Schätzle Marc, Zinelis Spiros, Markic Goran, Eliades George, Eliades Theodore
Clinic of Orthodontics and Paediatric Dentistry, Center of Dental Medicine, University of Zurich, Zurich, Switzerland.
Department of Dental Biomaterials, School of Dentistry, National and Kapodistrian, University of Athens, Athens, Greece.
Eur J Orthod. 2017 Nov 30;39(6):579-585. doi: 10.1093/ejo/cjx001.
The aim of this study was to characterize the surface, elemental, and mechanical alterations of orthodontic palatal implants after intraoral aging.
Nineteen consecutively retrieved implants (RET) after orthodontic treatment and three unused implants used as control (CON) were included in this study. Both groups were characterized non-destructively by Stereomicroscopy, Optical Profilometry (Sa, Sq, Sz, Sc), and SEM/EDX analysis and then destructively after metallogaphic preparation employing instrumented indentation testing (HM, EIT, ηIT, and HV) and SEM/EDX at bone-implant interface.
All retrieved implants showed a loss of gloss with the formation of bone-like formation on the majority of them. However, no differences in surface roughness parameters were identified between macroscopically intact and retrieved regions of implants. The elements precipitated on the surface were O, C, Ca, and P while traces of Na, K, Al, S, Cl, and Mg were also identified. The surface of control sample is characterized by small pits while only Ti and Al traces were identified by EDX analysis. The presence of all the aforementioned elements apart from Ti and Al on the retrieved implants' surface should be appended to the contact of implant with bone and biological fluids while Interfacial analysis revealed a well-formed bone-implant interface. However, no significant differences were found for all mechanical properties tested between RET and CON groups.
The results of this study indicate that retrieved palatal implant surface has undergone morphological and elemental alterations probably associated with the osseointegration process during service. Insertion and functional loading did not affect the mechanical properties of implants tested.
本研究旨在表征正畸腭部种植体在口腔内老化后的表面、元素和力学变化。
本研究纳入了19颗正畸治疗后连续取出的种植体(RET)和3颗未使用的种植体作为对照(CON)。两组均通过立体显微镜、光学轮廓仪(Sa、Sq、Sz、Sc)和扫描电子显微镜/能谱分析(SEM/EDX)进行非破坏性表征,然后在金相制备后通过仪器化压痕测试(HM、EIT、ηIT和HV)和骨 - 种植体界面处的SEM/EDX进行破坏性表征。
所有取出的种植体均出现光泽丧失,大多数表面形成骨样结构。然而,在种植体宏观完整区域和取出区域之间未发现表面粗糙度参数存在差异。沉淀在表面的元素为O、C、Ca和P,同时还鉴定出痕量的Na、K、Al、S、Cl和Mg。对照样品表面的特征是有小坑,而通过EDX分析仅鉴定出痕量的Ti和Al。取出的种植体表面除Ti和Al外所有上述元素的存在应归因于种植体与骨和生物流体的接触,而界面分析显示形成了良好的骨 - 种植体界面。然而,RET组和CON组之间所有测试的力学性能均未发现显著差异。
本研究结果表明,取出的腭部种植体表面经历了形态和元素变化,可能与使用过程中的骨整合过程有关。植入和功能加载并未影响所测试种植体的力学性能。