纳米纤维
静电纺丝
聚氨酯
聚丙烯腈
材料科学
聚己内酯
图层(电子)
多孔性
脚手架
复合材料
水运
伤口敷料
纳米技术
化学工程
生物医学工程
聚合物
水流
工程类
环境工程
医学
作者
Huiyi Yin,Yongshi Guo,Simin Lai,Long Fan,Lihuan Wang,John H. Xin,Hui Yu
标识
DOI:10.1016/j.colsurfb.2022.113081
摘要
Taking inspiration from the structures of roots, stems and leaves of trees in nature, a biomimetic three-layered scaffold was designed for efficient water management and cell recruitment. Using polycaprolactone (PCL) and polyacrylonitrile (PAN) as raw materials, radially oriented nanofiber films and multistage adjustable nanofiber films were prepared through electrospinning technology as the base skin-friendly layer (roots) and middle unidirectional moisture conductive material (stems), the porous polyurethane foam was integrated as the outer moisturizing layer (leaves). Among which, radially oriented nanofiber films could promote the directional migration of fibroblasts and induce cell morphological changes. For the spatially hierarchically nanofiber films, the unidirectional transport of liquid was effectively realized. While the porous polyurethane foam membrane could absorb 9 times its weight in biofluid and retain moisture for up to 10 h. As a result, the biomimetic three-layered scaffolds with different structures can promote wound epithelization and drain biofluid while avoiding wound inflammation caused by excessive biofluid, which is expected to be applied in the field of skin wounds.
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