MicroRNA Dysregulation in Diabetic Ischemic Heart Failure Patients

Author:

Greco Simona1,Fasanaro Pasquale2,Castelvecchio Serenella3,D’Alessandra Yuri4,Arcelli Diego5,Di Donato Marisa6,Malavazos Alexis7,Capogrossi Maurizio C.2,Menicanti Lorenzo3,Martelli Fabio2

Affiliation:

1. Molecular Cardiology Laboratory, IRCCS Policlinico San Donato, Milan, Italy

2. Vascular Pathology Laboratory, Istituto Dermopatico dell’Immacolata IRCCS, Rome, Italy

3. Department of Cardiac Surgery, IRCCS Policlinico San Donato, Milan, Italy

4. Vascular Biology and Regenerative Medicine Laboratory, Centro Cardiologico Monzino IRCCS, Milan, Italy

5. Molecular Oncology Laboratory, Istituto Dermopatico dell’Immacolata IRCCS, Rome, Italy

6. Department of Medical and Surgical Critical Care, Cardiology Section, University of Florence, Florence, Italy

7. Diabetology and Metabolic Disease Unit, IRCCS Policlinico San Donato, Milan, Italy

Abstract

Increased morbidity and mortality associated with ischemic heart failure (HF) in type 2 diabetic patients requires a deeper understanding of the underpinning pathogenetic mechanisms. Given the implication of microRNAs (miRNAs) in HF, we investigated their regulation and potential role. miRNA expression profiles were measured in left ventricle biopsies from 10 diabetic HF (D-HF) and 19 nondiabetic HF (ND-HF) patients affected by non–end stage dilated ischemic cardiomyopathy. The HF groups were compared with each other and with 16 matched nondiabetic, non-HF control subjects. A total of 17 miRNAs were modulated in D-HF and/or ND-HF patients when compared with control subjects. miR-216a, strongly increased in both D-HF and ND-HF patients, negatively correlated with left ventricular ejection fraction. Six miRNAs were differently expressed when comparing D-HF and ND-HF patients: miR-34b, miR-34c, miR-199b, miR-210, miR-650, and miR-223. Bioinformatic analysis of their modulated targets showed the enrichment of cardiac dysfunctions and HF categories. Moreover, the hypoxia-inducible factor pathway was activated in the noninfarcted, vital myocardium of D-HF compared with ND-HF patients, indicating a dysregulation of the hypoxia response mechanisms. Accordingly, miR-199a, miR-199b, and miR-210 were modulated by hypoxia and high glucose in cardiomyocytes and endothelial cells cultured in vitro. In conclusion, these findings show a dysregulation of miRNAs in HF, shedding light on the specific disease mechanisms differentiating diabetic patients.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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