CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Heart Regeneration

  • Exercise induces new cardiomyocyte generation in the adult mammalian heart📎

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    Abstract Title:

    Exercise induces new cardiomyocyte generation in the adult mammalian heart.

    Abstract Source:

    Nat Commun. 2018 04 25 ;9(1):1659. Epub 2018 Apr 25. PMID: 29695718

    Abstract Author(s):

    Ana Vujic, Carolin Lerchenmüller, Ting-Di Wu, Christelle Guillermier, Charles P Rabolli, Emilia Gonzalez, Samuel E Senyo, Xiaojun Liu, Jean-Luc Guerquin-Kern, Matthew L Steinhauser, Richard T Lee, Anthony Rosenzweig

    Article Affiliation:

    Ana Vujic

    Abstract:

    Loss of cardiomyocytes is a major cause of heart failure, and while the adult heart has a limited capacity for cardiomyogenesis, little is known about what regulates this ability or whether it can be effectively harnessed. Here we show that 8 weeks of running exercise increase birth of new cardiomyocytes in adult mice (~4.6-fold). New cardiomyocytes are identified based on incorporation ofN-thymidine by multi-isotope imaging mass spectrometry (MIMS) and on being mononucleate/diploid. Furthermore, we demonstrate that exercise after myocardial infarction induces a robust cardiomyogenic response in an extended border zone of the infarcted area. Inhibition of miR-222, a microRNA increased by exercise in both animal models and humans, completely blocks the cardiomyogenic exercise response. These findings demonstrate that cardiomyogenesis can be activated by exercise in the normal and injured adult mouse heart and suggest that stimulation of endogenous cardiomyocyte generation could contribute to the benefits of exercise.

  • Molecular Mechanisms of Cardiac Remodeling and Regeneration in Physical Exercise📎

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    Abstract Title:

    Molecular Mechanisms of Cardiac Remodeling and Regeneration in Physical Exercise.

    Abstract Source:

    Cells. 2019 Sep 23 ;8(10). Epub 2019 Sep 23. PMID: 31547508

    Abstract Author(s):

    Dominik Schüttler, Sebastian Clauss, Ludwig T Weckbach, Stefan Brunner

    Article Affiliation:

    Dominik Schüttler

    Abstract:

    Regular physical activity with aerobic and muscle-strengthening training protects against the occurrence and progression of cardiovascular disease and can improve cardiac function in heart failure patients. In the past decade significant advances have been made in identifying mechanisms of cardiomyocyte re-programming and renewal including an enhanced exercise-induced proliferational capacity of cardiomyocytes and its progenitor cells. Various intracellular mechanisms mediating these positive effects on cardiac function have been found in animal models of exercise and will be highlighted in this review. 1) activation of extracellular and intracellular signaling pathways including phosphatidylinositol 3 phosphate kinase (PI3K)/protein kinase B (AKT)/mammalian target of rapamycin (mTOR), EGFR/JNK/SP-1, nitric oxide (NO)-signaling, and extracellular vesicles; 2) gene expression modulation via microRNAs (miR), in particular via miR-17-3p and miR-222; and 3) modulation of cardiac cellular metabolism and mitochondrial adaption. Understanding the cellular mechanisms, which generate an exercise-induced cardioprotective cellular phenotype with physiological hypertrophy and enhanced proliferational capacity may give rise to novel therapeutic targets. These may open up innovative strategies to preserve cardiac function after myocardial injury as well as in aged cardiac tissue.