Zhou Ziyi, Zhang Dengjun, Ning Xuchao, Jin Linbo, Lin Yijing, Liang Chen, Wen Xin, Huang Tianhao, Zhou Junli, Zhang Yiming
Department of Plastic and Cosmetic Surgery, Xinqiao Hospital, Army Medical University, Chongqing, 400037, China.
Department of Plastic Surgery, Cheeloo College of Medicine, Qilu Hospital of Shandong University (Qingdao), Qingdao, 266035, China.
J Nanobiotechnology. 2025 Jan 28;23(1):49. doi: 10.1186/s12951-025-03148-w.
Hydrogel drug-delivery system that can effectively load antibacterial drugs, realize the in-situ drug release in the microenvironment of wound infection to promote wound healing. In this study, a multifunctional hydrogel drug delivery system (HA@TA-Okra) was constructed through the integration of hyaluronic acid methacrylate (HAMA) matrix with tannic acid (TA) and okra extract. The composition and structural characteristics of HA@TA-Okra system and its unique advantages in the treatment of diverse wounds were systematically evaluated. TA, due to its unique chemical structure, is able to anchor within the HAMA network through interactions and cross-linking, conferring exceptional mechanical strength and stability to the hydrogel. Both TA and okra extract possess antioxidant and antibacterial properties, and when they two acts synergistically they can effectively scavenge free radicals, enhance antibacterial action, diminishing the risk of wound infection. In vitro experiments revealed that HA@TA-Okra system has superior properties, such as rapid gel response, remarkable swelling regulation, and potent antioxidant ability. Furthermore, the HA@TA-Okra system significantly outperformed conventional dressings in terms of hemostatic performance in a rat hemorrhage model. We further evaluated the repair role of HA@TA-Okra system in vivo by establishing an animal model of full-thickness skin defects and a model of infected total skin defects. The results confirmed its positive effects in fighting bacterial infection, reducing inflammation and promoting wound healing. In summary, the HA@TA-Okra system exhibits comprehensive properties such as antibacterial, antioxidant and hemostatic properties, which has a potential application in the field of tissue repair medicine.
水凝胶药物递送系统能够有效负载抗菌药物,在伤口感染的微环境中实现原位药物释放,以促进伤口愈合。在本研究中,通过将甲基丙烯酸透明质酸(HAMA)基质与单宁酸(TA)和秋葵提取物整合,构建了一种多功能水凝胶药物递送系统(HA@TA-秋葵)。系统评估了HA@TA-秋葵系统的组成、结构特征及其在治疗各种伤口方面的独特优势。TA由于其独特的化学结构,能够通过相互作用和交联锚定在HAMA网络中,赋予水凝胶优异的机械强度和稳定性。TA和秋葵提取物都具有抗氧化和抗菌性能,二者协同作用时能够有效清除自由基,增强抗菌作用,降低伤口感染风险。体外实验表明,HA@TA-秋葵系统具有优异的性能,如快速凝胶响应、显著的溶胀调节和强大的抗氧化能力。此外,在大鼠出血模型中,HA@TA-秋葵系统在止血性能方面明显优于传统敷料。我们通过建立全层皮肤缺损动物模型和感染性全层皮肤缺损模型,进一步评估了HA@TA-秋葵系统在体内的修复作用。结果证实了其在对抗细菌感染、减轻炎症和促进伤口愈合方面的积极作用。综上所述,HA@TA-秋葵系统具有抗菌、抗氧化和止血等综合性能,在组织修复医学领域具有潜在的应用价值。