涂层
肝素
支架
血栓
材料科学
裸金属支架
冠状动脉支架
铜
生物医学工程
化学
心脏病学
医学
纳米技术
再狭窄
内科学
药物洗脱支架
冶金
作者
Lehua Xu,Chunfeng He,Shusheng Yang,Yunxia Zhu,Peng Wang,Sheng‐Ming Wu,Fangfang Guo,Yilong Wang
标识
DOI:10.1016/j.colsurfb.2023.113530
摘要
Cardiovascular metal stents have shown potential in the treatment of coronary artery disease using percutaneous coronary intervention. However, thrombosis, endothelialization, and new atherosclerosis after stent implantation remain unsolved problems. Herein, a multifunctional coating material based on phase-transited lysozyme was developed to promote stent endothelialization and simultaneously reduce thrombus events by embedding moieties of heparin and co-immobilized copper ions for in-situ catalyzing nitric oxide (NO) generation. The lysozyme-based biomimetic coating is compatible with blood and enables facile loading and sustainable release of copper ions to produce NO with donors via catalytic reaction. The novel coating strategy displayed several bio-effects of anti-thrombosis; it synergistically promoted endothelial cell growth and inhibited smooth muscle cell growth. Thus, this systemic in vitro study will provide a foundation for developing multifunctional cardiovascular stents in clinical settings.
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