4.8 Article

An injectable, self-healing, 3D printable, double network co-enzymatically crosslinked hydrogel using marine poly- and oligo-saccharides for wound healing application

期刊

APPLIED MATERIALS TODAY
卷 29, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apmt.2022.101581

关键词

Marine polysaccharides; Injectable hydrogels; Glucose oxidize; Enzyme -mediated crosslinking; Wound healing

资金

  1. Innoviris Brussels, Belgium [2019 - BRIDGE - 4: RE4BRU]
  2. Polish National Science Centre [2016/23/D/ST8/01267]
  3. FNRS Gustave Boel-Sofina Fellowship

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In this study, dual network hydrogels with antioxidant and antibacterial activities were designed using marine poly- and oligosaccharides. The hydrogels exhibited favorable physicochemical properties and biodegradability, and showed antioxidant and antibacterial effects, promoting wound healing.
In this study, we designed dual network hydrogels with antioxidant and antibacterial activities using marine poly-and oligosaccharides with skin wound healing potential. The synergy between dual enzymatic co-crosslinking based on glucose oxidize (GOx)/horseradish peroxidase (HRP) and electrostatic interaction be-tween positively charged chitooligosaccharides (COS) and phenolated chitosan with negatively charged phenolated alginate formed a hydrogel. The Gel-COS hydrogels exhibited toughness, self-healing, moldability, injectability, and 3D printability. Investigation of the physicochemical properties of the hydrogels exhibited a swelling ratio (< 50%) and in vitro biodegradation after 9 days. Furthermore, the hydrogels exhibited antioxidant properties and antibacterial activity against E. coli and S. aureus. The hydrogels were not cytotoxic and enhanced the migration of 3D cell encapsulated 3T3-L1 fibroblasts, blood vessel formation, as well as in vivo wound healing in a rat model. The Gel-COS hydrogel can be considered a promising skin wound dressing material.

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