生物相容性
抗血栓
壳聚糖
血栓形成
材料科学
超亲水性
溶血
止血剂
生物医学工程
表面改性
化学
血栓形成
止血
复合材料
接触角
医学
外科
有机化学
冶金
心脏病学
免疫学
物理化学
作者
Dong Uk Lee,Mukhammad Kayumov,Jeung Hun Park,Se Kye Park,Yeongkwon Kang,Yejin Ahn,Woojin Kim,Seung Hwa Yoo,Jun‐Kyu Park,Bong‐Gi Kim,Yong Suk Oh,In Seok Jeong,Dong Yun Choi
标识
DOI:10.1016/j.bioactmat.2023.12.009
摘要
Blood-contacting devices must be designed to minimize the risk of bloodstream-associated infections, thrombosis, and intimal lesions caused by surface friction. However, achieving effective prevention of both bloodstream-associated infections and thrombosis poses a challenge due to the conflicting nature of antibacterial and antithrombotic activities, specifically regarding electrostatic interactions. This study introduced a novel biocompatible hydrogel of sodium alginate and zwitterionic carboxymethyl chitosan (ZW@CMC) with antibacterial and antithrombotic activities for use in catheters. The ZW@CMC hydrogel demonstrates a superhydrophilic surface and good hygroscopic properties, which facilitate the formation of a stable hydration layer with low friction. The zwitterionic-functionalized CMC incorporates an additional negative sulfone group and increased negative charge density in the carboxyl group. This augmentation enhances electrostatic repulsion and facilitates the formation of hydration layer. This leads to exceptional prevention of blood clotting factor adhesion and inhibition of biofilm formation. Subsequently, the ZW@CMC hydrogel exhibited biocompatibility with tests of
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