Frank Matthias J, Walter Martin S, Rubert Marina, Thiede Bernd, Monjo Marta, Reseland Janne E, Haugen Håvard J, Lyngstadaas Ståle Petter
Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, P.O. Box 1109 Blindern, Oslo NO-0317, Norway.
Institute of Medical and Polymer Engineering, Technische Universität München, Boltzmannstrasse 15, Garching 85748, Germany.
Materials (Basel). 2014 Mar 14;7(3):2210-2228. doi: 10.3390/ma7032210.
The idea of a bioactive surface coating that enhances bone healing and bone growth is a strong focus of on-going research for bone implant materials. Enamel matrix derivate (EMD) is well documented to support bone regeneration and activates growth of mesenchymal tissues. Thus, it is a prime candidate for coating of existing implant surfaces. The aim of this study was to show that cathodic polarization can be used for coating commercially available implant surfaces with an immobilized but functional and bio-available surface layer of EMD. After coating, XPS revealed EMD-related bindings on the surface while SIMS showed incorporation of EMD into the surface. The hydride layer of the original surface could be activated for coating in an integrated one-step process that did not require any pre-treatment of the surface. SEM images showed nano-spheres and nano-rods on coated surfaces that were EMD-related. Moreover, the surface roughness remained unchanged after coating, as it was shown by optical profilometry. The mass peaks observed in the matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy (MALDI-TOF MS) analysis confirmed the integrity of EMD after coating. Assessment of the bioavailability suggested that the modified surfaces were active for osteoblast like MC3M3-E1 cells in showing enhanced Coll-1 gene expression and ALP activity.
增强骨愈合和骨生长的生物活性表面涂层理念是目前骨植入材料研究的重点。釉基质衍生物(EMD)已被充分证明可支持骨再生并激活间充质组织生长。因此,它是现有植入物表面涂层的主要候选材料。本研究的目的是表明阴极极化可用于在市售植入物表面涂覆固定化但具有功能且生物可利用的EMD表面层。涂覆后,X射线光电子能谱(XPS)显示表面存在与EMD相关的键合,而二次离子质谱(SIMS)表明EMD已掺入表面。原始表面的氢化物层可在无需对表面进行任何预处理的集成一步法中被激活用于涂覆。扫描电子显微镜(SEM)图像显示涂覆表面上存在与EMD相关的纳米球和纳米棒。此外,光学轮廓仪显示涂覆后表面粗糙度保持不变。基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)分析中观察到的质量峰证实了涂覆后EMD的完整性。生物利用度评估表明,改性表面对成骨细胞样MC3M3-E1细胞具有活性,表现为I型胶原(Coll-1)基因表达增强和碱性磷酸酶(ALP)活性增强。