Maitz M F, Gago R, Abendroth B, Camero M, Caretti I, Kreissig U
Institute of Ion Beam Physics and Materials Research, Forschungszentrum Rossendorf, PF 510119, 01314 Dresden, Germany.
J Biomed Mater Res B Appl Biomater. 2006 Apr;77(1):179-87. doi: 10.1002/jbm.b.30435.
Mechanical heart valves are exposed to extreme mechanical demands, which require a surface showing not only nonhaemostatic properties, but also wear resistance and low friction. As alternative to different forms of amorphous carbon (a-C), so-called diamond-like carbon (DLC), the suitability of boron carbonitride (BCN) coatings is tested here for hemocompatible coatings. They have similar mechanical properties like a-C surfaces, but superior chemical stability at ferrous substrates or counterparts. BCN films with different nitrogen content were compared with hydrogenated a-C films regarding their mechanical properties, surface energy, adsorption of albumin and fibrinogen, blood platelet adherence, and activation of the contact system of the clotting cascade and kinin system. Similar mechanical properties and biological response have been found in the BCN films with respect to a-C, indicating the potential of these coatings for biomedical applications. The increase in the crystallinity and tribological properties of the BCN samples with a higher incorporation of N was also followed by a lower protein adsorption and low activation of the contact system, but an increased adherence of thrombocytes.
机械心脏瓣膜面临着极高的机械要求,这就需要其表面不仅具有非止血特性,还需具备耐磨性和低摩擦性。作为不同形式非晶碳(a-C)即所谓类金刚石碳(DLC)的替代物,本文测试了硼碳氮(BCN)涂层作为血液相容性涂层的适用性。它们具有与a-C表面相似的机械性能,但在铁基体或配对物上具有更优异的化学稳定性。将不同氮含量的BCN薄膜与氢化a-C薄膜在机械性能、表面能、白蛋白和纤维蛋白原吸附、血小板黏附以及凝血级联反应和激肽系统接触系统激活方面进行了比较。已发现BCN薄膜在机械性能和生物学反应方面与a-C相似,表明这些涂层在生物医学应用方面具有潜力。随着氮掺入量增加,BCN样品的结晶度和摩擦学性能提高,同时蛋白质吸附降低,接触系统激活程度降低,但血小板黏附增加。