Ionic Liquid‐Reinforced Multifunctional Hydrogel for the Treatment of Enterocutaneous Fistula

材料科学 明胶 生物医学工程 自愈水凝胶 抗菌剂 软组织 肠皮瘘 瘘管 外科 微生物学 化学 医学 生物化学 生物 高分子化学
作者
Jinjoo Kim,Hyeongseop Keum,Hassan Albadawi,Ismail Altinbasak,Furkan Yavuz,Erin H. Graf,Nitin Mishra,Rahmi Öklü
出处
期刊:Advanced Materials [Wiley]
卷期号:37 (29): e2503179-e2503179 被引量:3
标识
DOI:10.1002/adma.202503179
摘要

Abstract Enterocutaneous fistulas (ECFs) profoundly impact patients’ quality of life, contributing to high morbidity rates and increased mortality due to ineffective treatment options. To address this challenge, ECFGel, a multifunctional, tissue adhesive injectable hydrogel, designed to occlude, sterilize, and promote healing of ECF tracts, is developed. ECFGel is formulated using gelatin and oxidized dextran (O‐Dex) as base components, which form chemical crosslinks within the hydrogel and with surrounding biological tissues, ensuring tissue adhesiveness. A choline and geranate‐based ionic liquid (IL) is incorporated to provide dual functionality, potent antimicrobial activity, and mechanical enhancement. By optimizing IL concentration, ECFGel achieves rapid gelation, enhanced mechanical strength, and improved elastic recoverability. Additionally, iohexol (IOH) is added for radiopacity, enabling real‐time imaging and further strengthening the hydrogel's mechanical properties. ECFGel demonstrates antiswelling properties, biodegradability, and effective tract occlusion in porcine soft tissues. It shows strong antimicrobial activity against highly resistant, patient‐derived pathogens isolated from clinical ECF cases. In a porcine perianal fistula model, ECFGel enables rapid occlusion and complete healing, promoting tissue maturation, reducing bacterial load, and increasing markers of cell proliferation and vascularization compared to untreated controls. These promising results highlight ECFGel's potential as a new therapeutic option for treating infected ECFs.
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