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Bioelectronic Synergy Lab

2022

Research article iScience

Direct Reprogramming of Cardiomyocytes into Cardiac Purkinje-like Cells

Grid of phase-contrast micrographs at 500 and 100 micrometer scales showing cardiomyocyte cultures reorganizing into networked, Purkinje-like cell structures at successive stages of reprogramming.

Authors

N. Prodan , F. Ershad , A. R. Alcaraz , L. Li , B. Mistretta , L. Gonzalez , Z. Rao , C. Yu , P. Gunaratne , N. Li , R. J. Schwartz , B. K. McConnell

Abstract

Currently, there are no treatments that ameliorate cardiac cell death, the underlying basis of cardiovascular disease. An unexplored cell type in cardiac regeneration is cardiac Purkinje cells; specialized cells from the cardiac conduction system (CCS) responsible for propagating electrical signals. Purkinje cells have tremendous potential as a regenerative treatment because they may intrinsically integrate with the CCS of a recipient myocardium, resulting in more efficient electrical conduction in diseased hearts. This study is the first to demonstrate an effective protocol for the direct reprogramming of human cardiomyocytes into cardiac Purkinje-like cells using small molecules. The cells generated were genetically and functionally similar to native cardiac Purkinje cells, where expression of key cardiac Purkinje genes such as CNTN2, ETV1, PCP4, IRX3, SCN5a, HCN2 and the conduction of electrical signals with increased velocity was observed. This study may help to advance the quest to finding an optimized cell therapy for heart regeneration.

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Cite this paper

N. Prodan, F. Ershad, A. R. Alcaraz, L. Li, B. Mistretta, L. Gonzalez, Z. Rao, C. Yu, P. Gunaratne, N. Li, R. J. Schwartz, B. K. McConnell (2022). Direct Reprogramming of Cardiomyocytes into Cardiac Purkinje-like Cells. iScience 25(11), 105402. https://doi.org/10.1016/j.isci.2022.105402

BibTeX · Prodan2022DirectReprogramming

@article{Prodan2022DirectReprogramming,
  title = {{Direct Reprogramming of Cardiomyocytes into Cardiac Purkinje-like Cells}},
  author = {N. Prodan and F. Ershad and A. R. Alcaraz and L. Li and B. Mistretta and L. Gonzalez and Z. Rao and C. Yu and P. Gunaratne and N. Li and R. J. Schwartz and B. K. McConnell},
  journal = {iScience},
  year = {2022},
  volume = {25},
  number = {11},
  pages = {105402},
  doi = {10.1016/j.isci.2022.105402},
  url = {https://doi.org/10.1016/j.isci.2022.105402},
}