生物相容性
自愈水凝胶
组织工程
脚手架
琼脂糖
生物医学工程
制作
细胞包封
去细胞化
葡萄糖醛酸
材料科学
纳米技术
化学
多糖
高分子化学
色谱法
医学
病理
冶金
替代医学
生物化学
作者
Ting Su,Mengying Zhang,Qiankun Zeng,Wenhao Pan,Yijing Huang,Yuna Qian,Wei Dong,Xiaoliang Qi,Jianliang Shen
标识
DOI:10.1016/j.bioactmat.2020.09.004
摘要
Polysaccharide hydrogels are widely used in tissue engineering because of their superior biocompatibility and low immunogenicity. However, many of these hydrogels are unrealistic for practical applications as the cost of raw materials is high, and the fabrication steps are tedious. This study focuses on the facile fabrication and optimization of agarose-polydopamine hydrogel (APG) scaffolds for skin wound healing. The first study objective was to evaluate the effects of polydopamine (PDA) on the mechanical properties, water holding capacity and cell adhesiveness of APG. We observed that APG showed decreased rigidity and increased water content with the addition of PDA. Most importantly, decreased rigidity translated into significant increase in cell adhesiveness. Next, the slow biodegradability and high biocompatibility of APG with the highest PDA content (APG3) was confirmed. In addition, APG3 promoted full-thickness skin defect healing by accelerating collagen deposition and promoting angiogenesis. Altogether, we have developed a straightforward and efficient strategy to construct functional APG scaffold for skin tissue engineering, which has translation potentials in clinical practice.
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