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Updated: Mar 12, 2026

Assessing Stem Cell DNA Integrity for Cardiac Cell Therapy
Published on: January 25, 2019
Therapeutic Potential of Stem Cells Strategy for Cardiovascular Diseases
Chang Youn Lee1, Ran Kim2, Onju Ham3
1Department of Integrated Omics for Biomedical Sciences, Graduate School, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-759, Republic of Korea.
Insights
Stem cells offer promising treatments for cardiovascular diseases (CVDs) due to their regenerative properties. Emerging cell-free therapies using stem cell derivatives show potential for improving CVD treatment strategies.
Area of Science:
- Regenerative Medicine
- Cardiovascular Research
Background:
- Cardiovascular diseases (CVDs) remain a primary global cause of death and illness.
- Current treatments for CVDs have limitations, necessitating novel therapeutic approaches.
Approach:
- Investigating the therapeutic potential of stem cells for CVD treatment.
- Exploring stem cell-derived extracellular vesicles and modified stem cells (miRNA-overexpressing, small-molecule-treated) for enhanced efficacy.
Key Points:
- Stem cells possess paracrine, anti-inflammatory, and immunomodulatory effects beneficial for CVDs.
- MicroRNA-overexpressing and small-molecule-treated stem cells show enhanced therapeutic potential.
- Stem cell-derived extracellular vesicles can deliver therapeutic molecules, improving host cell viability.
Conclusions:
- Stem cell-based therapies present a promising avenue for managing cardiovascular diseases.
- Cell-free therapeutic strategies utilizing stem cell components offer a novel and potentially effective approach for CVD treatment.
Abstract:
Despite development of medicine, cardiovascular diseases (CVDs) are still the leading cause of mortality and morbidity worldwide. Over the past 10 years, various stem cells have been utilized in therapeutic strategies for the treatment of CVDs. CVDs are characterized by a broad range of pathological reactions including inflammation, necrosis, hyperplasia, and hypertrophy. However, the causes of CVDs are still unclear. While there is a limit to the currently available target-dependent treatments, the therapeutic potential of stem cells is very attractive for the treatment of CVDs because of their paracrine effects, anti-inflammatory activity, and immunomodulatory capacity. Various studies have recently reported increased therapeutic potential of transplantation of microRNA- (miRNA-) overexpressing stem cells or small-molecule-treated cells. In addition to treatment with drugs or overexpressed miRNA in stem cells, stem cell-derived extracellular vesicles also have therapeutic potential because they can deliver the stem cell-specific RNA and protein into the host cell, thereby improving cell viability. Here, we reported the state of stem cell-based therapy for the treatment of CVDs and the potential for cell-free based therapy.
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