Facile fabrication of a novel, photodetachable salecan-based hydrogel dressing with self-healing, injectable, and antibacterial properties based on metal coordination

Ke Deng, Qin Huang, Xiaotong Yan, Yan Dai, Juan Zhao,Xia Xiong,Hailan Wang,Xianggui Chen,Pengfei Chen,Li Liu

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES(2024)

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Abstract
Achieving the controllable detachment of polysaccharide -based wound dressings is challenging. In this study, a novel, photodetachable salecan-based hydrogel dressing with injectable, self -healing, antibacterial, and wound healing properties was developed using a green and facile approach. A salecan hydrogel with a uniform porous structure and water content of 90.4 % was prepared by simply mixing salecan and an Fe3+-citric acid complexing solution in an acidic D-(+)-glucono-1,5-lactone environment. Metal coordinate interactions were formed between the released Fe3+ ions and carboxyl groups on the salecan polysaccharide, inducing homogeneous gelation. Benefiting from this dynamic and reversible crosslinking, the salecan hydrogel exhibited self -healing and injectable behavior, facilitating the formation of the desired shapes in situ. The exposure of Fe3+-citric acid to UV light (365 nm) resulted in the reduction of Fe3+ to Fe2+ through photochemical reactions, enabling phototriggered detachment. Moreover, the hydrogel exhibited excellent biocompatibility and satisfactory antibacterial efficacy against Escherichia coli and Staphylococcus aureus of 72.5 % and 85.3 %, respectively. The adhesive strength of the salecan hydrogel to porcine skin was 1.06 +/- 0.12 kPa. In vivo wound healing experiments further highlighted the advantages of the prepared hydrogel in alleviating the degree of wound inflammation and promoting tissue regeneration within 12 days.
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Key words
Salecan,Wound dressing,Photodetachable,Metal coordination,Dynamic reversibility
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