自愈水凝胶
羧甲基纤维素
伤口愈合
化学
抗菌活性
肉芽组织
材料科学
高分子化学
有机化学
遗传学
生物
免疫学
细菌
钠
作者
Xiaoxue Wang,Jingjie Qi,Wenjie Zhang,Yajie Pu,Rong Yang,Penghui Wang,Shuai Liu,Xiaoyan Tan,Bo Chi
标识
DOI:10.1016/j.ijbiomac.2021.07.115
摘要
Developing a wound dressing for the treatment of large and irregular-shaped wounds remains a great challenge. Herein we developed novel printable bionic hydrogels with antibacterial and antioxidant properties which could effectively overcome the challenge by inhibiting inflammation and accelerating wound healing. The CMC/PL (CP) hydrogels were customized with glycidyl methacrylate (GMA) modified carboxymethyl cellulose (CMC) and ε-polylysine (ε-PL) via ultraviolet (UV) light polymerization using a 3D printer. Except for the high compression modulus (238 kPa), stable rheological properties, and effective degradability, these CP hydrogels also had an excellent inhibitory effect (95%) on both Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus). Remarkably, CP hydrogels could remove the excessive reactive oxygen species (ROS) and protect the fibroblasts from damage. Compared with the commercial dressing (Tegaderm ™ film), CP hydrogels showed a better ability to increase the expression of VEGF and CD31, accelerate granulation tissue regeneration, and promote wound healing. This work provides a new strategy to fabricate on-demand multi-functional hydrogels in the field of skin tissue engineering.
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