposits in failing hearts from patients with obesity or type 2 diabetes and demonstrated that hyperamylinemia accelerates the development of heart dysfunction in rats expressing human amylin in pancreatic β-cells (HIP rats). To further determine the impact of hyperamylinemia on cardiac myocytes, we investigated human myocardium, compared diabetic HIP rats with diabetic rats expressing endogenous (nonamyloidogenic) rat amylin, studied normal mice injected with aggregated human amylin, and developed in vitro cell models. We found that amylin deposition negatively affects cardiac myocytes by inducing sarcolemmal injury, generating reactive aldehydes, forming amylin-based adducts with reactive aldehydes, and increasing synthesis of the proinflammatory cytokine interleukin-1β (IL-1β) independently of hyperglycemia. These results are consistent with the pathological role of amylin deposition in the pancreas, uncover a novel contributing mechanism to cardiac myocyte injury in type 2 diabetes, and suggest a potentially treatable link of type 2 diabetes with diabetic heart disease. Although further studies are necessary, these data also suggest that IL-1β might function as a sensor of myocyte amylin uptake and a potential mediator of myocyte injury.

Funder

National Heart, Lung, and Blood Institute

Division of Chemical, Bioengineering, Environmental, and Transport Systems

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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