伤口愈合
纳米纤维
明胶
静电纺丝
材料科学
瓜尔胶
止血
控制释放
生物医学工程
生物相容性材料
壳聚糖
伤口敷料
生物相容性
抗生素
自愈水凝胶
膜
脚手架
慢性伤口
医学
伤口护理
作者
Ruohong Yu,Fanying Zeng,Zhenyu Xiang,Mengyuan Dai,Guolin He,Jing Shi,Jiaojiao Shang
摘要
electrospinning and loaded with amoxicillin, exhibited pH-triggered release profiles responsive to acidic wound environments. A Schiff base reaction between aldehyde-modified guar gum and gelatin conferred enhanced mechanical strength without compromising biocompatibility. This hybrid structure enabled a dual-stage release mechanism, characterized by an initial release from the nanofibers and subsequent sustained diffusion from the hydrogel matrix. This sequential release profile resulted in a more than 10-fold extension of the release duration compared to the control. In a murine wound infection model, the composite dressing significantly accelerated healing, reducing the healing time by at least 50%. Additionally, it suppressed inflammatory cytokines and promoted collagen deposition. This study presents a practical strategy for developing multifunctional, bioresponsive wound dressings with customizable release behavior tailored to the dynamic wound microenvironment.
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