血管生成
细胞生物学
细胞外基质
纤维连接蛋白
间充质干细胞
治疗性血管生成
细胞
体内
形态发生
整合素
体外
启动(农业)
组织工程
新生血管
化学
生物
生物医学工程
癌症研究
生物化学
医学
生物技术
基因
发芽
植物
作者
Ana Luísa Torres,Sílvia J. Bidarra,Marta Pinto,Paulo Aguiar,Eduardo A. Silva,Cristina C. Barrias
出处
期刊:Biomaterials
[Elsevier]
日期:2018-02-01
卷期号:154: 34-47
被引量:52
标识
DOI:10.1016/j.biomaterials.2017.10.051
摘要
Efficient cell delivery strategies are urgently needed to improve the outcome of cell-based pro-angiogenic therapies. This study describes the design of an injectable cell delivery platform, based on biomaterial-guided morphogenesis principles. Soft high-mannuronic acid alginate microgels, oxidized and functionalized with integrin-binding peptides, provided adequate biochemical/biomechanical cues for the co-assembly of mesenchymal stem cells and outgrowth endothelial cells (OEC) into pre-vascularized microtissues. In vitro priming conditions regulated OEC tubulogenesis, which only occurred under normoxia (+O2) in the presence of angiogenic factors (+GF) and, importantly, did not revert in an ischemic-like environment. Primed (+O2+GF) microgel-entrapped cells secreted a large variety of angiogenesis-related proteins and produced endogenous extracellular-matrix, rich in fibronectin and collagen type I, fostering cell-cell/cell-matrix interactions and establishing a stable angiogenic niche. Extending the pre-culture time resulted in higher cell outward migration and in vivo angiogenic potential. Microgels partially disintegrated upon implantation in chick embryos, promoting interaction between pre-vascularized microtissues and the host. Preserved human vascular structures were still detected in vivo, and human cells showed the ability to migrate and integrate with the chick vasculature. Our results suggest that an integrated approach combining pro-angiogenic cells, cell-instructive microgels and adequate in vitro priming may provide the basis for successful therapeutic angiogenesis.
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