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In vitro Endothelialization and Platelet Adhesion on Titaniferous Upgraded Polyether and Polycarbonate Polyurethanes

机译:钛质升级级聚醚和聚碳酸酯聚氨酯的体外内皮化和血小板粘附性

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摘要

Polycarbonateurethanes (PCU) and polyetherurethanes (PEU) are used for medical devices, however their bio- and haemocompatibility is limited. In this study, the effect of titaniferous upgrading of different polyurethanes on the bio- and haemocompatibility was investigated by endothelial cell (EC) adhesion/proliferation and platelet adhesion (scanning electron microscopy), respectively. There was no EC adhesion/proliferation and only minor platelet adhesion on upgraded and pure PCU (Desmopan). PEUs (Texin 985, Tecothane 1085, Elastollan 1180A) differed in their cyto- and haemocompatibility. While EC adhesion depended on the type of PEU, any proliferative activity was inhibited. Additional titaniferous upgrading of PEU induced EC proliferation and increased metabolic activity. However, adherent ECs were significantly activated. While Texin was highly thrombotic, only small amounts of platelets adhered onto Tecothane and Elastollan. Additional titaniferous upgrading reduced thrombogenicity of Texin, preserved haemocompatibility of Elastollan, and increased platelet activation/aggregation on Tecothane. In conclusion, none of the PUs was cytocompatible; only titaniferous upgrading allowed EC proliferation and metabolism on PEUs. Haemocompatibility depended on the type of PU.
机译:聚碳酸酯(PCU)和聚醚氨基甲酸酯(PEU)用于医疗设备,但是它们的生物相容性和血液相容性受到限制。在这项研究中,分别通过内皮细胞(EC)粘附/增殖和血小板粘附(扫描电子显微镜)研究了不同聚氨酯的钛质升级对生物相容性和血液相容性的影响。在升级的纯PCU(Desmopan)上,没有EC粘附/增殖,只有很小的血小板粘附。 PEU(Texin 985,Tecothane 1085,Elastollan 1180A)的细胞和血液相容性不同。尽管EC粘附取决于PEU的类型,但任何增殖活性均被抑制。 PEU的其他钛质升级会诱导EC增殖并增加代谢活性。但是,粘附的EC被显着激活。尽管Texin高度血栓形成,但只有少量血小板粘附在Tecothane和Elastollan上。额外的钛铁化升级降低了Texin的血栓形成性,保留了Elastollan的血相容性,并增加了Tecothane上的血小板活化/聚集作用。总之,没有一个PU具有细胞相容性。只有钛的升级才能使PEU上的EC增殖和代谢。血液相容性取决于PU的类型。

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