Expression of Angiogenic Factors During Acute Coronary Syndromes in Human Type 2 Diabetes

Author:

Marfella Raffaele12,Esposito Katherine12,Nappo Francesco1,Siniscalchi Mario1,Sasso Ferdinando Carlo1,Portoghese Michele3,Pia Di Marino Maria4,Baldi Alfonso4,Cuzzocrea Salvatore5,Di Filippo Clara26,Barboso Guglielmo6,Baldi Feliciano4,Rossi Francesco26,D’Amico Michele26,Giugliano Dario12

Affiliation:

1. Department of Geriatrics and Metabolic Diseases, Section of Pathology, Second University of Naples, Naples, Italy

2. Centro di Eccellenza Cardiovascolare, Section of Pathology, Second University of Naples, Naples, Italy

3. Cardiovascular Surgery Unit, Hospital Sassari, Sassari, Italy

4. Department of Biochemistry, Section of Pathology, Second University of Naples, Naples, Italy

5. Department of Pharmacology, University of Messina, Messina, Italy

6. Department of Experimental Medicine, Section of Pathology, Second University of Naples, Naples, Italy

Abstract

Inadequate angiogenic response to ischemia in diabetic myocardium could result in poor collateral formation. Because hypoxia-inducible factor (HIF)-1α is a transcriptional activator of vascular endothelial growth factor (VEGF) and is critical for initiating angiogenic responses to hypoxia, we investigated the expression of HIF-1α and VEGF in specimens of human heart tissue to elucidate the molecular responses to myocardial ischemia in diabetic patients during unstable angina. Moreover, accumulation of a marker of protein nitration nitrotyrosine, as well as the superoxide anion (O2−) levels and inducible nitric oxide synthase (iNOS), were evaluated. Ventricular biopsy specimens from 15 type 2 diabetic and 14 nondiabetic patients presenting with unstable angina (ischemic group) and from 20 patients (11 type 2 diabetic and 9 nondiabetic patients) who underwent coronary bypass surgery without angina within the preceding 10 days (control group) were collected during coronary bypass surgery. Nondiabetic patients had higher HIF-1α and VEGF expressions compared with diabetic patients (P < 0.001). As compared with nondiabetic specimens, diabetic specimens showed higher levels of both iNOS mRNA and protein levels (P < 0.001) associated with the highest tissue levels of nitrotyrosine and O2− (P < 0.001). Diabetes is associated with increased myocardial tissue levels of iNOS, O2−, and nitrotyrosine and reduced expression of myocardial angiogenesis factors during ischemia.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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