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Nanostructured Titanium for Improved Endothelial Biocompatibility and Reduced Platelet Adhesion in Stent Applications

机译:纳米结构钛,用于改进内皮生物相容性,降低支架应用中的血小板粘附性

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Although coronary stents have improved the early and long-term consequences of arterial lesions, the prevention of restenosis and late stent thrombosis is key to prevent a new obstruction of the vessel. Here we aimed at improving the tissue response to stents through surface modification. For that purpose, we used two different approaches, the use of nanostructuration by electrochemical anodization and the addition of a quercitrin (QR) coating to the Ti surface. Four surfaces (Ti, NN, TiQR and NNQR) were characterized by atomic force microscopy, scanning electronic microscopy and contact angle analysis and QR content was evaluated by fluorescent staining. Cell adhesion, cytotoxicity, metabolic activity and nitric oxide (NO) production was evaluated on primary human umbilical cord endothelial cells (HUVECs). Platelet adhesion, hemolysis rate and Staphylococcus epidermidis CECT 4184 adhesion at 30 min were analyzed. Nanostructuration induced an increase on surface roughness, and QR coating decreased the contact angle. All surfaces were biocompatible, with no hemolysis rate and lower platelet adhesion was found in NN surfaces. Finally, S. epidermidis adhesion was lower on TiQR surfaces compared to Ti. In conclusion, our results suggest that NN structuration could improve biocompatibility of bare metal stents on endothelial cells and reduce platelet adhesion. Moreover, QR coating could reduce bacterial adhesion.
机译:虽然冠状动脉长期改善了动脉病变的早期和长期后果,但预防再狭窄和晚期支架血栓形成是预防船舶新阻塞的关键。在这里,我们旨在通过表面改性改善对支架的组织反应。为此目的,我们使用了两种不同的方法,通过电化学阳极氧化使用纳米结构,并向Ti表面添加Quercitrin(QR)涂层。通过原子力显微镜表征四个表面(Ti,NN,TIQR和NNQR),通过荧光染色评估扫描电子显微镜和接触角分析和QR含量。对初级人脐带内皮细胞(HUVECs)评估细胞粘附,细胞毒性,代谢活性和一氧化氮(NO)产生。分析了血小板粘附,溶血率和葡萄球菌在30分钟内粘附4184粘附。纳米结构诱导表面粗糙度的增加,QR涂层降低了接触角。所有表面都是生物相容性的,在NN表面中发现没有溶血率和较低的血小板粘附。最后,与Ti相比,在TIQR表面上较低。与Ti相比,S.表皮粘附性较低。总之,我们的结果表明,NN结构可以改善内皮细胞上裸金属支架的生物相容性,降低血小板粘附。此外,QR涂层可降低细菌粘附。

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