Murine and human pluripotent stem cell-derived cardiac bodies form contractile myocardial tissue in vitro
European Heart Journal

Abstract
We explored the use of highly purified murine and human pluripotent stem cell (PSC)-derived cardiomyocytes (CMs) to generate functional bioartificial cardiac tissue (BCT) and investigated the role of fibroblasts, ascorbic acid (AA), and mechanical stimuli on tissue formation, maturation, and functionality.
Murine and human embryonic/induced PSC-derived CMs were genetically enriched to generate three-dimensional CM aggregates, termed cardiac bodies (CBs). Addressing the critical limitation of major CM loss after single-cell dissociation, non-dissociated CBs were used for BCT generation, which resulted in a structurally and functionally homogenous syncytium. Continuous
BCT with contractile forces comparable with native myocardium can be generated from enriched, PSC-derived CMs, based on a novel concept of tissue formation from non-dissociated cardiac cell aggregates. In combination with the successful generation of tissue using a defined animal-free matrix, this represents a major step towards clinical applicability of stem cell-based heart tissue for myocardial repair.
Contributors

George Kensah
Author

Angelica Roa Lara
Author

Julia Dahlmann
Author

Robert Zweigerdt
Author

Kristin Schwanke
Author

Jan Hegermann
Author

David Skvorc
Author

Anke Gawol
Author

Azadeh Azizian
Author

Stefan Wagner
Author

Lars S. Maier
Author

Andreas Krause
Author

Gerald Dräger
Author

Matthias Ochs
Author

Axel Haverich
Author

Ina Gruh
Author

