Pluripotent stem cells provide a potential solution to current epidemic rates of heart failure by providing human cardiomyocytes to support heart regeneration. Studies of human embryonic-stem-cell-derived cardiomyocytes (hESC-CMs) in small-animal models have shown favourable effects of this treatment. However, it remains unknown whether clinical-scale hESC-CM transplantation is feasible, safe or can provide sufficient myocardial regeneration. Here we show that hESC-CMs can be produced at a clinical scale (more than one billion cells per batch) and cryopreserved with good viability. Using a non-human primate model of myocardial ischaemia followed by reperfusion, we show that cryopreservation and intra-myocardial delivery of one billion hESC-CMs generates extensive remuscularization of the infarcted heart. The hESC-CMs showed progressive but incomplete maturation over a 3-month period. Grafts were perfused by host vasculature, and electromechanical junctions between graft and host myocytes were present within 2 weeks of engraftment. Importantly, grafts showed regular calcium transients that were synchronized to the host electrocardiogram, indicating electromechanical coupling. In contrast to small-animal models, non-fatal ventricular arrhythmias were observed in hESC-CM-engrafted primates. Thus, hESC-CMs can remuscularize substantial amounts of the infarcted monkey heart. Comparable remuscularization of a human heart should be possible, but potential arrhythmic complications need to be overcome.
Human Embryonic Stem Cell-Derived Cardiomyocytes Regenerate Non-Human Primate Hearts
J. Chong,Xiulan Yang,C. Don,E. Minami,Yen-Wen Liu,Jill J. Weyers,W. M. Mahoney,B. V. Biber,Savannah M. Cook,N. Palpant,Jay A. Gantz,James A. Fugate,V. Muskheli,G. M. Gough,Keith W. Vogel,Clifford A Astley,Charlotte E. Hotchkiss,A. Baldessari,Lil Pabon,H. Reinecke,Edward A. Gill,Veronica Nelson,H. Kiem,M. Laflamme,C. Murry
Published 2014 in Nature
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- Publication year
2014
- Venue
Nature
- Publication date
2014-04-30
- Fields of study
Biology, Medicine
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Semantic Scholar, PubMed
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