Influence of the Surface Chemical Composition Differences between Zirconia and Titanium with the Similar Surface Structure and Roughness on Bone Formation

被引:3
作者
Tokunaga, Yoshiki [1 ]
Hirota, Masatsugu [2 ]
Hayakawa, Tohru [1 ]
机构
[1] Tsurumi Univ, Sch Dent Med, Dept Dent Engn, Tsurumi Ku, 2-1-3 Tsurumi, Yokohama, Kanagawa 2308501, Japan
[2] Tsurumi Univ, Sch Dent Med, Dept Educ Dent Med, Tsurumi Ku, 2-1-3 Tsurumi, Yokohama, Kanagawa 2308501, Japan
基金
日本学术振兴会;
关键词
zirconia; molecular precursor method; dental implant; osseointegration; bone-to-implant contact; MOLECULAR PRECURSOR METHOD; DENTAL IMPLANTS; TISSUE-RESPONSE; ORAL IMPLANTS; SLA; SALT;
D O I
10.3390/nano12142478
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The osseointegration of zirconia (ZrO2) implants is still controversial. In this study, we aimed to make clear the influence of surface chemical composition, Ti or ZrO2, to osseointegration. First, a roughened Ti surface was prepared with a combination of large-grit sandblasting and acid treatment. Then, we applied molecular precursor solution containing Zr complex onto roughened Ti surface and can deposit thin ZrO2 film onto roughened Ti surface. We can change surface chemical composition from Ti to ZrO2 without changing the surface structure and roughness of roughened Ti. The tetragonal Zr was uniformly present on the ZrO2-coated Ti surface, and the surface of the ZrO2-coated Ti showed a higher apparent zeta potential than Ti. Ti and ZrO2-coated Ti rectangular plate implant was placed into the femur bone defect. After 2 and 4 weeks of implantation, histomorphometric observation revealed that the bone-to-implant contact ratio and the bone mass values for ZrO2-coated Ti implants inserted into the femur bone defects of the rats at 2 weeks were significantly higher than those for Ti implants (p < 0.05). It revealed that ZrO2 with a similar surface structure and roughness as that of roughened Ti promoted osteogenesis equivalent to or better than that of Ti in the early bone formation stage.
引用
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页数:15
相关论文
共 39 条
[1]  
Albrektsson T., 1993, Clinical Materials, V12, P1, DOI 10.1016/0267-6605(93)90021-X
[2]   On osseointegration in relation to implant surfaces [J].
Albrektsson, Tomas ;
Wennerberg, Ann .
CLINICAL IMPLANT DENTISTRY AND RELATED RESEARCH, 2019, 21 :4-7
[3]   Tissue Response of Surface-Modified Three-Dimensional Titanium Fiber Structure [J].
Amemiya, Tsuyoshi ;
Fukayo, Yugo ;
Nakaoka, Kazutoshi ;
Hamada, Yoshiki ;
Hayakawa, Tohru .
JOURNAL OF HARD TISSUE BIOLOGY, 2014, 23 (02) :137-148
[4]   Effect of sandblasting on the mechanical properties of Y-TZP zirconia [J].
Bhargava, Srilatha ;
Doi, Hisashi ;
Kondo, Ryota ;
Aoki, Hideki ;
Hanawa, Takao ;
Kasugai, Shohei .
BIO-MEDICAL MATERIALS AND ENGINEERING, 2012, 22 (06) :383-398
[5]  
Blaschke C, 2006, NEUROENDOCRINOL LETT, V27, P69
[6]   Biomechanical evaluation of a microstructured zirconia implant by a removal torque comparison with a standard Ti-SLA implant [J].
Bormann, Kai-Hendrik ;
Gellrich, Nils-Claudius ;
Kniha, Heinz ;
Dard, Michel ;
Wieland, Marco ;
Gahlert, Michael .
CLINICAL ORAL IMPLANTS RESEARCH, 2012, 23 (10) :1210-1216
[7]  
Buksek H, 2010, ACTA CHIM SLOV, V57, P700
[8]   Enhanced bone apposition to a chemically modified SLA titanium surface [J].
Buser, D ;
Broggini, N ;
Wieland, M ;
Schenk, RK ;
Denzer, AJ ;
Cochran, DL ;
Hoffmann, B ;
Lussi, A ;
Steinemann, SG .
JOURNAL OF DENTAL RESEARCH, 2004, 83 (07) :529-533
[9]   Efficacy of standard (SLA) and modified sandblasted and acid-etched (SLActive) dental implants in promoting immediate and/or early occlusal loading protocols: a systematic review of prospective studies [J].
Chambrone, Leandro ;
Shibli, Jamil Awad ;
Mercurio, Carlos Eduardo ;
Cardoso, Bruna ;
Preshaw, Philip M. .
CLINICAL ORAL IMPLANTS RESEARCH, 2015, 26 (04) :359-370
[10]   Early bone response to machined, sandblasting acid etching (SLA) and novel surface-functionalization (SLAffinity) titanium implants: characterization, biomechanical analysis and histological evaluation in pigs [J].
Chiang, Hsi-Jen ;
Hsu, Heng-Jui ;
Peng, Pei-Wen ;
Wu, Ching-Zong ;
Ou, Keng-Liang ;
Cheng, Han-Yi ;
Walinski, Christopher J. ;
Sugiatno, Erwan .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2016, 104 (02) :397-405