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Updated: Aug 21, 2026

Assessing Stem Cell DNA Integrity for Cardiac Cell Therapy
Published on: January 25, 2019
Stem Cell-Derived Cardiac and Conduction System Cells for Heart Regeneration and Repair: Current Progress and Future
Berra Koskulu1,2, Tabish Ali1, Ilkin Tetik-Altintop3
1Department of Pharmacological and Pharmaceutical Sciences College of Pharmacy, University of Houston Houston TX USA.
None:
Cardiovascular disease remains the leading cause of global mortality, in part because the heart has limited regenerative capacity. Human-induced pluripotent stem cells (hiPSCs) offer a scalable, patient-specific platform for modeling heart disease, advancing drug discovery, and developing regenerative therapies. This review evaluates recent developments in hiPSC technology, beginning with the generation of patient-specific models of inherited arrhythmias and cardiomyopathies. We examine progress in directing hiPSCs into specialized lineages, including cardiomyocytes, pacemaker cells, and Purkinje fibers, by highlighting key developmental signaling pathways and transcriptional regulators. Furthermore, we discuss emerging strategies for cell and therapeutic delivery, such as bioengineered patches and hydrogels, and address key challenges in cell maturation and functional integration. Finally, we review current clinical trials assessing the safety of hiPSC-based treatments for heart failure and conduction disorders. These advancements underscore the dual potential of hiPSCs as essential research tools and as aspirational therapeutic resources.
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