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A Chitosan-Dextran Hydrogel Based on a Site-Isolated Grafting Strategy for Long-Term Wet Tissue Adhesion and Wound
Shuai Wu1, Lihang Jiang1, Wenjing Liu1
1College of Materials Science and Engineering, State Key Laboratory of Advanced Separation Membrane Materials, Zhejiang Key Laboratory of Plastic Modification and Processing Technology, Zhejiang University of Technology, Hangzhou, Zhejiang, P. R. China.
Abstract:
To address the poor wet adhesion and limited functionality of existing hydrogel dressings, this study develops a PCMC-DODS dual-network hydrogel based on chitosan and dextran via a mussel-inspired, site-isolated grafting strategy. Protocatechuic aldehyde and dopamine are separately conjugated onto two distinct polysaccharide backbones; the steric hindrance of the chains suppresses polyphenol self-polymerization, while Schiff base and hydrogen bonds form a dynamic crosslinking network. The hydrogel gels within 30 s, is injectable and self-healing, and achieves a lap shear strength of 50.2 kPa on porcine skin after 24 h, significantly outperforming a commercial fibrin sealant. It exhibits ∼90% DPPH radical scavenging, clear antibacterial inhibition zones against E. coli and S. aureus, and good biocompatibility. In a rat tail amputation model, it reduces blood loss by ≈76.9% versus control and matches the hemostatic efficacy of the clinical fibrin sealant. In a full-thickness skin defect model, it scavenges reactive oxygen species, alleviates inflammation, and accelerates healing, leaving only 9.8% residual wound area by day 9. This work provides a practical spatial-isolation strategy for robust wet adhesion in natural bio-based hydrogels, highlighting the clinical potential of PCMC-DODS as a multifunctional tissue adhesive and wound dressing.
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