A hydrogen-bonded antibacterial curdlan-tannic acid hydrogel with an antioxidant and hemostatic function for wound healing

Manufacturing facile and low-cost wound dressings that simultaneously meet the needs of the entire repair process remains the major challenge of effective wound healing. Herein, a series of curdlan-tannic acid hybrid hydrogels were successfully fabricated through the annealing technique. Notedly, wh...

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Veröffentlicht in:Carbohydrate polymers 2022-06, Vol.285, p.119235-119235, Article 119235
Hauptverfasser: Zhou, Zongbao, Xiao, Jiangwei, Guan, Shuwen, Geng, Zhijie, Zhao, Ruifang, Gao, Botao
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Sprache:eng
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Zusammenfassung:Manufacturing facile and low-cost wound dressings that simultaneously meet the needs of the entire repair process remains the major challenge of effective wound healing. Herein, a series of curdlan-tannic acid hybrid hydrogels were successfully fabricated through the annealing technique. Notedly, when the mixing weigh ratio was 1:1, the hydrogel exhibited excellent physicochemical properties, including swellability, degradability, water retention, porosity, and rheology. Additionally, the hydrogel did not display significant cytotoxicity to fibroblasts and the hemolysis rate at 12 h was 3%. Interestingly, the hybrid hydrogel showed multifunctional properties, including remarkable antioxidant, antibacterial, and rapid hemostasis effects reduce blood loss by 0.35 g, that were achieved through the temperature-dependent release of tannic acid. Moreover, a full-thickness skin defect animal model was used to verify that the multifunctional hydrogel could accelerate wound healing in vivo. These results suggest that this hybrid hydrogel is a promising candidate for the clinical treatment of full-thickness wounds. [Display omitted] •A novel curdlan/tannic acid hydrogel was prepared by annealing technology.•Curdlan/tannic acid hydrogel performed adjustable physicochemical properties.•The developed hydrogel represented high safety features on mammalian cells.•The developed hydrogel showed an outstanding effect on wound healing progress.
ISSN:0144-8617
1879-1344
DOI:10.1016/j.carbpol.2022.119235