脚手架
再生(生物学)
嫁接
伤口愈合
成纤维细胞
琼脂糖
透明质酸
体内
材料科学
生物医学工程
组织工程
清创术(牙科)
再生医学
化学
细胞
细胞生物学
外科
体外
解剖
生物化学
医学
生物
聚合物
复合材料
生物技术
作者
Bin Chu,Ailian Zhang,Jianyan Huang,Xiaohui Peng,Lingling You,Chaoxi Wu,Shunqing Tang
标识
DOI:10.1088/1748-605x/ab7b3e
摘要
At present, seeking an effective dressing for wound regeneration has drawn considerable interest. In this paper, a novel agarose-grafting-hyaluronan (Ag-g-HA) scaffold was synthesized for rapid wound healing. Elemental analysis results showed that the HA grafting rate of Ag-g-HA was ∼69%. Ag-g-HA remained bioactive to accelerate cell proliferation and stimulate secretion of TNF-α for macrophagocyte RAW 264.7, and collagen I and collagen III for fibroblast 3T3. An i n vivo study demonstrated that Ag-g-HA showed a faster repair cycle and a better skin histological structure for a full-thickness skin defect. The collagen I, collagen III and TNF-α secreted by mice for Ag-g-HA were similiar to HA. Ag-g-HA showed a similiar biological activity to HA but had a longer degradation time through its improved insolubility. These findings demonstrate that the Ag-g-HA scaffold accelerated wound healing, and could be a promising novel scaffold for tissue engineering and regenerative medicine.
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