Liu Jing, Wang Pei, Chu Chih-Chang, Xi Tingfei
Center for Biomedical Materials and Tissue Engineering, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing 100871, China.
J Mater Chem B. 2017 Mar 7;5(9):1787-1802. doi: 10.1039/c6tb03147a. Epub 2017 Feb 15.
A novel family of biodegradable pseudo-protein biomaterials, arginine (Arg)-based poly(ester urea urethane) (Arg-PEUU), were synthesized and applied as a better protective and bio-functional coating for bio-absorbable magnesium alloy MgZnYNd as a stent model. The Arg-PEUU coatings were stronger than poly(glycolide-co-lactide) (PLGA) coating with 11.9-103.4% higher critical lateral force. Electrochemical tests and in vitro immersion results demonstrated that the Arg-PEUU-coated MgZnYNd alloys have a significantly better corrosion resistance. The Arg-PEUU coating also showed reduced platelet adhesion and hemolysis rate in acute blood contact testing. Immunofluorescent actin and vinculin stainings showed that the Arg-PEUU coating had a far better cell adhesion of human umbilical vein endothelial cells (HUVEC), and also showed no cytotoxicity toward both HUVEC and human aortic smooth muscle cells (HASMC). The Arg-PEUU coating stimulated HUVEC to release significantly higher amounts of nitric oxide (NO) than the controls, suggesting the Arg-PEUU coating has the ability to retard thrombus and restenosis. The superb corrosion retardation, hemocompatibility and cytocompatibility of the Arg-PEUU coating as well as its induced indigenous NO production biofunctionality indicate that the newly developed Arg-PEUU biodegradable copolymer family may have the potential to offer a far greater protection of magnesium-based implantable cardiovascular stents.
合成了一种新型的可生物降解的伪蛋白质生物材料——基于精氨酸(Arg)的聚(酯脲聚氨酯)(Arg-PEUU),并将其作为一种更好的保护和生物功能涂层应用于作为支架模型的可生物吸收镁合金MgZnYNd。Arg-PEUU涂层比聚(乙交酯-共-丙交酯)(PLGA)涂层更坚固,临界侧向力高11.9-103.4%。电化学测试和体外浸泡结果表明,涂有Arg-PEUU的MgZnYNd合金具有明显更好的耐腐蚀性。在急性血液接触测试中,Arg-PEUU涂层还显示出血小板粘附和溶血率降低。免疫荧光肌动蛋白和纽蛋白染色表明,Arg-PEUU涂层对人脐静脉内皮细胞(HUVEC)具有更好的细胞粘附性,并且对HUVEC和人主动脉平滑肌细胞(HASMC)均无细胞毒性。与对照组相比,Arg-PEUU涂层刺激HUVEC释放的一氧化氮(NO)量明显更高,这表明Arg-PEUU涂层具有延缓血栓形成和再狭窄的能力。Arg-PEUU涂层出色的缓蚀性、血液相容性和细胞相容性以及其诱导内源性NO产生的生物功能表明,新开发的Arg-PEUU可生物降解共聚物家族可能有潜力为镁基植入式心血管支架提供更大的保护。