沈成, 郭明, 罗梓豪. 纤维素基各向异性药物缓释水凝胶敷料的合成及其药效性能研究J. 药学学报, 2025, 60(8): 2604-2614. DOI: 10.16438/j.0513-4870.2025-0380
引用本文: 沈成, 郭明, 罗梓豪. 纤维素基各向异性药物缓释水凝胶敷料的合成及其药效性能研究J. 药学学报, 2025, 60(8): 2604-2614. DOI: 10.16438/j.0513-4870.2025-0380
SHEN Cheng, GUO Ming, LUO Zi-hao. Synthesis and pharmacodynamic properties of cellulose-based anisotropic drug sustained release hydrogel dressingJ. Acta Pharmaceutica Sinica, 2025, 60(8): 2604-2614. DOI: 10.16438/j.0513-4870.2025-0380
Citation: SHEN Cheng, GUO Ming, LUO Zi-hao. Synthesis and pharmacodynamic properties of cellulose-based anisotropic drug sustained release hydrogel dressingJ. Acta Pharmaceutica Sinica, 2025, 60(8): 2604-2614. DOI: 10.16438/j.0513-4870.2025-0380

纤维素基各向异性药物缓释水凝胶敷料的合成及其药效性能研究

Synthesis and pharmacodynamic properties of cellulose-based anisotropic drug sustained release hydrogel dressing

  • 摘要: 新型敷料是药学、材料学和医学等多学科交叉领域的热点。制备具有良好生物相容性、药效活性和力学性能的敷料是新发展动态。本工作利用自赋生物相容性的木基材料作为基材, 冰晶诱导相分离法去除坚韧木质素成分, 形成三维微纳米网络结构的纤维素-半纤维素基体, 分子注入法内嵌天然药效分子单宁酸和辅助分子聚乙烯醇, 通过多重动态氢键作用制备出兼具力学强度与生物活性的新型敷料(de-lignin gel with PVA added, PLG)。多种技术手段表征PLG的结构, 并考察PLG的药效功能。结果表明, 设计的PLG合成路线合理, 成功获得的PLG具有良好的各向异性力学强度和抗疲劳特性(能量耗散22.8 kPa·mm-1), 并具有较低的线性膨胀率、出色的黏附能力与抗溶胀特性。抗菌实验显示, PLG对金黄色葡萄球菌和大肠杆菌的抑菌率分别为74.3%和77.6%, 表明其具有广谱接触抑菌效应。PLG自由基清除率高达95.88%, 结合小鼠创面愈合实验, 证实了其通过双重抗氧化-抗菌机制有效降低炎症反应的能力。敷料的多层次结构设计和跨尺度性能探究, 为开发兼具力学适配性、生物活性和多功效的新型敷料提供了有意义的参考。动物实验经浙江农林大学实验动物伦理委员会批准, 且实验均严格按照相关指导原则和规定进行(No. ZAFUAC202514)。

     

    Abstract: New dressings represent a hot topic at the intersection of pharmacy, materials science, and medicine. The development of dressings with excellent biocompatibility, pharmacological activity, and mechanical properties is a new trend in this field. This study utilizes wood-based materials with inherent biocompatibility as the substrate. The ice crystal-induced phase separation method is employed to remove the tough lignin components, resulting in a three-dimensional micro-nano network structure of cellulose-hemicellulose matrix. Molecular injection is used to embed natural bioactive molecules tannin and auxiliary molecules polyvinyl alcohol in the matrix. Through multiple dynamic hydrogen bonding interactions, a novel dressing (de-lignin gel with PVA added, PLG) with both mechanical strength and biological activity is prepared. Various technical methods are employed to characterize the structure of PLG and investigate its bioactive functions. The results indicate that the designed PLG synthesis route is reasonable. The successfully obtained PLG exhibits excellent anisotropic mechanical strength and fatigue resistance (energy dissipation of 22.8 kPa·mm-1). It also features a low linear expansion rate, outstanding adhesion capability, and anti-swelling properties. Antimicrobial experiments show that PLG exhibits antibacterial rates of 74.3% and 77.6% against Staphylococcus aureus and Escherichia coli, respectively. This indicates its broad-spectrum contact antibacterial effect. The radical scavenging rate of PLG reached 95.88%. Combined with mouse wound healing experiments, it was confirmed that PLG effectively reduces inflammatory responses through a dual antioxidant-antibacterial mechanism. The multi-layered structural design and cross-scale performance exploration of the dressing provide meaningful references for developing novel dressings that integrate mechanical adaptability, bioactivity, and multi-functional properties. The animal experiments were approved by the Laboratory Animal Ethics Committee of Zhejiang A & F University (No. ZAFUAC202514). All experiments were carried out strictly in accordance with relevant guiding principles and regulations.

     

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