Related Experiment Video
Updated: Jun 11, 2025

Visualization of Cell Cycle Variations and Determination of Nucleation in Postnatal Cardiomyocytes
Published on: February 24, 2017
Cell cycle visualization tools to study cardiomyocyte proliferation in real-time
Rustem Salmenov1, Christine Mummery1,2, Menno Ter Huurne1
1Department of Anatomy and Embryology, Leiden University Medical Center, Leiden 2300RC, The Netherlands.
Abstract:
Cardiomyocytes in the adult human heart are quiescent and those lost following heart injury are not replaced by proliferating survivors. Considerable effort has been made to understand the mechanisms underlying cardiomyocyte cell cycle exit and re-entry, with view to discovering therapeutics that could stimulate cardiomyocyte proliferation and heart regeneration. The advent of large compound libraries and robotic liquid handling platforms has enabled the screening of thousands of conditions in a single experiment but success of these screens depends on the appropriateness and quality of the model used. Quantification of (human) cardiomyocyte proliferation in high throughput has remained problematic because conventional antibody-based staining is costly, technically challenging and does not discriminate between cardiomyocyte division and failure in karyokinesis or cytokinesis. Live cell imaging has provided alternatives that facilitate high-throughput screening but these have other limitations. Here, we (i) review the cell cycle features of cardiomyocytes, (ii) discuss various cell cycle fluorescent reporter systems, and (iii) speculate on what could improve their predictive value in the context of cardiomyocyte proliferation. Finally, we consider how these new methods can be used in combination with state-of-the-art three-dimensional human cardiac organoid platforms to identify pro-proliferative signalling pathways that could stimulate regeneration of the human heart.
Insights
Adult human heart cells do not regenerate after injury. This study reviews methods for tracking cardiomyocyte proliferation, aiming to discover new ways to regenerate heart tissue.
Area of Science:
- Cardiovascular Biology
- Regenerative Medicine
- Cell Cycle Regulation
Background:
- Adult human cardiomyocytes are terminally differentiated and do not proliferate after injury, leading to limited heart regeneration.
- Understanding cardiomyocyte cell cycle control is crucial for developing therapies to promote heart repair.
- Current methods for quantifying cardiomyocyte proliferation in high-throughput screening are limited.
Purpose of the Study:
- To review cardiomyocyte cell cycle characteristics.
- To discuss fluorescent reporter systems for monitoring cell cycle progression.
- To explore strategies for improving predictive value in high-throughput screening for cardiomyocyte proliferation.
Main Methods:
- Review of existing literature on cardiomyocyte cell cycle and reporter systems.
- Discussion of challenges in quantifying cardiomyocyte proliferation.
- Consideration of advanced 3D human cardiac organoid platforms.
Main Results:
- Conventional antibody staining for proliferation is costly and imprecise.
- Live cell imaging offers high-throughput alternatives but has limitations.
- Novel reporter systems and organoid models show promise for improved screening.
Conclusions:
- Accurate quantification of cardiomyocyte proliferation is essential for drug discovery.
- Advanced reporter systems combined with 3D organoids can identify pro-proliferative pathways.
- This approach holds potential for stimulating human heart regeneration.

