AUTHOR=Kucera Jan P., Prudat Yann , Marcu Irene C., Azzarito Michela , Ullrich Nina D. TITLE=Slow conduction in mixed cultured strands of primary ventricular cells and stem cell-derived cardiomyocytes JOURNAL=Frontiers in Cell and Developmental Biology VOLUME=3 YEAR=2015 URL=https://www.frontiersin.org/journals/cell-and-developmental-biology/articles/10.3389/fcell.2015.00058 DOI=10.3389/fcell.2015.00058 ISSN=2296-634X ABSTRACT=
Modern concepts for the treatment of myocardial diseases focus on novel cell therapeutic strategies involving stem cell-derived cardiomyocytes (SCMs). However, functional integration of SCMs requires similar electrophysiological properties as primary cardiomyocytes (PCMs) and the ability to establish intercellular connections with host myocytes in order to contribute to the electrical and mechanical activity of the heart. The aim of this project was to investigate the properties of cardiac conduction in a co-culture approach using SCMs and PCMs in cultured cell strands. Murine embryonic SCMs were pooled with fetal ventricular cells and seeded in predefined proportions on microelectrode arrays to form patterned strands of mixed cells. Conduction velocity (CV) was measured during steady state pacing. SCM excitability was estimated from action potentials measured in single cells using the patch clamp technique. Experiments were complemented with computer simulations of conduction using a detailed model of cellular architecture in mixed cell strands. CV was significantly lower in strands composed purely of SCMs (5.5 ± 1.5 cm/s,