FUCCI-based live imaging platform reveals cell cycle dynamics and identifies pro-proliferative compounds in human iPSC-derived cardiomyocytes
FUCCI-based live imaging platform reveals cell cycle dynamics and identifies pro-proliferative compounds in human iPSC-derived cardiomyocytes
Abstract One of the major goals in cardiac regeneration research is to replace lost ventricular tissue with new cardiomyocytes. However, cardiomyocyte proliferation drops to low levels in neonatal hearts and is no longer efficient in compensating for the loss of functional myocardium in heart disease. We generated a human induced pluripotent stem cell (iPSC)-derived cardiomyocyte-specific cell cycle indicator system (TNNT2-FUCCI) to characterize regular and aberrant cardiomyocyte cycle dynamics. We visualized cell cycle progression in TNNT2-FUCCI and found G2 cycle arrest in endoreplicating cardiomyocytes. Moreover, we devised a live-cell compound screening platform to identify pro-proliferative drug candidates. We found that the alpha-adrenergic receptor agonist clonidine induced cardiomyocyte proliferation in vitro and increased cardiomyocyte cell cycle entry in neonatal mice. In conclusion, the TNNT2-FUCCI system is a valuable tool to characterize cardiomyocyte cell cycle dynamics and identify pro-proliferative candidates with regenerative potential in the mammalian heart.
Murganti Francesca、Baniol Marion、Neumann Katrin、Guan Kaomei、Bergmann Olaf、Derks Wouter、Simonova Irina、Khattak Shahryar
Center for Regenerative Therapies DresdenKarolinska InstituteCenter for Regenerative Therapies DresdenInstitute of Pharmacology and Toxicology, Technische Universit?t DresdenCenter for Regenerative Therapies Dresden||Karolinska InstituteCenter for Regenerative Therapies DresdenCenter for Regenerative Therapies DresdenCenter for Regenerative Therapies Dresden||Royal College of Surgeons Ireland (RCSI) in Bahrain
基础医学细胞生物学生理学
Murganti Francesca,Baniol Marion,Neumann Katrin,Guan Kaomei,Bergmann Olaf,Derks Wouter,Simonova Irina,Khattak Shahryar.FUCCI-based live imaging platform reveals cell cycle dynamics and identifies pro-proliferative compounds in human iPSC-derived cardiomyocytes[EB/OL].(2025-03-28)[2025-05-02].https://www.biorxiv.org/content/10.1101/2021.12.20.473521.点此复制
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