壳聚糖
纳米纤维
生物相容性
膜
静电纺丝
材料科学
药物输送
伤口愈合
生物医学工程
纳米技术
化学
复合材料
外科
有机化学
医学
聚合物
生物化学
冶金
作者
Fuchen Jiang,Xuebo Li,Yun Duan,Qing Li,Yan Qu,Guofeng Zhong,Mengyu Qiu,Junbo Zhang,Chen Zhang,Xiaoli Pan
标识
DOI:10.1016/j.colsurfb.2022.113030
摘要
Due to its capabilities for wound healing, antimicrobial defense, hemostasis, and biodegradation, chitosan has seen increased use in biomedical disciplines in recent years. In the meantime, efforts have been made to develop and use insect chitosan as a source to address the seasonal, irritating, and regional shortcomings of traditional shrimp and crab chitosan. In this study, a new type of insect chitosan (DCS) was first extracted from Eupolyphaga sinensis Walker by a low-temperature intermittent method and was compared with commercially available pharmaceutical chitosan (CS). Firstly, the degree of deacetylation and molecular weight of DCS were determined, and DCS was characterized by FT-IR, 1H NMR, XRD, and TGA-DTG. On this basis, DCS was mixed with PVA and PEO to create a novel electrospun nanofiber membrane. The air permeability, antibacterial properties, and biocompatibility of the nanofiber membrane were evaluated, as well as the membrane's shape, structure, and mechanical characteristics. Finally, the activity of nanofiber membranes in promoting wound healing was verified with a rat full-thickness skin defect model, hoping to provide a reference for the development of new drug delivery carriers and wound dressings.
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