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Increased osteoblast adhesion on titanium‐coated hydroxylapatite that forms CaTiO 3
Author(s) -
Webster Thomas J.,
Ergun Celaletdin,
Doremus Robert H.,
Lanford William A.
Publication year - 2003
Publication title -
journal of biomedical materials research part a
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.849
H-Index - 150
eISSN - 1552-4965
pISSN - 1549-3296
DOI - 10.1002/jbm.a.10160
Subject(s) - materials science , titanium , hydroxylapatite , osteoblast , osseointegration , adhesion , coating , chemical engineering , apatite , composite material , metallurgy , implant , in vitro , chemistry , medicine , biochemistry , surgery , engineering , enzyme
CaTiO 3 is a strong candidate to form at the interface between hydroxylapatite (HA) and titanium implants during many coating procedures. However, few studies have compared the cytocompatibility properties of CaTiO 3 to HA pertinent for bone–cell function. For this reason, the objective of the present in vitro study was to determine the ability of bone‐forming cells (osteoblasts) to adhere on titanium coated with HA that resulted in the formation of CaTiO 3 . To accomplish the formation of CaTiO 3 , titanium was coated on HA discs and annealed either under air or a N 2 +H 2 environment. Materials were characterized by X‐ray diffraction (XRD), Rutherford backscattering spectroscopy (RBS), and atomic force microscopy (AFM). These characterization techniques demonstrated the formation of a nanometer rough CaTiO 3 layer as a consequence of interactions between HA and titanium during coating conditions. Results from cytocompatibility tests revealed increased osteoblast adhesion on materials that contained CaTiO 3 compared to both pure HA and uncoated titanium. The greatest osteoblast adhesion was observed on titanium‐coated HA annealed under air conditions. Because adhesion is a crucial prerequisite to subsequent functions of osteoblasts (such as the deposition of calcium containing mineral), the present in vitro results imply that orthopedic coatings that form CaTiO 3 could increase osseointegration with juxtaposed bone needed for increased implant efficacy. © 2003 Wiley Periodicals, Inc. J Biomed Mater Res 67A: 975–980, 2003