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Delayed Intramyocardial Delivery of Stem Cells after Ischemia Reperfusion Injury in a Murine Model
Published on: September 3, 2020
Repair of ischemic heart disease with novel bone marrow-derived multipotent stem cells
Namho Lee1, Tina Thorne, Douglas W Losordo
1Division of Cardiovascular Research, Caritas St. Elizabeth's Medical Center, Tufts University School of Medicine, Boston, Massachusetts 02135, USA.
Insights
Congestive heart failure, often caused by heart attacks, lacks effective treatments for damaged heart muscle. Bone marrow stem cells offer a promising new approach for repairing heart tissue and improving outcomes.
Area of Science:
- Regenerative Medicine
- Cardiovascular Research
- Stem Cell Biology
Background:
- Congestive heart failure is a global epidemic, primarily caused by irreversible myocardial damage from heart attacks.
- The heart muscle has a limited capacity for self-repair, leading to progressive ventricular remodeling and heart failure.
- Current treatments cannot replace scar tissue with functional cardiac muscle.
Purpose of the Study:
- To review bone marrow-derived stem progenitor cells for myocardial repair.
- To highlight the potential of novel bone marrow-derived multipotent stem cells (BMSC) in cardiac regeneration.
Main Methods:
- Review of current literature on stem cell therapy for myocardial repair.
- Focus on bone marrow-derived stem progenitor cells and novel BMSC.
Main Results:
- Bone marrow-derived stem cells show potential for tissue regeneration.
- Novel BMSC present advantages for therapeutic applications in cardiac repair.
Conclusions:
- Cell therapy using bone marrow stem cells is a promising strategy for treating heart failure.
- Further research into BMSC could lead to effective treatments for myocardial infarction and heart failure.
Abstract:
Congestive heart failure is a growing, worldwide epidemic. The major causes of heart failure are related to irreversible damage resulting from myocardial infarction (heart attack). The long-standing axiom has been that the myocardium has a limited capacity for self-repair or regeneration; and the irreversible loss of cardiac muscle and accompanying contraction and fibrosis of myocardial scar tissue, sets into play a series of events, namely, progressive ventricular remodeling of nonischemic myocardium that ultimately leads to progressive heart failure. The loss of cardiomyocyte survival cues is associated with diverse pathways for heart failure, underscoring the importance of maintaining the number of viable cardiomyocytes during heart failure progression. Currently, no medication or procedure used clinically has shown efficacy in replacing the myocardial scar with functioning contractile tissue. Therefore, given the major morbidity and mortality associated with myocardial infarction and heart failure, new approaches have been sought to address the principal pathophysiologic deficits responsible for these conditions, resulting from the loss of cardiomyocytes and viable blood vessels. Recently, the identification of stem cells from bone marrow capable of contributing to tissue regeneration has ignited significant interest in the possibility that cell therapy could be employed therapeutically for the repair of damaged myocardium. In this review, we will discuss the currently available bone marrow-derived stem progenitor cells for myocardial repair and focus on the advantages of using recently identified novel bone marrow-derived multipotent stem cells (BMSC).
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