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首页> 外文期刊>Biomaterials >Effect of biologically active coating on biocompatibility of Nitinol devices designed for the closure of intra-atrial communications.
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Effect of biologically active coating on biocompatibility of Nitinol devices designed for the closure of intra-atrial communications.

机译:具有生物活性的涂层对设计用于封闭房内通信的镍钛诺装置的生物相容性的影响。

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Anti-thrombogenicity and rapid endothelialisation are prerequisites for the use of closure devices of intra-atrial communications in order to reduce the risk of cerebral embolism. The purpose of this study was therefore to assess the effect of bioactive coatings on biocompatibility of Nitinol coils designed for the closure of intra-atrial communications. Nitinol coils (n = 10, each) and flat Nitinol bands (n = 3, each) were treated by basic coating with poly(amino-p-xylylene-co-p-xylylene) and then coated with either heparin, r-hirudin or fibronectin. Anti-thrombogenicity was studied in vitro in a dynamic model with whole blood by partial thromboplastin time (PTT), platelet binding and thrombin generation, respectively, and cytotoxicity by hemolysis. Endothelialisation was studied on Nitinol bands with human umbilical venous endothelial cells (HUVEC) by 3-(4,5-dimethylthiazole-2yl)-2,5-triphenyl tetrazolium (MTT) assay and immnuofluorescence analysis of Ki67, vinculin, fibronectin and von Willebrand Factor. Uncoated or coated devices did not influence hemolysis and PTT. r-Hirudin (but not heparin) and fibronectin coating showed lower platelet binding than uncoated Nitinol (p < 0.005, respectively). Heparin and r-hirudin coating reduced thrombin formation (p < 0.05 versus Nitinol, respectively). HUVEC adhesion, proliferation, and matrix formation decreased in the order: fibronectin coating > uncoated Nitinol > r-hirudin coating > heparin coating > basic coating. MTT assay corroborated these findings. In conclusion, r-hirudin and fibronectin coating, by causing no acute cytotoxicity, decreasing thrombogenicity and increasing endothelialisation improve in vitro biocompatibility of Nitinol devices designed for the closure of intra-atrial communications.
机译:为了减少脑栓塞的风险,抗血栓形成性和快速内皮化是使用房内通信闭合装置的先决条件。因此,本研究的目的是评估生物活性涂层对设计用于封闭房内通讯的镍钛诺线圈的生物相容性的影响。镍钛诺线圈(每组n = 10)和平坦的镍钛诺带(每组n = 3)通过聚(氨基-对-二甲苯基-共-对二甲苯基)的碱性涂层处理,然后涂覆肝素,r-hirudin或纤连蛋白。在体外全血动态模型中,通过部分凝血活酶时间(PTT),血小板结合和凝血酶生成以及通过溶血的细胞毒性研究了抗血栓形成性。通过3-(4,5-二甲基噻唑-2yl)-2,5-三苯基四唑鎓(MTT)分析和Ki67,纽扣素,纤连蛋白和von Willebrand的免疫荧光分析,研究了人脐静脉内皮细胞(HUVEC)在镍钛诺带上的内皮化作用因子。未涂覆或未涂覆的设备不会影响溶血和PTT。 r-水rud素(而非肝素)和纤连蛋白涂层的血小板结合性低于未涂层的镍钛诺(分别为p <0.005)。肝素和r-hirudin涂层减少了凝血酶的形成(相对于镍钛诺,分别为p <0.05)。 HUVEC粘附,增殖和基质形成的顺序依次为:纤连蛋白涂层>未涂层的镍钛诺> r-hirudin涂层>肝素涂层>基础涂层。 MTT分析证实了这些发现。总之,r-hirudin和纤连蛋白涂层通过不引起急性细胞毒性,降低血栓形成性和增加内皮化作用,改善了设计用于封闭房内通讯的镍钛诺器械的体外生物相容性。

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