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Published on: March 17, 2020
Cardiac regeneration - Past advancements, current challenges, and future directions
Arash Pezhouman1, Ngoc B Nguyen2, Maryam Kay3
1Baylor College of Medicine, Department of Medicine, Division of Cardiology, Houston, Texas 77030, United States; Texas Heart Institute, Houston, Texas 77030, United States.
Insights
Cardiac regenerative medicine aims to repair heart damage using cell therapies, noncoding RNAs to stimulate cell growth, and bioengineering for better cell integration. These strategies offer hope for treating heart failure beyond current limitations.
Area of Science:
- Regenerative Medicine
- Cardiovascular Biology
- Biotechnology
Background:
- Cardiovascular disease is a leading global cause of death, with heart failure progression often unavoidable despite medical and surgical advancements.
- Cardiac transplantation is limited by donor availability, necessitating alternative regenerative strategies.
- Current treatments do not prevent heart failure progression, highlighting the need for novel therapeutic approaches.
Purpose of the Study:
- To review recent advancements in cardiac regenerative therapies.
- To focus on cell-based therapies, noncoding RNA for endogenous regeneration, and bioengineering for cell integration.
- To summarize the current status and future challenges in the field of cardiac regeneration.
Main Methods:
- Review of literature on cell-based cardiac regeneration, including adult stem cells, cardiosphere-derived cells, skeletal myoblasts, and pluripotent stem cells.
- Analysis of research on noncoding RNAs (miRNAs, lncRNAs) for inducing endogenous cardiomyocyte proliferation.
- Evaluation of bioengineering techniques, such as scaffold fabrication, for enhancing cell retention and integration.
Main Results:
- Diverse cell sources are being explored for cardiac repair.
- Noncoding RNAs show promise in stimulating the heart's natural regenerative capacity.
- Bioengineering approaches using biomaterials and advanced fabrication enhance cell engraftment and function.
Conclusions:
- Cardiac regenerative strategies, including cell therapy, RNA-based approaches, and bioengineering, are advancing rapidly.
- These innovative methods hold potential for restoring heart function and addressing limitations of current treatments.
- Further research is needed to overcome challenges and translate these therapies into clinical practice for heart failure patients.
Abstract:
Cardiovascular disease is the leading cause of mortality and morbidity worldwide. Despite improvements in the standard of care for patients with heart diseases, including innovation in pharmacotherapy and surgical interventions, none have yet been proven effective to prevent the progression to heart failure. Cardiac transplantation is the last resort for patients with severe heart failure, but donor shortages remain a roadblock. Cardiac regenerative strategies include cell-based therapeutics, gene therapy, direct reprogramming of non-cardiac cells, acellular biologics, and tissue engineering methods to restore damaged hearts. Significant advancements have been made over the past several decades within each of these fields. This review focuses on the advancements of: 1) cell-based cardiac regenerative therapies, 2) the use of noncoding RNA to induce endogenous cell proliferation, and 3) application of bioengineering methods to promote retention and integration of engrafted cells. Different cell sources have been investigated, including adult stem cells derived from bone marrow and adipose cells, cardiosphere-derived cells, skeletal myoblasts, and pluripotent stem cells. In addition to cell-based transplantation approaches, there have been accumulating interest over the past decade in inducing endogenous CM proliferation for heart regeneration, particularly with the use of noncoding RNAs such as miRNAs and lncRNAs. Bioengineering applications have focused on combining cell-transplantation approaches with fabrication of a porous, vascularized scaffold using biomaterials and advanced bio-fabrication techniques that may offer enhanced retention of transplanted cells, with the hope that these cells would better engraft with host tissue to improve cardiac function. This review summarizes the present status and future challenges of cardiac regenerative therapies.
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