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用于与血液接触植入物的银纳米复合材料生物材料。

A silver nanocomposite biomaterial for blood-contacting implants.

机构信息

UCL Centre for Nanotechnology and Regenerative Medicine, Division of Surgery and Interventional Science, University College London, London, United Kingdom.

出版信息

J Biomed Mater Res A. 2012 Sep;100(9):2348-57. doi: 10.1002/jbm.a.34177. Epub 2012 Apr 24.

Abstract

Cardiovascular implants must resist infection and thrombosis. A nanocomposite polymeric material [polyhedral-oligomeric-silsesquioxane-poly(carbonate-urea)urethane; POSS-PCU] demonstrates ideal properties for cardiovascular applications. Silver nanoparticles or nanosilver (NS) are recognized for efficient antibacterial properties. This study aims to determine the influence of NS integrated POSS-PCU on thrombogenicity. Silver nitrate was reduced with dimethylformamide and stabilized by the inclusion of fumed silica nanoparticles to prevent aggregation of NS and were incorporated into POSS-PCU to form a range of POSS-PCU-NS concentrations (by weight); 0.20% (NS16), 0.40% (NS32), 0.75% (NS64), and 1.50% (NS128). Surface wettability was determined with sessile-drop water contact angles. Platelets were introduced onto test samples and Alamar Blue (AB), mitochondrial-activity assay, quantified the degree of platelet adhesion whilst platelet-factor-4 (PF4) ELISA quantified the degree of platelet activation. Thromboelastography (TEG) determined the profiles of whole blood kinetics while hemolysis assay demonstrated the degree of blood compatibility. Increasing levels of NS induced greater hydrophilicity. A concentration dependant decrease in platelet adhesion and activation was observed with AB and PF4 readings, respectively. TEG demonstrated that the antithrombogenic properties of POSS-PCU were retained with POSS-PCU-NS16, and enhanced with POSS-PCU-NS32, but was reduced with POSS-PCU-NS64 and POSS-PCU-NS128. POSS-PCU-NS64 and POSS-PCU-NS128 demonstrated a hemolytic tendency, but no hemolysis was observed with POSS-PCU-NS16 and POSS-PCU-NS32. Overall, POSS-PCU-NS32 rendered potent antithrombogenic properties.

摘要

心血管植入物必须能够抵抗感染和血栓形成。一种纳米复合聚合物材料[多面体低聚倍半硅氧烷-聚(碳酸酯-尿烷)聚氨酯;POSS-PCU]具有理想的心血管应用特性。纳米银或纳米银(NS)因其具有高效的抗菌性能而得到认可。本研究旨在确定整合 NS 的 POSS-PCU 对血栓形成的影响。硝酸银用二甲基甲酰胺还原,并通过包含气相法二氧化硅纳米颗粒来稳定,以防止 NS 的聚集,并将其掺入 POSS-PCU 中,形成一系列 POSS-PCU-NS 浓度(按重量计);0.20%(NS16)、0.40%(NS32)、0.75%(NS64)和 1.50%(NS128)。用悬滴水接触角测定表面润湿性。将血小板引入测试样品上,Alamar Blue(AB),线粒体活性测定,量化血小板黏附程度,而血小板因子-4(PF4)ELISA 量化血小板激活程度。血栓弹性图(TEG)确定全血动力学的曲线,而溶血测定则表明血液相容性的程度。随着 NS 水平的增加,诱导出更大的亲水性。AB 和 PF4 读数分别观察到血小板黏附率和激活率呈浓度依赖性降低。TEG 表明,POSS-PCU-NS16 保留了 POSS-PCU 的抗血栓形成特性,POSS-PCU-NS32 增强了其抗血栓形成特性,但 POSS-PCU-NS64 和 POSS-PCU-NS128 则降低了其抗血栓形成特性。POSS-PCU-NS64 和 POSS-PCU-NS128 表现出溶血倾向,但 POSS-PCU-NS16 和 POSS-PCU-NS32 则没有溶血。总体而言,POSS-PCU-NS32 具有强大的抗血栓形成特性。

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