胶粘剂
胶水
材料科学
粘附
止血
纳米技术
肿胀 的
生物医学工程
复合材料
图层(电子)
医学
内科学
作者
Mingxia Chen,Taijun Chen,Jiafan Bai,Siyuan He,Minyue Luo,Yili Zeng,Wenzhen Peng,Yuancong Zhao,Jianxin Wang,Xiangdong Zhu,Wei Zhi,Jie Weng,Kai Zhang,Shouxin Zhang
标识
DOI:10.1002/adhm.202301560
摘要
The application of most hydrogel bio-adhesives is greatly limited due to their high swelling, low underwater adhesion, and single function. Herein, a spatial multi-level physical-chemical and bio-inspired in-situ bonding strategy is proposed, to develop a multifunctional hydrogel bio-glue using polyglutamic acid (PGA), tyramine hydrochloride (TYR), and tannic acid (TA) as precursors and 4-(4,6-dimethoxytriazine-2-yl) -4-methylmorpholine hydrochloride(DMTMM) as condensation agent, which is used for tissue adhesion, hemostasis and repair. By introducing TYR and TA into the PGA chain, it is demonstrated that not only can the strong adhesion of bio-glue to the surface of various fresh tissues and wet materials be realized through the synergistic effect of spatial multi-level physical and chemical bonding, but also this glue can be endowed with the functions of anti-oxidation and hemostasis. The excellent performance of such bio-glue in the repair of the wound, liver, and cartilage is achieved, showing a great potential in clinical application for such bio-glue. This study will open up a brand-new avenue for the development of multifunctional hydrogel biological adhesive.
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