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X-ray and neutron investigation of self-assembled lipid layers on a titanium surface

机译:钛表面自组装脂质层的X射线和中子研究

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Titanium is the most widely preferred metal material for bone reconstruction in orthopedics and dentistry. To improve its biological performance, various coatings can be applied. In this investigation, a biomimetic coating on a model implant surface was studied in X-ray and neutron reflectivity experiments to probe the quality of this coating, which is only few nanometers thick. Titanium was deposited on polished silicon surfaces using a magnetron sputtering technique. To improve the lipid coating’s stability, a stronger van der Waals interaction was first created between the implant surface and the biomimetic coating by adding a phosphonic acid (n-octadecylphosphonic acid – OPA) monolayer onto the surfaces. Then, three monolayers of POPE (phospholipid 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-ethanolamine) were transferred using the Langmuir-Blodgett (LB) and Langmuir-Schaefer (LS) techniques. The analysis of X-ray and neutron specular reflectivity data shows that OPA molecules cover the model implant surface completely and that approximately 50% coverage of POPE can be achieved by LB and LS transfer.
机译:钛是整形外科和牙科中用于骨骼重建的最广泛首选的金属材料。为了改善其生物学性能,可以施加各种涂层。在这项研究中,在X射线和中子反射率实验中研究了模型植入物表面上的仿生涂层,以探测这种涂层的质量,该涂层的厚度仅为几纳米。使用磁控溅射技术将钛沉积在抛光的硅表面上。为了提高脂质涂层的稳定性,首先在植入物表面和仿生涂层之间建立了更强的范德华相互作用,方法是在表面上添加膦酸(正十八烷基膦酸– OPA)单层。然后,使用Langmuir-Blodgett(LB)和Langmuir-Schaefer(LS)技术转移三个单层POPE(磷脂酰1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸乙醇胺)。对X射线和中子镜面反射率数据的分析表明,OPA分子完全覆盖了模型植入物的表面,通过LB和LS转移可以达到POPE的大约50%的覆盖率。

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