伤口愈合
胶粘剂
材料科学
化学
伤口敷料
抗菌活性
高分子科学
高分子化学
复合材料
细菌
外科
医学
遗传学
图层(电子)
生物
作者
Zhicong Lin,Donghao Fan,Guojiao Li,Liming He,Xianyan Qin,Bin Zhao,Qin Wang,Wenlang Liang
标识
DOI:10.1002/mabi.202200349
摘要
Abstract Diabetic mellitus is one of the leading causes of chronic wounds and remains a challenging issue to be resolved. Herein, a hydrogel with conformal tissue adhesivity, skin‐like conductivity, robust mechanical characteristics, as well as active antibacterial function is developed. In this hydrogel, silver nanoparticles decorated polypyrrole nanotubes (AgPPy) and cobalt ions (Co 2+ ) are introduced into an in situ polymerized poly(acrylic acid) (PAA) and branched poly(ethylenimine) (PEI) network (PPCA hydrogel). The PPCA hydrogel provides active antibacterial function through synergic effects from protonated PEI and AgPPy nanotubes, with a tissue‐like mechanical property (≈16.8 ± 4.5 kPa) and skin‐like electrical conductivity (≈0.048 S m −1 ). The tensile and shear adhesive strength (≈15.88 and ≈12.76 kPa, respectively) of the PPCA hydrogel is about two‐ to threefold better than that of fibrin glue. In vitro studies show the PPCA hydrogel is highly effective against both gram‐positive and gram‐negative bacteria. In vivo results demonstrate that the PPCA hydrogel promotes diabetic wounds with accelerated healing, with notable inflammatory reduction and prominent angiogenesis regeneration. These results suggest the PPCA hydrogel provide a promising approach to promote diabetic wound healing.
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