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PMID: 15193702 Published · ppublish English Comparative Study Evaluation Study Journal Article Research Support, Non-U.S. Gov't

Ultrastructural evidence of increased tolerance of hibernating myocardium to cardioplegic ischemia-reperfusion injury.

Journal of the American College of Cardiology ·Vol. 43 ·No. 12 ·2004-06-16 ·Pages 2329-36

Milei J, Fraga CG, Grana DR, Ferreira R, Ambrosio G

Abstract

The goal of this study was to investigate the effects of ischemia-reperfusion on myocardial ultrastructure in patients with and without hibernating myocardium. It is generally accepted that chronically dysfunctional, hibernating myocardium may remain nonetheless viable for a long time. It has been postulated that hibernating myocytes may survive, despite being subtended by a severe coronary artery stenosis, as they might be less susceptible to ischemic insults. However, whether hibernating myocardium is indeed more resistant to ischemia has never been investigated. Myocardial biopsies were taken before cardiac arrest and after reperfusion from the anterior wall of the left ventricle in patients undergoing coronary artery bypass surgery, divided according to presence (n = 7) or absence (n = 7) of hibernating myocardium. Ultrastructural changes were studied by electron microscopy. Because ischemia-reperfusion injury is related to oxidative stress, we also evaluated coronary sinus concentration of the antioxidants alpha-tocopherol, beta-carotene, and ubiquinol, and of lipid peroxidation products pre-ischemia and after reperfusion. Both groups were similar with respect to length of ischemia and changes in the various indexes of oxidative stress. In normally contracting myocardium, ischemia/reperfusion induced moderate overall ultrastructural changes, and marked alterations at the mitochondrial level. In contrast, post-reperfusion biopsies of hibernating myocardium displayed only minor overall ultrastructural changes, and scored significantly better on mitochondrial damage. Despite similar severity of ischemia/reperfusion, hibernating myocardium showed significantly less ultrastructural evidence of cell injury compared with normally contracting myocardium. These data indicate that human hibernating myocardium is intrinsically more resistant to ischemia/reperfusion injury.

MeSH Terms
Aged Antioxidants/metabolism Biomarkers/blood Biopsy Coronary Artery Bypass Coronary Artery Disease/physiopathology,surgery Follow-Up Studies Humans Lipid Peroxidation/physiology Microscopy, Electron Middle Aged Myocardial Contraction/physiology Myocardial Stunning/physiopathology Myocardium/metabolism,pathology,ultrastructure Myocytes, Cardiac/metabolism,pathology,ultrastructure Oxidative Stress/physiology Postoperative Complications/etiology,metabolism,physiopathology Reperfusion Injury/pathology,physiopathology Stroke Volume/physiology Treatment Outcome Ultrasonography, Interventional Ventricular Dysfunction, Left/pathology,physiopathology,surgery
Chemicals
Antioxidants Biomarkers
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Milei José
Instituto de Investigaciones Cardiológicas (ININCA), Department of Medicine, School of Medicine, University of Buenos Aires, Buenos Aires, Argentina.
Fraga César G
Grana Daniel R
Ferreira Ricardo
Ambrosio Giuseppe
Article Info
Journal
Journal of the American College of Cardiology
Abbr.
J Am Coll Cardiol
ISSN
0735-1097
Published
2004-06-16
Pages
2329-36
Language
English
Region
United States
NLM ID
8301365
Subset
IM
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