Key Laboratory of Green Chemistry and Technology (Ministry of Education), College of Chemistry, Sichuan University, Chengdu, 610064, P. R. China.
Small. 2024 Nov;20(48):e2403679. doi: 10.1002/smll.202403679. Epub 2024 Sep 6.
Diabetic wounds tend to develop into nonhealing wounds associated with the complex inflammatory microenvironment of uncontrollable bacterial infection, reactive oxygen species (ROS) accumulation, and chronic hypoxia. Damaged blood vessels hinder metabolic circulation, aggravating hypoxia, and ROS accumulation and further exacerbating the diabetic wound microenvironment. However, existing treatments with a single functionality have difficulty healing complicated diabetic wounds. Therefore, developing an integrative strategy to improve the hostility of the diabetic wound microenvironment is urgently needed. Herein, multifunctional genipin (GP)-crosslinked chitosan (CS)-based hydrogels decorated with the biomimetic metal-organic framework (MOF)-nanozymes and the natural antibacterial agent chlorogenic acid (CGA), which is named MOF/CGA@GP-CS (MCGC), are prepared. With catalase (CAT)-like activity, these dual-metal MOF-nanozymes are promising bioreactors for simultaneously alleviating ROS accumulation and hypoxia by converting elevated endogenous HO into dissolved oxygen in diabetic wounds. In addition, the other component of natural polyphenolic CGA acts as a mild antibacterial agent, efficiently inhibiting wound infection and avoiding antibiotic resistance. Impressively, the MCGC hydrogels accelerate infected diabetic wound healing by eliminating oxidative stress, increasing oxygenation, and reversing bacterial infection in vivo. In this work, an effective strategy based on multifunctional hydrogel wound dressings is successfully developed and applied in diabetic wound management.
糖尿病伤口容易发展成难以愈合的伤口,这与不可控的细菌感染、活性氧(ROS)积累和慢性缺氧的复杂炎症微环境有关。受损的血管阻碍了代谢循环,加重了缺氧和 ROS 积累,进一步恶化了糖尿病伤口的微环境。然而,现有的单一功能治疗方法难以治愈复杂的糖尿病伤口。因此,迫切需要开发一种综合策略来改善糖尿病伤口的微环境的恶劣程度。在此,制备了一种多功能京尼平(GP)交联壳聚糖(CS)基水凝胶,该水凝胶用仿生金属有机骨架(MOF)-纳米酶和天然抗菌剂绿原酸(CGA)进行了修饰,命名为 MOF/CGA@GP-CS(MCGC)。这些双金属 MOF 纳米酶具有过氧化氢酶(CAT)样活性,有望成为生物反应器,通过将升高的内源性 HO 转化为糖尿病伤口中的溶解氧,同时缓解 ROS 积累和缺氧。此外,天然多酚 CGA 的另一个成分作为一种温和的抗菌剂,能够有效抑制伤口感染,避免抗生素耐药性。令人印象深刻的是,MCGC 水凝胶通过消除氧化应激、增加氧合作用和逆转体内细菌感染,加速了感染性糖尿病伤口的愈合。在这项工作中,成功开发并应用了一种基于多功能水凝胶伤口敷料的有效策略来管理糖尿病伤口。