生物粘附
材料科学
血管生成
慢性伤口
纳米技术
生物医学工程
自愈水凝胶
伤口敷料
伤口愈合
医学
高分子化学
复合材料
药物输送
外科
癌症研究
作者
Ziman Zheng,Xingmei Chen,Yafei Wang,Ping Wen,Qingfang Duan,Pei Zhang,Liangjie Shan,Zhipeng Ni,Yinghui Feng,Yuhua Xue,Xing Li,Lin Zhang,Ji Liu
标识
DOI:10.1002/adma.202408538
摘要
Abstract Hydrogel bioadhesives have emerged as a promising alternative to wound dressings for chronic wound management. However, many existing bioadhesives do not meet the functional requirements for efficient wound management through dynamically mechanical modulation, due to the reduced wound contractibility, frequent wound recurrence, incapability to actively adapt to external microenvironment variation, especially for those gradually‐expanded chronic wounds. Here, a self‐growing hydrogel bioadhesive (sGHB) patch that exhibits instant adhesion to biological tissues but also a gradual increase in mechanical strength and interfacial adhesive strength within a 120‐h application is presented. The gradually increased mechanics of the sGHB patch could effectively mitigate the stress concentration at the wound edge, and also resist the wound expansion at various stages, thus mechanically contracting the chronic wounds in a programmable manner. The self‐growing hydrogel patch demonstrated enhanced wound healing efficacy in a mouse diabetic wound model, by regulating the inflammatory response, promoting the faster re‐epithelialization and angiogenesis through mechanical modulation. Such kind of self‐growing hydrogel bioadhesives have potential clinical utility for a variety of wound management where dynamic mechanical modulation is indispensable.
科研通智能强力驱动
Strongly Powered by AbleSci AI