基于POA三元缩合反应的多功能抗菌水凝胶敷料的构建及体外性能研究
DOI:
作者:
作者单位:

1.南京医科大学附属上海一院临床医学院;2.青岛市城阳区人民医院;3.1南京医科大学附属上海一院临床医学院,2上海市第一人民医院

作者简介:

通讯作者:

中图分类号:

基金项目:

甘肃省科技计划项目(自然科学基金)(项目编号:24JRRF008),青岛市医疗卫生科研项目(项目编号:2024-WJKY193),酒泉市科技计划项目(项目编号:2025MA1020)


Construction and In Vitro Performance Evaluation of a Multifunctional Antibacterial Hydrogel Dressing Based on OPA Ternary Condensation Reaction
Author:
Affiliation:

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    目的:旨在开发一种兼具快速成型、强效粘附、可控自融、荧光示踪及广谱抗菌功能的多功能水凝胶敷料并对其体外性能进行验证。 方法:本研究通过将邻苯二甲醛(OPA)、四聚聚乙二醇巯基(tetra-PEG-SH)和四聚聚乙二醇氨基(tetra-PEG-NH2)聚合物前驱体溶液混合后的三元缩合反应,制备出一种超快原位形成的异吲哚交联水凝胶(OSN)敷料。通过调控OPA与前驱体的摩尔比(0.5:1:1, 1:1:1, 2:1:1),制备了三种水凝胶(OSN-1, OSN-2, OSN-3)。综合运用扫描电镜(SEM)、流变学测试、力学性能分析、紫外/荧光光谱、细胞实验(CCK-8、活/死染色、划痕实验)及抗菌评价(菌落计数、SEM、生物膜染色)等手段,对其成胶性能、微观结构、力学强度、自消融行为、生物相容性及抗菌活性等进行系统表征。 结果:OSN水凝胶可在10秒内快速原位成型,形成均匀的三维网络结构,且提高OPA比例可加速凝胶化并赋予水凝胶自消融特性,其中OSN-3在24小时内完全降解。该水凝胶展现出优异的组织粘附强度(最高约38.8 kPa)、良好的生物相容性,能促进L929成纤维细胞迁移、并对耐甲氧西林金黄色葡萄球菌(MRSA)和大肠杆菌(E. coli)均表现出强效抗菌活性,能有效破坏细菌生物膜。此外,水凝胶在降解过程中伴随异吲哚环断裂导致的蓝色荧光减弱与消失,实现了降解过程的荧光示踪特性。 结论: 本研究成功构建了一种基于OPA三元缩合反应的多功能自消融抗菌OSN水凝胶敷料。该敷料集可注射、快速成型、强效粘附、可控降解、荧光示踪与广谱抗菌性能于一体,且生物相容性良好,为开发无抗生素型智能伤口管理策略提供了一种新颖且有潜力的解决方案。

    Abstract:

    Objective: In response to the urgent need for ideal dressings for drug-resistant bacterial-infected wounds, this study aimed to develop a multifunctional hydrogel dressing integrating rapid gelation, strong adhesion, controllable self-erosion, fluorescence tracing, and broad-spectrum antibacterial properties. Methods:An ultra-fast in situ forming isoindole?crosslinked hydrogel (OSN) dressing was prepared via a ternary condensation reaction by mixing precursor solutions of o-phthalaldehyde (OPA), tetra-arm poly(ethylene glycol) thiol (tetra-PEG-SH), and tetra-arm poly(ethylene glycol) amine (tetra-PEG-NH?). Three hydrogels (OSN-1, OSN-2, OSN-3) were fabricated by adjusting the molar ratio of OPA to precursors (0.5:1:1, 1:1:1, 2:1:1). The gelation performance, microstructure, mechanical strength, self?erosion behavior, biocompatibility, and antibacterial activity were systematically characterized using scanning electron microscopy (SEM), rheological tests, mechanical analysis, UV/fluorescence spectroscopy, cellular assays (CCK-8, live/dead staining, scratch assay), and antibacterial evaluations (colony counting, SEM, biofilm staining). Results:The OSN hydrogel formed rapidly in situ within 10 seconds, yielding a uniform three?dimensional network. Increasing the OPA ratio accelerated gelation and conferred a self-eroding property, with OSN-3 degrading completely within 24 hours. The hydrogel exhibited excellent tissue adhesion strength (up to 38.8 kPa), favorable biocompatibility, promotion of L929 fibroblast migration, and potent antibacterial activity against both methicillin-resistant Staphylococcus aureus (MRSA) and Escherichia coli (E. coli), effectively disrupting bacterial biofilms. Moreover, degradation of the hydrogel was accompanied by the attenuation and eventual disappearance of blue fluorescence due to cleavage of the isoindole rings, enabling real-time fluorescence tracking of the degradation process. Conclusion: This study successfully constructed a multifunctional self-eroding antibacterial OSN hydrogel dressing based on the OPA ternary condensation reaction. The dressing combines injectability, rapid gelation, strong adhesion, controllable degradation, fluorescence tracing, and broad-spectrum antibacterial performance with good biocompatibility, offering a novel and promising solution for developing antibiotic-free intelligent wound management strategies.

    参考文献
    相似文献
    引证文献
引用本文
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2026-03-07
  • 最后修改日期:2026-05-13
  • 录用日期:2026-07-17
  • 在线发布日期:
  • 出版日期:
关闭