明胶
微循环
生物相容性
生物医学工程
材料科学
纳米技术
脐静脉
透明质酸
组织工程
自愈水凝胶
体内
化学
解剖
体外
医学
高分子化学
生物
放射科
生物技术
冶金
生物化学
作者
Liucheng Zhang,Yi Xiang,Hongbo Zhang,Liying Cheng,Xiyuan Mao,Ning An,Lu Zhang,Jinxiong Zhou,Lianfu Deng,Yuguang Zhang,Xiaoming Sun,Hélder A. Santos,Wenguo Cui
标识
DOI:10.1002/advs.201903553
摘要
The development of science and technology often drew lessons from natural phenomena. Herein, inspired by drying-driven curling of apple peels, hydrogel-based micro-scaled hollow tubules (MHTs) are proposed for biomimicking microvessels, which promote microcirculation and improve the survival of random skin flaps. MHTs with various pipeline structures are fabricated using hydrogel in corresponding shapes, such as Y-branches, anastomosis rings, and triangle loops. Adjustable diameters can be achieved by altering the concentration and cross-linking time of the hydrogel. Based on this rationale, biomimetic microvessels with diameters of 50-500 µm are cultivated in vitro by coculture of MHTs and human umbilical vein endothelial cells. In vivo studies show their excellent performance to promote microcirculation and improve the survival of random skin flaps. In conclusion, the present work proposes and validifies a biomimetic 3D self-forming method for the fabrication of biomimetic vessels and microvascular scaffolds with high biocompatibility and stability based on hydrogel materials, such as gelatin and hyaluronic acid.
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