Department of Prosthodontics, Division of Fixed Prosthodontics, School of Dentistry, Iwate Medical University, 1-3-27 Chuodori, Morioka, Iwate 020-8505, Japan.
Mater Sci Eng C Mater Biol Appl. 2012 Jan 1;32(1):55-60. doi: 10.1016/j.msec.2011.09.011. Epub 2011 Oct 4.
A method of coating commercially pure titanium (cpTi) implants with a highly crystalline, thin hydroxyapatite (HA) layer using discharge anodic oxidation followed by hydrothermal treatment (Spark discharged Anodic oxidation treatment ; SA-treated cpTi) has been reported for use in clinical dentistry. We hypothesized that a thin HA layer with high crystallinity and nanostructured anodic titanium oxide film on such SA-treated cpTi implant surfaces might be a crucial function of their surface-specific potential energy. To test this, we analyzed anodic oxide (AO) cpTi and SA-treated cpTi disks by SEM and AFM. Contact angles and surface free energy of each disk surface was measured using FAMAS software. High-magnification SEM and AFM revealed the nanotopographic structure of the anodic titanium oxide film on SA-treated cpTi; however, this was not observed on the AO cpTi surface. The contact angle and surface free energy measurements were also significantly different between AO cpTi and SA-treated cpTi surfaces (Tukey's, P<0.05). These data indicated that the change of physicochemical properties of an anodic titanium oxide film with HA crystals on an SA-treated cpTi surface may play a key role in the phenomenon of osteoconduction during the process of osseointegration.
一种使用放电阳极氧化(Spark Discharged Anodic Oxidation Treatment,简称“SA”处理)后再进行水热处理,在商用纯钛(cpTi)植入物表面涂覆具有高结晶度和薄羟基磷灰石(HA)层的方法,已被报道用于临床牙科。我们假设,在这种经过 SA 处理的 cpTi 植入物表面上,具有高结晶度的薄 HA 层和纳米结构的阳极氧化钛薄膜可能是其表面特定势能的关键功能。为了验证这一点,我们通过 SEM 和 AFM 分析了阳极氧化(AO)cpTi 和 SA 处理的 cpTi 盘。使用 FAMAS 软件测量每个磁盘表面的接触角和表面自由能。高倍 SEM 和 AFM 揭示了 SA 处理的 cpTi 上阳极氧化钛薄膜的纳米形貌结构;然而,在 AO cpTi 表面上没有观察到这种结构。AO cpTi 和 SA 处理的 cpTi 表面之间的接触角和表面自由能测量值也有显著差异(Tukey 检验,P<0.05)。这些数据表明,在骨整合过程中,具有 HA 晶体的阳极氧化钛膜物理化学性质的变化可能在骨传导现象中起关键作用。