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◆ International journal of biological macromolecules2026-08-13

High-performance polyvinyl alcohol/chitosan hydrogel enhanced with quaternized nanocellulose-ZnO nanocomposites for accelerated wound healing.

Lijun Wu, Jiacheng Li, Tian Liang, Jian Liu, Qingfa Zhang, Lu Wang

原始摘要(英文原文)· Original abstract
The development of hydrogel dressings that exhibit excellent moisturizing, antibacterial, and pro-healing properties is an urgent need in the field of wound healing. This study designs a multifunctional hydrogel dressing (QCPVA-ZnO) to address this challenge by incorporating a quaternized nanocellulose‑zinc oxide hybrid (QCNC-ZnO) into a polyvinyl alcohol/chitosan matrix. QCPVA-ZnO exhibited excellent moisture retention and breathability, with a water vapor transmission rate of 2440 g·m-2·day-1 and an oxygen permeability rate of 111 g·mm/m2·day·kPa, which could be attributed to the synergistic effect of its porous structure and hydrophilic cross-linked network. The experiment of the full-thickness skin defect model in mice showed that QCPVA-ZnO had significant healing promoting ability, with a wound healing rate of 97.6% by day 11. This can be attributed to QCNC-ZnO endowing QCPVA-ZnO with a good bactericidal rate of 99%, which thereby enabled the latter to effectively control infections, reduce inflammatory reactions, and further promote angiogenesis and epidermal regeneration. In addition, biosafety evaluations indicated that QCPVA-ZnO had a cell survival rate of over 90% and hemolysis of less than 2%, demonstrating good biocompatibility. This study improves the moisturizing, air permeability, antibacterial and healing promoting functions of the hydrogel, providing a new idea for the development of multi-functional wound dressings.
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High-performance polyvinyl alcohol/chitosan hydrogel enhanced with quaternized nanocellulose-ZnO nanocomposites for accelerated wound healing. — 科研速览 Science Skim