Endothelial progenitor cells for fabrication of engineered vascular units and angiogenesis induction

Author:

Rashidi Somayyeh1,Bagherpour Ghasem12,Abbasi‐Malati Zahra34,Khosrowshahi Nafiseh Didar5,Chegeni Sara Aghakhani6,Roozbahani Golbarg7,Lotfimehr Hamid4,Sokullu Emel89,Rahbarghazi Reza410ORCID

Affiliation:

1. Department of Medical Biotechnology, Faculty of Medicine Zanjan University of Medical Sciences Zanjan Iran

2. Zanjan Pharmaceutical Biotechnology Research Center Zanjan University of Medical Sciences Zanjan Iran

3. Student Research Center Tabriz University of Medical Sciences Tabriz Iran

4. Stem Cell Research Center Tabriz University of Medical Sciences Tabriz Iran

5. Chemical Engineering Faculty Sahand University of Technology Tabriz Iran

6. Department of Clinical Biochemistry and Laboratory Medicine Tabriz University of Medical Sciences Tabriz Iran

7. Department of Plant, Cell and Molecular Biology, Faculty of Natural Sciences University of Tabriz Tabriz Iran

8. Research Center for Translational Medicine (KUTTAM) Koç University Istanbul Turkey

9. Biophysics Department Koç University School of Medicine Istanbul Turkey

10. Department of Applied Cell Sciences, Faculty of Advanced Medical Sciences Tabriz University of Medical Sciences Tabriz Iran

Abstract

AbstractThe promotion of vascularization and angiogenesis in the grafts is a crucial phenomenon in the healing process and tissue engineering. It has been shown that stem cells, especially endothelial progenitor cells (EPCs), can stimulate blood vessel formation inside the engineered hydrogels after being transplanted into the target sites. The incorporation of EPCs into the hydrogel can last the retention time, long‐term survival, on‐target delivery effects, migration and differentiation into mature endothelial cells. Despite these advantages, further modifications are mandatory to increase the dynamic growth and angiogenesis potential of EPCs in in vitro and in vivo conditions. Chemical modifications of distinct composites with distinct physical properties can yield better regenerative potential and angiogenesis during several pathologies. Here, we aimed to collect recent findings related to the application of EPCs in engineered vascular grafts and/or hydrogels for improving vascularization in the grafts. Data from the present article can help us in the application of EPCs as valid cell sources in the tissue engineering of several ischemic tissues.

Funder

Zanjan University of Medical Sciences

Tabriz University of Medical Sciences

Publisher

Wiley

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