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Delayed Intramyocardial Delivery of Stem Cells after Ischemia Reperfusion Injury in a Murine Model
Published on: September 3, 2020
To Repair a Broken Heart: Stem Cells in Ischemic Heart Disease
Theodora M Stougiannou1, Konstantinos C Christodoulou1, Ioannis Dimarakis2
1Department of Cardiothoracic Surgery, University General Hospital of Alexandroupolis, Dragana, 68100 Alexandroupolis, Greece.
Insights
Stem cell (SC) therapies show promise for treating ischemic heart disease (IHD) by regenerating cardiac tissue after myocardial infarction (MI). This review examines SC applications via surgical or interventional methods over the past 20 years.
Area of Science:
- Regenerative Medicine
- Cardiovascular Research
- Stem Cell Biology
Background:
- Cardiovascular disease (CVD), particularly ischemic heart disease (IHD), causes significant global mortality.
- Current treatments for myocardial infarction (MI) often fail to fully restore lost cardiomyocyte function.
- Stem cells (SC) offer potential for cardiac tissue repair through direct replacement or paracrine signaling.
Purpose of the Study:
- To conduct a narrative review of experimental and clinical studies on stem cell therapies for infarcted myocardium.
- To focus on therapies administered via thoracic incision or percutaneous coronary intervention (PCI).
- To elucidate mechanisms of action and therapeutic effects of SC-based cardiac treatments.
Main Methods:
- Reviewed literature on stem cell applications in infarcted myocardium over the last two decades.
- Included studies using various stem cell types (ESCs, iPSCs, Muse, MSCs, CSCs).
- Focused on delivery methods including cell therapy and tissue-engineered (TE) constructs via surgical or interventional approaches.
Main Results:
- Various stem cell populations have been investigated for treating myocardial infarction (MI).
- Delivery methods include direct cell transplantation and tissue-engineered (TE) constructs.
- Therapeutic effects are achieved through direct cellular replacement and indirect paracrine mechanisms.
Conclusions:
- Stem cell therapies hold significant potential for treating ischemic heart disease (IHD) and regenerating cardiac tissue post-myocardial infarction (MI).
- Further research into delivery methods, such as surgical and interventional approaches, is crucial for optimizing therapeutic outcomes.
- Understanding the mechanisms of action is key to advancing stem cell-based cardiac regeneration.
Abstract:
Despite improvements in contemporary medical and surgical therapies, cardiovascular disease (CVD) remains a significant cause of worldwide morbidity and mortality; more specifically, ischemic heart disease (IHD) may affect individuals as young as 20 years old. Typically managed with guideline-directed medical therapy, interventional or surgical methods, the incurred cardiomyocyte loss is not always completely reversible; however, recent research into various stem cell (SC) populations has highlighted their potential for the treatment and perhaps regeneration of injured cardiac tissue, either directly through cellular replacement or indirectly through local paracrine effects. Different stem cell (SC) types have been employed in studies of infarcted myocardium, both in animal models of myocardial infarction (MI) as well as in clinical studies of MI patients, including embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs), Muse cells, multipotent stem cells such as bone marrow-derived cells, mesenchymal stem cells (MSCs) and cardiac stem and progenitor cells (CSC/CPCs). These have been delivered as is, in the form of cell therapies, or have been used to generate tissue-engineered (TE) constructs with variable results. In this text, we sought to perform a narrative review of experimental and clinical studies employing various stem cells (SC) for the treatment of infarcted myocardium within the last two decades, with an emphasis on therapies administered through thoracic incision or through percutaneous coronary interventions (PCI), to elucidate possible mechanisms of action and therapeutic effects of such cell therapies when employed in a surgical or interventional manner.
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