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Assessment of Novel Long-Lasting Ceria-Stabilized Zirconia-Based Ceramics with Different Surface Topographies as Implant Materials

Altmann, Brigitte (författare)
University of Freiburg, Germany
Karygianni, Lamprini (författare)
University of Freiburg, Germany
Al-Ahmad, Ali (författare)
University of Freiburg, Germany
visa fler...
Butz, Frank (författare)
University of Freiburg, Germany
Bächle, Maria (författare)
University of Freiburg, Germany
Adolfsson, Erik (författare)
RISE,IVF
Fürderer, Tobias (författare)
Courtois, Nicolas (författare)
Palmero, Paola (författare)
Politecnico di Torino, Italy
Follo, Marie (författare)
University of Freiburg, Germany
Chevalier, Jérôme (författare)
Université de Lyon, France
Steinberg, Thorsten (författare)
University of Freiburg, Germany
Kohal, Ralf Joachim (författare)
University of Freiburg, Germany
visa färre...
 (creator_code:org_t)
2017-08-04
2017
Engelska.
Ingår i: Advanced Functional Materials. - : Wiley-VCH Verlag. - 1616-301X .- 1616-3028. ; 27:40
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The development of long-lasting zirconia-based ceramics for implants, which are not prone to hydrothermal aging, is not satisfactorily solved. Therefore, this study is conceived as an overall evaluation screening of novel ceria-stabilized zirconia-alumina-aluminate composite ceramics (ZA8Sr8-Ce11) with different surface topographies for use in clinical applications. Ceria-stabilized zirconia is chosen as the matrix for the composite material, due to its lower susceptibility to aging than yttria-stabilized zirconia (3Y-TZP). This assessment is carried out on three preclinical investigation levels, indicating an overall biocompatibility of ceria-stabilized zirconia-based ceramics, both in vitro and in vivo. Long-term attachment and mineralized extracellular matrix (ECM) deposition of primary osteoblasts are the most distinct on porous ZA8Sr8-Ce11p surfaces, while ECM attachment on 3Y-TZP and ZA8Sr8-Ce11 with compact surface texture is poor. In this regard, the animal study confirms the porous ZA8Sr8-Ce11p to be the most favorable material, showing the highest bone-to-implant contact values and implant stability post implantation in comparison with control groups. Moreover, the microbiological evaluation reveals no favoritism of biofilm formation on the porous ZA8Sr8-Ce11p when compared to a smooth control surface. Hence, together with the in vitro in vivo assessment analogy, the promising clinical potential of this novel ZA8Sr8-Ce11 as an implant material is demonstrated. 

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Medicinteknik -- Medicinsk material- och protesteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Medical Engineering -- Medical Materials (hsv//eng)

Nyckelord

Alumina
Biocompatibility
Ceramic materials
Surface topography
Zirconia
Bacterial adhesion
Human osteoblast
Implant materials
Osseointegration
Zirconia based composites
Yttria stabilized zirconia

Publikations- och innehållstyp

ref (ämneskategori)
art (ämneskategori)

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