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January 10, 2026International Journal of Molecular Sciences1 citationsOpen Access

Insights into Cardiomyocyte Regeneration from Screening and Transcriptomics Approaches

DFDaniela T. FullerAWAaron H. WassermanRLRuya Liu

Key Points

  • The research aims to explore the mechanisms driving cardiomyocyte regeneration and identify potential therapeutic targets to enhance cardiac function after injury.
  • Review of high-throughput screening strategies and their application in cardiomyocyte proliferation.
  • Comparison of screening models, including zebrafish embryos, rodent cardiomyocytes, and human induced pluripotent stem cell-derived cardiomyocytes.
  • Integration of transcriptomics approaches like single-nucleus RNA sequencing to understand cellular heterogeneity.
  • Identified novel pro-proliferative targets for cardiomyocyte rejuvenation.
  • Explored the mechanisms behind CM cell cycling and the factors influencing their re-entry into the cell cycle.
  • Discussed advantages and limitations of various screening models for translation into clinical therapies.

Abstract

Human adult cardiomyocytes (CMs) have limited regenerative capacity, posing a significant challenge in restoring cardiac function following substantial CM loss due to an acute ischemic event or chronic hemodynamic overload. Nearly half of patients show no improvement in left ventricular ejection fraction during recovery from acute myocardial infarction. At baseline, both humans and mice exhibit low but continuous cell turnover originating from the existing CMs. Moreover, myocardial infarction can induce endogenous CM cell cycling. Consequently, research has focused on identifying drivers of CM rejuvenation and proliferation from pre-existing CMs. High-throughput screening has facilitated the discovery of novel pro-proliferative targets through small molecules, microRNAs, and pathway-specific interventions. More recently, omics-based approaches such as single-nucleus RNA sequencing and spatial transcriptomics have expanded our understanding of cardiac cellular heterogeneity. The big-data strategies provide critical insights into why only a subset of CMs re-enter the cell cycle while most remain quiescent. In this review, we compare several high-throughput screening strategies used to identify novel targets for CM proliferation. We also summarize the benefits and limitations of various screening models—including zebrafish embryos, rodent CMs, human induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs), and cardiac organoids—underscoring the importance of integrating multiple systems to uncover new regenerative mechanisms. Further work is needed to identify translatable and safe targets capable of inducing functional CM expansion in clinical settings. By integrating high-throughput screening findings with insights into CM heterogeneity, this review provides a comprehensive framework for advancing cardiac regeneration research and guiding future therapeutic development.

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Cite This Study

Fuller et al. (2026) studied this question. High-throughput screening has identified novel pro-proliferative targets that could enhance cardiomyocyte expansion for improving cardiac regeneration.

synapsesocial.com/papers/696321c391e05aa366cb8035https://doi.org/10.3390/ijms27020601
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