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用于同时封闭和愈合肠皮肤瘘的工程化再生和粘性水凝胶

Engineered Regenerative and Adhesive Hydrogel for Concurrent Sealing and Healing of Enterocutaneous Fistulas.

作者信息

Gangrade Ankit, Zehtabi Fatemeh, Ohe Joo-Young, Kouchehbaghi Negar Hosseinzadeh, Voskanian Leon, Haghniaz Reihaneh, Shepes Matan, Rashad Ahmad, Ermis Menekse, Khademhosseini Ali, Barros Natan Roberto de

机构信息

Terasaki Institute for Biomedical Innovation (TIBI), 1018 Westwood Blvd, Los Angeles, California 90095, United States.

Department of Oral & Maxillofacial Surgery, College of Dentistry, Kyung Hee University, Seoul 02447, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 7;16(31):40469-40482. doi: 10.1021/acsami.4c05154. Epub 2024 Jul 24.

Abstract

In addressing the intricate challenges of enterocutaneous fistula (ECF) treatment, such as internal bleeding, effluent leakage, inflammation, and infection, our research is dedicated to introducing a regenerative adhesive hydrogel that can seal and expedite the healing process. A double syringe setup was utilized, with dopagelatin and platelet-rich plasma (PRP) in one syringe and Laponite and sodium periodate in another. The hydrogel begins to cross-link immediately after passing through a mixing tip and exhibits tissue adhesive properties. Results demonstrated that PRP deposits within the pores of the cross-linked hydrogel and releases sustainably, enhancing its regenerative capabilities. The addition of PRP further improved the mechanical properties and slowed down the degradation of the hydrogel. Furthermore, the hydrogel demonstrated cytocompatibility, hemostatic properties, and time-dependent macrophage M1 to M2 phase transition, suggesting the anti-inflammatory response of the material. In an in vitro bench test simulating high-pressure fistula conditions, the hydrogel effectively occluded pressures up to 300 mmHg. In conclusion, this innovative hydrogel holds promise for ECF treatment and diverse fistula cases, marking a significant advancement in its therapeutic approaches.

摘要

在应对肠皮肤瘘(ECF)治疗的复杂挑战时,如内出血、流出物渗漏、炎症和感染,我们的研究致力于引入一种可密封并加速愈合过程的再生粘性水凝胶。采用了双注射器设置,一个注射器中装有多巴胺明胶和富血小板血浆(PRP),另一个注射器中装有锂皂石和高碘酸钠。水凝胶在通过混合尖端后立即开始交联,并表现出组织粘附特性。结果表明,PRP沉积在交联水凝胶的孔隙内并可持续释放,增强了其再生能力。PRP的添加进一步改善了水凝胶的机械性能并减缓了其降解。此外,水凝胶表现出细胞相容性、止血特性以及时间依赖性的巨噬细胞从M1期到M2期的转变,表明该材料具有抗炎反应。在模拟高压瘘管条件的体外台架试验中,该水凝胶能有效封堵高达300 mmHg的压力。总之,这种创新的水凝胶在ECF治疗及各种瘘管病例中具有应用前景,标志着其治疗方法取得了重大进展。

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