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In vitro investigation of hemocompatibility of hydrophilic SiNx:H films fabricated by plasma-enhanced chemical vapor deposition

机译:通过等离子体增强化学气相沉积制备的亲水性Sinx的血液相色的体外调查

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SiNx:H films with different N/ Si ratios were synthesized by plasma-enhanced chemical vapor deposition (PECVD), aimed for BioMEMS or other biomedical applications. In vitro platelet adhesion tests were conducted to evaluate the hemocompatibility of the prepared films and the results were compared to low-temperature isotropic carbon (LTI-C) which is the most commonly used materials in commercial blood contacting biomedical devices such as artificial heart valves. Our results indicate that the SiNx:H films offer acceptable hemocompatibility compared to LTI-C and possess better characteristics. The hydrophilic property in terms of surface free energy is considered to contribute to the platelet adhesion and activation behavior. The thrombogenicity of the materials is investigated from the thermodynamic and kinetic points of view. Our results indicate that the Si–N bonds play a crucial role in determining the hydrophilic property of the film and consequently affect the blood/surface reactions and hemocompatibility of the films.
机译:SINX:具有不同N / SI比率的H膜通过等离子体增强的化学气相沉积(PECVD)合成,旨在为生物美容或其他生物医学应用。进行体外血小板粘附试验以评估制备的薄膜的血液相位性,并将结果与​​低温各向同性碳(LTI-C)进行比较,这是商业血液接触诸如人造心脏瓣膜的生物医学装置中最常用的材料。我们的结果表明,与LTI-C相比,SINX:H薄膜提供可接受的血液组合,并具有更好的特性。在表面自由能方面的亲水性被认为有助于血小板粘附和活化行为。从热力学和动力学点研究了材料的血栓形成性。我们的结果表明,Si-N键在确定薄膜的亲水性并因此影响膜的血液/表面反应和血液相容性方面发挥至关重要的作用。

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