自愈水凝胶
化学
氧化应激
抗菌活性
抗氧化剂
氨基糖苷
多酚
伤口愈合
纳米技术
席夫碱
组合化学
控制释放
纳米颗粒
伤口敷料
生物相容性材料
组织工程
药物输送
纳米复合材料
活性氧
氧化损伤
氧化磷酸化
生物化学
生物活性
生物物理学
生物材料
作者
Zhan Li,Jianhua Zhang,Hengjie Zhang,Tianyou Wang,Yuxian Song,Pengyu Liu,Yiwen Li,Hong Liu,Wancai Guo,Zhipeng Gu
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-10-20
卷期号:26 (11): 7802-7811
标识
DOI:10.1021/acs.biomac.5c01289
摘要
Multifunctional hydrogels with integrated antioxidant and antibacterial activities are vital for modulating the wound microenvironment, mitigating oxidative stress, and preventing infection. However, efficient construction of such hydrogels with programmable responsiveness and structural integrity that can be tailored to therapeutic demands remains challenging. Herein, we developed a modular, functionally programmable hydrogel platform constructed via an in situ Schiff base reaction between aldehyde-functionalized polyphenolic nanoparticles and aminoglycoside antibiotics. The resulting nanocomposite hydrogels exhibited excellent mechanical properties, pH-responsiveness, biodegradability, and biocompatibility, attributed to the synergistic interactions between the functional nanoscale building blocks and cross-linkers. In vitro and in vivo evaluations confirmed the hydrogel's potent antibacterial and antioxidant capabilities, enabling effective infection control and attenuation of oxidative stress in wound environments. This strategy offers a versatile route for engineering adaptive, multifunctional hydrogels for advanced wound management.
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