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Sökning: WFRF:(Wigren Stina)

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2.
  • Larsson, Anna, 1973, et al. (författare)
  • Soft Tissue Integration of Hydroxyapatite-Coated Abutments for Bone Conduction Implants.
  • 2015
  • Ingår i: Clinical implant dentistry and related research. - : Wiley. - 1708-8208 .- 1523-0899. ; 17:2
  • Tidskriftsartikel (refereegranskat)abstract
    • The protocol for bone conduction hearing implant surgery involves reduction of soft tissues around the abutment to minimize the risk of skin-related complications. The present investigation was undertaken to demonstrate that hydroxyapatite-coated abutments provide improved soft tissue integration compared with conventional (pure titanium) abutments and are suitable for use without surgical removal of subepidermal soft tissues.
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3.
  • Omar, Omar, et al. (författare)
  • In vivo gene expression in response to anodically oxidized versus machined titanium implants.
  • 2010
  • Ingår i: Journal of biomedical materials research. Part A. - : Wiley. - 1552-4965 .- 1549-3296. ; 92:4, s. 1552-1566
  • Tidskriftsartikel (refereegranskat)abstract
    • A quantitative polymerase chain reaction technique (qPCR) in combination with scanning electron microscopy was applied for the evaluation of early gene expression response and cellular reactions close to titanium implants. Anodically oxidized and machined titanium miniscrews were inserted in rat tibiae. After 1, 3, and 6 days the implants were unscrewed and the surrounding bone was retrieved using trephines. Both the implants and bone were analyzed with qPCR. A greater amount of cells, as indicated with higher expression of 18S, was detected on the oxidized surface after 1 and 6 days. Significantly higher osteocalcin (at day 6), alkaline phosphatase (at days 3 and 6), and cathepsin K (at day 3) expression was demonstrated for the oxidized surface. Higher expression of tumor necrosis factor-alpha (at day 1) and interleukin-1beta (at days 1 and 6) was detected on the machined surfaces. SEM revealed a higher amount of mesenchymal-like cells on the oxidized surface. The results show that the rapid recruitment of mesenchymal cells, the rapid triggering of gene expression crucial for bone remodeling and the transient nature of inflammation, constitute biological mechanisms for osseointegration, and high implant stability associated with anodically oxidized implants. (c) 2009 Wiley Periodicals, Inc. J Biomed Mater Res, 2009.
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5.
  • Zoric, Neven, et al. (författare)
  • Quantitative PCR: A promising technique investigating the early bone-implant interface
  • 2007
  • Ingår i: Abstract, European Association for Osseointegration (EAO), 16th Annual Scientific Meeting, Barcelona, Spain. ; 25-27 October
  • Konferensbidrag (refereegranskat)abstract
    • Objectives: Studies on the early tissue response to materials are difficult due to the inaccessibility of the interface zone and lack of sensitive techniques. The purpose of the present study was to apply quantitative PCR (qPCR) in combination with LM and SEM for the evaluation of early gene expression response as well as cellular reactions close to titanium implants. Experimental methods: Anodically oxidized titanium (TiUniteTM; Nobel Biocare AB) and machined titanium implants (2mm×2mm) were inserted in the rat tibia. After 1,3, and 6 days, implants were unscrewed and surrounding bone was retrieved. Both the implants and bone were analyzed with qPCR, routine histology and SEM. The amount of mRNA was normalized to 18S protein subunit. Results: After the initial inflammatory response, the tissue located inside the threads became rapidly organized. SEM analysis showed mesenchymal-like cells extending their processes into the pores of the anodically oxidized surface. qPCR demonstrated significantly higher 18S around anodically oxidized screws and in the surrounding tissues. Alkaline phosphatase (osteoblast marker), TRAP and Cathepsin K (osteoclast markers) mRNA, but not the inflammatory markers (TNF-alpha and IL-1beta) were expressed at different levels around the two surfaces. Conclusions: The results demonstrate that the experimental model and qPCR provide interesting possibilities to analyze the mechanisms of osseointegration. Furthermore, remodelling and in particular the molecular processes occur at implant surfaces in vivo already 3 days after implantation. Support: Swedish Research Council and the Institute for Biomaterials and Cell Therapy, Göteborg, Sweden
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