Regenerative potential of epicardium-derived extracellular vesicles mediated by conserved miRNA transfer
Cardiovascular Research

Abstract
After a myocardial infarction, the adult human heart lacks sufficient regenerative capacity to restore lost tissue, leading to heart failure progression. Finding novel ways to reprogram adult cardiomyocytes into a regenerative state is a major therapeutic goal. The epicardium, the outermost layer of the heart, contributes cardiovascular cell types to the forming heart and is a source of trophic signals to promote heart muscle growth during embryonic development. The epicardium is also essential for heart regeneration in zebrafish and neonatal mice and can be reactivated after injury in adult hearts to improve outcome. A recently identified mechanism of cell–cell communication and signalling is that mediated by extracellular vesicles (EVs). Here, we aimed to investigate epicardial signalling
We isolated epicardial EVs from mouse and human sources and targeted the cardiomyocyte population. Epicardial EVs enhanced proliferation in H9C2 cells and in primary neonatal murine cardiomyocytes
Here, we describe the first characterization of epicardial EV secretion, which can signal to promote proliferation of cardiomyocytes in infarcted mouse hearts and in a human model of myocardial injury, resulting in enhanced contractile function. Analysis of exosome cargo in mouse and human identified conserved pro-regenerative miRs, which in combination recapitulated the therapeutic effects of promoting cardiomyocyte proliferation.
Contributors

Cristina Villa del Campo
Author

Norman Y Liaw
Author

Mala Gunadasa-Rohling
Author

Moritz Matthaei
Author

Luca Braga
Author

Tahnee Kennedy
Author

Gabriela Salinas
Author

Niels Voigt
Author
Institute of Pharmacology and Toxicology, University Medical Center Goettingen Goettingen , Germany

Mauro Giacca
Author
King's College London London , United Kingdom of Great Britain & Northern Ireland

Wolfram-Hubertus Zimmermann
Author
University Medical Centre of Gottingen (UMG) Goettingen , Germany

Paul Richard Riley
Author
University of Oxford Oxford , United Kingdom of Great Britain & Northern Ireland
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