炎症
体内
炎症性肠病
离体
结肠炎
脂多糖
医学
化学
药理学
免疫学
体外
生物化学
病理
疾病
生物
生物技术
作者
Liwen Hong,Gaoxian Chen,Zhengwei Cai,Hua Liu,Chen Zhang,Fei Wang,Zeyu Xiao,Jie Zhong,Lei Wang,Zhengting Wang,Wenguo Cui
出处
期刊:Advanced Science
[Wiley]
日期:2022-05-07
卷期号:9 (20): e2200281-e2200281
被引量:72
标识
DOI:10.1002/advs.202200281
摘要
Emerging evidence indicates that a vicious cycle between inflammation and microthrombosis catalyzes the pathogenesis of inflammatory bowel disease (IBD). Over-stimulated inflammation triggers a coagulation cascade and leads to microthrombosis, which further complicates the injury through tissue hypoxia and ischemia. Herein, an injectable protein hydrogel with anti-thrombosis and anti-inflammation competency is developed to impede this cycle, cross-linked by silver ion mediated metal-ligand coordination and electronic interaction with sulfhydryl functionalized bovine serum albumin and heparin, respectively. The ex vivo experiments show that the hydrogel, HEP-Ag-BSA, exhibits excellent self-healing ability, injectability, biocompatibility, and sustained drug release. HEP-Ag-BSA also demonstrates anti-coagulation and anti-inflammation abilities via coagulation analysis and lipopolysaccharide stimulation assay. The in vivo imaging confirms the longer retention time of HEP-Ag-BSA at inflammatory sites than in normal mucosa owing to electrostatic interactions. The in vivo study applying a mouse model with colitis also reveals that HEP-Ag-BSA can robustly inhibit inflammatory microthrombosis with reduced bleeding risk. This versatile protein hydrogel platform can definitively hinder the "inflammation and microthrombosis" cycle, providing a novel integrated approach against IBD.
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