Al Qahtani Waleed M S, Schille Christine, Spintzyk Sebastian, Al Qahtani Mohammed S A, Engel Eva, Geis-Gerstorfer Juergen, Rupp Frank, Scheideler Lutz
Biomed Tech (Berl). 2017 Feb 1;62(1):75-87. doi: 10.1515/bmt-2015-0139.
Titanium dental implants with sandblasted and/or acid-etched surfaces have shown clinical superiority in comparison to their smooth, machined counterparts, and are now state of the art. Sandblasting of finished, sintered zirconia implants, however, will damage the surface structure and affect the mechanical properties. To improve osseointegration of zirconia dental implants without impairing the original mechanical strength by crack initiation and partial phase transformation from tetragonal to monoclinic, roughening of the zirconia surface by sandblasting before the final sintering step was employed. Impact of the treatments on cellular reactions of SAOS-2 human osteoblast-like cells was investigated. Sandblasting of Yttrium-stabilized zirconia (Y-TZP) with 120 μm and 250 μm Al2O3 enhanced average roughness (Sa) from 0.28 μm to 4.1 μm and 5.72 μm, respectively. Cell adhesion of SAOS-2 osteoblasts was enhanced up to 175% on sandblasted surfaces, compared to the machined zirconia reference (100%). Metabolic activity and proliferation in the logarithmic growth phase (24-48 h) were not significantly affected. Sample surface coverage by the cells after prolonged incubation (72 h) was markedly decreased on the roughened samples, indicating a shift towards increased differentiation on these surfaces. The approach investigated here to roughen zirconia implants by sandblasting before sintering shows potential to improve the clinical performance of ceramic dental implants.
与表面光滑、经过机械加工的钛牙种植体相比,具有喷砂和/或酸蚀表面的钛牙种植体已显示出临床优势,并且现在已成为行业标准。然而,对成品烧结氧化锆种植体进行喷砂会破坏其表面结构并影响机械性能。为了在不通过裂纹萌生和从四方相到单斜相的部分相变而损害原始机械强度的情况下改善氧化锆牙种植体的骨整合,在最终烧结步骤之前采用喷砂使氧化锆表面粗糙化。研究了这些处理对SAOS-2人成骨样细胞细胞反应的影响。用120μm和250μm的Al2O3对钇稳定氧化锆(Y-TZP)进行喷砂处理,平均粗糙度(Sa)分别从0.28μm提高到4.1μm和5.72μm。与机械加工的氧化锆对照(100%)相比,SAOS-2成骨细胞在喷砂表面的细胞粘附增强了175%。对数生长期(24-48小时)的代谢活性和增殖没有受到显著影响。长时间孵育(72小时)后,粗糙化样品上细胞的表面覆盖率明显降低,表明这些表面上的细胞向分化增加的方向转变。本文研究的在烧结前通过喷砂使氧化锆种植体粗糙化的方法显示出改善陶瓷牙种植体临床性能的潜力。