MXene-enhanced ePatch with antibacterial activity for wound healing

被引:4
作者
Feng, Jing [1 ,2 ]
Liu, Rui [1 ,2 ]
Yuan, Xuefeng [1 ,2 ]
Cao, Changkui [1 ,2 ]
Xie, Ji [1 ,2 ]
Sun, Zhaorui [1 ,2 ]
Ma, Sai [3 ,4 ]
Nie, Shinan [1 ,2 ]
机构
[1] Nanjing Univ, Jinling Hosp, Med Sch, Dept Emergency Med, Nanjing, Peoples R China
[2] Southern Med Univ, Sch Clin Med 1, Dept Emergency Med, Nanjing, Peoples R China
[3] Nanjing Univ, Jinling Hosp, Dept Cardiol, Med Sch, Nanjing, Peoples R China
[4] Southern Med Univ, Sch Clin Med 1, Dept Cardiol, Nanjing, Peoples R China
来源
FRONTIERS IN CHEMISTRY | 2023年 / 11卷
基金
中国国家自然科学基金;
关键词
MXene; ePatch; wound healing; hydrogel; enhanced; NANOCOMPOSITE;
D O I
10.3389/fchem.2023.1280040
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Prudent wound-healing strategies hold great potential in expediting tissue renovation and regeneration. Despite the widespread adoption of hydrogels as preferred carriers for wound healing patches, achieving optimal mechanical compatibility and superior wound performance remains a formidable challenge. Consequently, meticulous attention must be given to the formulation of hydrogel structure and materials design to overcome these hurdles. In response, we have developed an ePatch composed of polyacrylamide (PAAM) as the primary hydrogel structure, augmented with MXene, silver nanowires (AgNWs), and resveratrol to act as sustained-release agents, structural enhancers, and antibacterial agents, respectively. Notably, the ePatch exhibited exceptional wound-fitting capabilities and impressive mechanical stretchability (with a relative standard deviation [RSD] of only 1.36% after 55 stretches) and Young's modulus. In contrast to the commercial 3M Tegaderm, the ePatch demonstrated superior wound healing properties, with the inclusion of MXene into PAAM/AgNWs playing a pivotal role in expanding the ePatch's potential use across various interconnected fields.
引用
收藏
页数:9
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