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Host tissue response in stem cell therapy
1Techung Lee, Department of Biochemistry and Center for Research in Cardiovascular Medicine, University at Buffalo, Buffalo, NY 14214, United States.
Abstract:
Preclinical and clinical trials of stem cell therapy have been carried out for treating a broad spectrum of diseases using several types of adult stem cells. While encouraging therapeutic results have been obtained, much remains to be investigated regarding the best cell type to use, cell dosage, delivery route, long-term safety, clinical feasibility, and ultimately treatment cost. Logistic aspects of stem cell therapeutics remain an area that requires urgent attention from the medical community. Recent cardiovascular trial studies have demonstrated that growth factors and cytokines derived from the injected stem cells and host tissue appear to contribute largely to the observed therapeutic benefits, indicating that trophic actions rather than the multilineage potential (or stemness) of the administered stem cells may provide the underlying tissue healing power. However, the capacity for trophic factor production can be aberrantly downregulated as seen in human heart disease. Skeletal muscle is a dynamic tissue with an impressive ability to continuously respond to environmental stimuli. Indeed, a relation exists between active skeletal muscle and low cardiovascular risk, highlighting the critical link between the skeletal muscle and cardiovascular systems. Adding to this notion are recent studies showing that stem cells injected into skeletal muscle can rescue the failing rodent heart through activation of the muscle trophic factor network and mobilization of bone marrow multilineage progenitor cells. However, aging and disease can adversely affect the host tissue into which stem cells are injected. A better understanding of the host tissue response in stem cell therapy is necessary to advance the field and bridge the gap between preclinical and clinical findings.
Insights
Stem cell therapy shows promise for various diseases, but optimizing cell type, dosage, and delivery is crucial. Research suggests therapeutic benefits stem from trophic factors, not just stemness, highlighting the need to understand host tissue responses.
Area of Science:
- Regenerative Medicine
- Stem Cell Biology
- Cardiovascular Research
Background:
- Adult stem cell therapy is explored for diverse diseases with promising results.
- Key challenges include optimizing cell type, dosage, delivery, safety, and cost.
- Therapeutic effects may stem from trophic factors rather than stem cell differentiation.
Purpose of the Study:
- Investigate the role of host tissue response in stem cell therapy efficacy.
- Explore the potential of skeletal muscle as a site for stem cell delivery.
- Understand the mechanisms underlying stem cell-mediated tissue repair, particularly in cardiovascular contexts.
Main Methods:
- Review of preclinical and clinical stem cell trial data.
- Analysis of growth factor and cytokine contributions to therapeutic benefits.
- Examination of skeletal muscle's role in stem cell therapy and cardiovascular health.
Main Results:
- Stem cell therapy yields encouraging results but requires further optimization.
- Trophic factor production by stem cells and host tissue is critical for healing.
- Skeletal muscle stem cells can potentially rescue failing hearts via trophic factor networks.
Conclusions:
- Understanding host tissue response is vital for advancing stem cell therapy.
- Optimizing stem cell logistics and delivery routes is essential for clinical success.
- Focusing on trophic actions may enhance stem cell therapeutic strategies.
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