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1.
Biomed Tech (Berl) ; 62(1): 75-87, 2017 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-27107828

RESUMO

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.


Assuntos
Adesão Celular/fisiologia , Implantes Dentários/normas , Osseointegração/efeitos dos fármacos , Osteoblastos/fisiologia , Titânio/química , Ítrio/química , Zircônio/química , Humanos , Osseointegração/fisiologia , Osteoblastos/química , Propriedades de Superfície
2.
Dent Mater ; 31(8): e157-67, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-25981907

RESUMO

OBJECTIVES: Wettability is increasingly considered to be an important factor determining biological responses to implant materials. In this context, the purpose of this study was to compare the dynamic wettability of dental implants made from different bulk materials and modified by different surface modifications, and to analyze the respective changes of wettability upon irradiating these implants by UV-A or UV-C light. METHODS: Four original screw-type implants were investigated: One grit-blasted/acid-etched and one anodically oxidized titanium, one zirconia and one polyetheretherketone implant. Additionally, experimental, screwless, machined titanium cylinders were included in the study. Part of that cylinders and of blasted/etched implants were further modified by a magnetron-sputtered photocatalytic anatase thin film. Scanning electron microscopy was used to investigate the surface micro- and nanostructures. Samples were treated by UV-A (382nm, 25mWcm(-2)) and UV-C (260nm, 15mWcm(-2)) for entire 40min, respectively, and their wettability was quantified by dynamic contact angle (CA) analysis from multi-loop Wilhelmy experiments. RESULTS: All implants are characterized by submicron- and nanosized surface features. Unexposed implants were hydrophobic (CA>90°). Upon UV-A, solely the implants with anatase coating became superhydrophilic (CA<5°). Upon UV-C, the blasted/etched implants turned superhydrophilic, the anodized titanium and the zirconia implants were considerably (CA=34° and 27°, respectively) and the PEEK implants slightly (CA=79°) hydrophilized. SIGNIFICANCE: The wettability of implant surfaces can be improved by UV irradiation. The efficiency of UV-A and UV-C irradiation to lower the CA by photocatalysis or photolysis, however, is strongly dependent on the specific material and surface. Thus, attempts to photofunctionalize these surfaces by irradiation is expected to result in a different pattern of bioresponses.


Assuntos
Implantes Dentários , Interações Hidrofóbicas e Hidrofílicas , Cetonas/química , Polietilenoglicóis/química , Titânio/química , Raios Ultravioleta , Zircônio/química , Benzofenonas , Teste de Materiais , Microscopia Eletrônica de Varredura , Polímeros , Propriedades de Superfície , Molhabilidade
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