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In vitro haemocompatibility and cytocompatibility evaluation of silver thin film-deposited heart valve prosthesis material

机译:银薄膜沉积心脏瓣膜假体材料的体外血液相容性和细胞相容评估

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One of the most important requirements for a blood-interfacing implant like pyrolytic carbon (PyC)-based heart valve prosthesis is biocompatibility. The aim of this investigation was to evaluate the in vitro haemocompatibility and cytocompatibility of PyC surfaces coated with silver thin films by pulsed laser deposition (PLD) technique at various ablation pulses. The haemocompatibility of the coated PyC surfaces was assessed by the estimation of thrombin time (TT) and the percentage of haemolysis and analysis of platelet aggregation by scanning electron microscopy. The in vitro cytotoxicity of AgNP-coated PyCs at 7500 and 10,000 ablation pulses was tested against chick fibroblast and human peripheral blood mononuclear (PBM) cells by optical microscopy, methylthiazolyl diphenyl-tetrazoliumdiphenyl-tetrazolium bromide assay and epifluorescence microscopy. The results showed that the deposition of AgNPs on PyCs up to 10,000 ablation pulses had improved the haemocompatibility significantly when compared to uncoated controls which were evident from the increased TT, decreased haemolysis and little or no platelet aggregation. AgNP coating of PyCs prepared at both ablation pulses had significantly improved their cytocompatibility to fibroblast and PBM cells when compared to untreated controls. Deposition of AgNPs by PLD technique has converted the procoagulant nature of PyC material into anticoagulant one and also enhanced the cytocompatibility of the heart valve material.
机译:血液接口植入物如热解碳(PYC)基于心脏瓣膜假体的最重要要求之一是生物相容性。该研究的目的是通过在各种消融脉冲处通过脉冲激光沉积(PLD)技术来评估涂覆有银薄膜的PYC表面的体外血液相容性和细胞膜相容性。通过扫描电子显微镜估计凝血酶时间(TT)的估计和氧气聚集百分比来评估涂覆的脓肿表面的血换和分析。通过光学显微镜,甲基噻唑基二苯基 - 四唑鎓二苯基 - 四唑溴水解和离荧光显微镜检测在7500和10,000次消融脉冲处的体外细胞毒性和人周围血液单核(PBM)细胞进行测试。结果表明,与从增加的TT的未经涂覆的对照相比,止血剂高达10,000次消融脉冲的沉积显着提高了血液相容性,从而从增加的TT增加,溶血和几乎没有血小板聚集。与未处理的对照相比,在烧蚀脉冲中制备的Pycs的粘合剂涂层显着改善了它们对成纤维细胞和PBM细胞的细胞织立性。通过PLD技术沉积AgNPS已经将Pyc材料的促凝剂性质转化为抗凝血剂,并且还增强了心脏瓣膜材料的细胞相容性。

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