Bioinspired green degradable tannic acid-gelatin sponges for rapid hemostasis and wound repair

单宁酸 明胶 止血 伤口愈合 化学 明胶海绵 生物化学 医学 外科 有机化学 栓塞
作者
Dian Yu,Yujia Li,Fengyong Wang,Shengyu Li,Jingwei Wang,Yicheng Wang,Wenjun Xu,Xianghou Zhen,Jin Wu,Haorui Zha,Jintao Fang,Wei Zhang
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:233: 121358-121358 被引量:3
标识
DOI:10.1016/j.indcrop.2025.121358
摘要

Uncontrolled bleeding is associated with a higher risk of death, particularly during military conflicts, traffic accidents, and surgeries. In this study, an effective one-pot method for preparing a green biodegradable hemostatic sponge (TA@Gel) without any polymerization was developed by combining gelatin and tannic acid, two common natural materials. The hemostatic sponge was characterized using scanning electron microscope (SEM), thermogravimetry (TG), X-ray photoelectron spectroscopy (XRD), X-photoelectron spectroscopy (XPS), energy-dispersive X-ray spectroscopy (EDS), and ultraviolet radiation (UV), before their commercial prospects were demonstrated using three separate animal models. Interestingly, TA5@Gel hemostatic sponges exhibited better and faster hemostatic performance than current hemostat options in vitro and in vivo. Exploration of their hemostatic mechanisms showed that the TA5@Gel sponges significantly promoted blood coagulation by rapidly aggregating blood components, activating platelets and coagulation cascade. Besides being efficient in hemostasis, TA5@Gel could also be used for effective repair of cutaneous wounds owing to its biodegradability, excellent cytocompatibility, antioxidant activity and adhesion ability. Therefore, the TA5@Gel sponge has considerable potential for practical application in clinical settings. • Bioinspired green degradable hemostatic sponge was prepared (TA5@Gel). • The sponges showed favorable biodegradation ability, and antioxidant activity. • TA5@Gel promoted blood coagulation by rapidly aggregating blood components and coagulation cascade. • The sponges achieved high hemostasis and wound healing simultaneously.
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