材料科学
自愈水凝胶
织物
伤口敷料
生物医学工程
明胶
纳米技术
复合材料
化学
医学
高分子化学
生物化学
作者
Sihan Jiang,Jiajia Deng,Yuhui Jin,Bo Qian,Wanqi Lv,Qiangqiang Zhou,Enhua Mei,Rasoul Esmaeely Neisiany,Yuehua Liu,Zhengwei You,Jie Pan
标识
DOI:10.1016/j.bioactmat.2022.08.014
摘要
Hydrogels are emerging as the most promising dressings due to their excellent biocompatibility, extracellular matrix mimicking structure, and drug loading ability. However, existing hydrogel dressings exhibit limited breathability, poor environmental adaptability, potential drug resistance, and limited drug options, which extremely restrict their therapeutic effect and working scenarios. Here, the current research introduces the first paradigm of hydrogel textile dressings based on novel gelatin glycerin hydrogel (glyhydrogel) fibers fabricated by the Hofmeister effect based wet spinning. Benefiting from the unique knitted structure, the textile dressing features excellent breathability (1800 times that of the commercially available 3 M dressing) and stretchability (535.51 ± 38.66%). Furthermore, the glyhydrogel textile dressing can also withstand the extreme temperature of -80 °C, showing the potential for application in subzero environments. Moreover, the introduction of glycerin endows the textile dressing with remarkable antibacterial property and expands the selection of loaded drugs (e.g., clindamycin). The prepared glyhydrogel textile dressing shows an excellent infected wound healing effect with a complete rat skin closure within 14 days. All these functions have not been achievable by traditional hydrogel dressings and provide a new approach for the development of hydrogel dressings.
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