1. Functional Recovery of a Human Neonatal Heart After Severe Myocardial Infarction.
- Author
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Haubner BJ, Schneider J, Schweigmann U, Schuetz T, Dichtl W, Velik-Salchner C, Stein JI, and Penninger JM
- Subjects
- Biomarkers blood, Cell Death, Coronary Angiography, Coronary Occlusion blood, Coronary Occlusion diagnosis, Coronary Occlusion therapy, Echocardiography, Doppler, Color, Electrocardiography, Humans, Infant, Newborn, Infant, Newborn, Diseases blood, Infant, Newborn, Diseases diagnosis, Infant, Newborn, Diseases therapy, Male, Myocardial Infarction blood, Myocardial Infarction diagnosis, Myocardial Infarction therapy, Myocardium metabolism, Myocardium pathology, Recovery of Function, Severity of Illness Index, Time Factors, Coronary Occlusion physiopathology, Infant, Newborn, Diseases physiopathology, Myocardial Infarction physiopathology, Regeneration
- Abstract
Rationale: Cardiac remodeling and subsequent heart failure remain critical issues after myocardial infarction despite improved treatment and reperfusion strategies. Recently, cardiac regeneration has been demonstrated in fish and newborn mice after apex resection or cardiac infarctions. Two key issues remain to translate findings in model organisms to future therapies in humans: what is the mechanism and can cardiac regeneration indeed occur in newborn humans?, Objective: To assess whether human neonatal hearts can functionally recover after myocardial infarction., Methods and Results: Here, we report the case of a newborn child having a severe myocardial infarction due to coronary artery occlusion. The child developed massive cardiac damage as defined by serum markers for cardiomyocyte cell death, electrocardiograms, echocardiography, and cardiac angiography. Remarkably, within weeks after the initial ischemic insult, we observed functional cardiac recovery, which translated into long-term normal heart function., Conclusions: These data indicate that, similar to neonatal rodents, newborn humans might have the intrinsic capacity to repair myocardial damage and completely recover cardiac function., (© 2015 American Heart Association, Inc.)
- Published
- 2016
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