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

IF 5.9 1区 生物学 Q2 CELL BIOLOGY Cell Proliferation Pub Date : 2024-07-25 DOI:10.1111/cpr.13716
Somayyeh Rashidi, Ghasem Bagherpour, Zahra Abbasi-Malati, Nafiseh Didar Khosrowshahi, Sara Aghakhani Chegeni, Golbarg Roozbahani, Hamid Lotfimehr, Emel Sokullu, Reza Rahbarghazi
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Abstract

The 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.

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用于制造工程血管单元和诱导血管生成的内皮祖细胞。
促进移植物的血管化和血管生成是愈合过程和组织工程中的一个重要现象。研究表明,干细胞,尤其是内皮祖细胞(EPCs)移植到目标部位后,可刺激工程水凝胶内部的血管形成。将 EPC 纳入水凝胶可延长保留时间、长期存活、靶向输送效果、迁移和分化为成熟的内皮细胞。尽管有这些优点,但仍需进一步改良,以提高 EPCs 在体外和体内的动态生长和血管生成潜力。对具有不同物理特性的复合材料进行化学修饰,可在多种病理情况下获得更好的再生潜力和血管生成能力。在此,我们旨在收集有关将 EPCs 应用于工程血管移植物和/或水凝胶以改善移植物血管生成的最新研究成果。本文的数据可帮助我们将 EPCs 作为有效的细胞来源应用于多种缺血组织的组织工程中。
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来源期刊
Cell Proliferation
Cell Proliferation 生物-细胞生物学
CiteScore
14.80
自引率
2.40%
发文量
198
审稿时长
1 months
期刊介绍: Cell Proliferation Focus: Devoted to studies into all aspects of cell proliferation and differentiation. Covers normal and abnormal states. Explores control systems and mechanisms at various levels: inter- and intracellular, molecular, and genetic. Investigates modification by and interactions with chemical and physical agents. Includes mathematical modeling and the development of new techniques. Publication Content: Original research papers Invited review articles Book reviews Letters commenting on previously published papers and/or topics of general interest By organizing the information in this manner, readers can quickly grasp the scope, focus, and publication content of Cell Proliferation.
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