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Lentinan-Based Multifunctional Composite Hydrogel for Wound Healing
Niu Liu1, Wengui Xu1, Xinmiao He1
1Hubei Key Laboratory of Resource Utilization and Quality Control of Characteristic Crops, College of Life Science and Technology, Hubei Engineering University, Xiaogan 432000, China.
Abstract:
Conventional wound dressings suffer from unbalanced tissue adhesion, skin-mismatched mechanical properties, and insufficient long-term bioactivity. Herein, a dual physically cross-linked multifunctional tissue adhesive lentinan-polyvinyl alcohol (PVA)-tannic acid membrane (LPTM) was fabricated via a freeze-thaw-assisted immersion strategy. The optimized LPTM-3 hydrogel patch, with a stable network formed by PVA crystalline cross-linking and hydrogen bond cross-linking, achieved a balanced tensile strength of 16.1 MPa and an elongation at break of 149.3%, robust yet non-damaging porcine skin adhesion of 163.17 kPa, antibacterial activity, and good biocompatibility with a hemolysis rate below 2.24%. Notably, LPTM-3 promoted fibroblast migration and modulated inflammatory cytokine expression in vitro, and achieved 99.06% full-thickness wound closure in rats on day 14, matching a commercial dressing. This work provides a promising candidate for clinical wound repair and a facile design strategy for polysaccharide-based bioadhesive materials.