| Literature DB >> 32430578 |
Abstract
PURPOSE OF REVIEW: The typical remodeling process after cardiac injury is scarring and compensatory hypertrophy. The limited regeneration potential of the adult heart is thought to be due to the post-mitotic status of postnatal cardiomyocytes, which are mostly binucleated and/or polyploid. Nevertheless, there is evidence for cardiomyocyte turnover in the adult heart. The purpose of this review is to describe the recent findings regarding the proliferative potential of mononuclear cardiomyocytes and to evaluate their function in cardiac turnover and disease. RECENTEntities:
Keywords: Cardiac regeneration; Cardiomyocyte ploidy; Cardiomyocyte turnover; Mononuclear
Year: 2020 PMID: 32430578 PMCID: PMC7237397 DOI: 10.1007/s11886-020-01289-y
Source DB: PubMed Journal: Curr Cardiol Rep ISSN: 1523-3782 Impact factor: 2.931
Fig. 1Cardiomyocytes in the mammalian heart switch from hyperplastic to hypertrophic growth during postnatal development. Hyperplastic growth is driven by cell division while hypertrophic growth displays variations in cardiomyocyte cell cycle such as acytokinetic mitosis (karyokinesis, but no cytokinesis), resulting in a binuclear cardiomyocyte and endoreduplication (no karyokinesis or cytokinesis), resulting in a polyploid cardiomyocyte. While evidence is relatively scant, it is believed that diploid, mononuclear cardiomyocytes are still able to divide and are the source of an annual cardiomyocyte turnover. After cardiac injury, however, diploid, mononuclear, polyploid, and/or binuclear cardiomyocytes undergo cell cycle variants and do not fully divide