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Implant Surface Roughness Affects Osteoblast Gene Expression
by
ZAHARIAS R.
, SEABOLD D.
, STANFORD C.
, KELLER J.
, CLEGG M.
, SCHNEIDER G. B.
, PERINPANAYAGAM H.
in
Analysis of Variance
/ Animals
/ BSPII gene
/ Calcification, Physiologic
/ Cbfa1
/ Cbfal gene
/ Cell Differentiation
/ Cells, Cultured
/ Core Binding Factor Alpha 1 Subunit
/ Dental Implants
/ Gene Expression
/ Integrin-Binding Sialoprotein
/ Microscopy, Electron, Scanning
/ mineralization
/ Neoplasm Proteins
/ osseointegration
/ Osseointegration - physiology
/ osteoblasts
/ Osteoblasts - metabolism
/ Rats
/ Sialoglycoproteins - biosynthesis
/ Statistics, Nonparametric
/ Surface Properties
/ Titanium
/ Transcription Factors - biosynthesis
2003
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Implant Surface Roughness Affects Osteoblast Gene Expression
by
ZAHARIAS R.
, SEABOLD D.
, STANFORD C.
, KELLER J.
, CLEGG M.
, SCHNEIDER G. B.
, PERINPANAYAGAM H.
in
Analysis of Variance
/ Animals
/ BSPII gene
/ Calcification, Physiologic
/ Cbfa1
/ Cbfal gene
/ Cell Differentiation
/ Cells, Cultured
/ Core Binding Factor Alpha 1 Subunit
/ Dental Implants
/ Gene Expression
/ Integrin-Binding Sialoprotein
/ Microscopy, Electron, Scanning
/ mineralization
/ Neoplasm Proteins
/ osseointegration
/ Osseointegration - physiology
/ osteoblasts
/ Osteoblasts - metabolism
/ Rats
/ Sialoglycoproteins - biosynthesis
/ Statistics, Nonparametric
/ Surface Properties
/ Titanium
/ Transcription Factors - biosynthesis
2003
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Implant Surface Roughness Affects Osteoblast Gene Expression
by
ZAHARIAS R.
, SEABOLD D.
, STANFORD C.
, KELLER J.
, CLEGG M.
, SCHNEIDER G. B.
, PERINPANAYAGAM H.
in
Analysis of Variance
/ Animals
/ BSPII gene
/ Calcification, Physiologic
/ Cbfa1
/ Cbfal gene
/ Cell Differentiation
/ Cells, Cultured
/ Core Binding Factor Alpha 1 Subunit
/ Dental Implants
/ Gene Expression
/ Integrin-Binding Sialoprotein
/ Microscopy, Electron, Scanning
/ mineralization
/ Neoplasm Proteins
/ osseointegration
/ Osseointegration - physiology
/ osteoblasts
/ Osteoblasts - metabolism
/ Rats
/ Sialoglycoproteins - biosynthesis
/ Statistics, Nonparametric
/ Surface Properties
/ Titanium
/ Transcription Factors - biosynthesis
2003
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Implant Surface Roughness Affects Osteoblast Gene Expression
Journal Article
Implant Surface Roughness Affects Osteoblast Gene Expression
2003
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Overview
The transcription factor Cbfa1 regulates osteoblast differentiation and expression of
genes necessary for the development of a mineralized phenotype. The purpose of this
study was to determine if Cbfa1 and BSPII gene expression are influenced by implant
surface microtopography. Osteoblasts were cultured on 600-grit (grooved) or
sandblasted (roughened) cpTi implant discs. Mineralization was evaluated by
Alizarin-Red-S staining. Real Time PCR was used for quantitative analysis of Cbfa1
and BSPII gene expression. Enhanced mineralization was seen in osteoblasts grown on
roughened implant surfaces relative to tissue culture plastic. Real Time PCR showed
significant (P < 0.05) increases in Cbfa1 gene expression in cells grown on
roughened, as compared with grooved, implant surfaces. BSPII gene expression was also
increased on rough surfaces in the UMR cells, but was reduced in the rat calvarial
osteoblast cultures. These results suggest that osteoblast gene expression and
mineralization are affected by roughened implant surface microtopographies during
osseointegration of dental implants.
Publisher
SAGE Publications,SAGE PUBLICATIONS, INC
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