Please use this identifier to cite or link to this item: http://hdl.handle.net/2440/17312
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Type: Journal article
Title: Identification of differentially expressed genes between osteoarthritic and normal trabecular bone from the intertrochanteric region of the proximal femur using cDNA microarray analysis
Author: Hopwood, B.
Gronthos, S.
Kuliwaba, J.
Robey, P.
Findlay, D.
Fazzalari, N.
Citation: Bone, 2005; 36(4):635-644
Publisher: Elsevier Science Inc
Issue Date: 2005
ISSN: 8756-3282
1873-2763
Statement of
Responsibility: 
B. Hopwood, S. Gronthos, J.S. Kuliwaba, P.G. Robey, D.M. Findlay and N.L. Fazzalari
Abstract: Osteoarthritis (OA) is a common age-related joint disease resulting in progressive degenerative damage to articular cartilage. The etiology of primary OA has not yet been determined. However, there is evidence supporting the hypothesis that primary OA is a disease affecting bone remodeling in addition to articular cartilage. In this study, we have used cDNA microarray analysis to compare gene expression in bone between normal (CTL) and OA individuals. Trabecular bone was sampled from the intertrochanteric region of the proximal femur, a site distal to the diseased hip joint. Total RNA was extracted from three pairs of age- and sex-matched CTL and OA bone samples, reverse-transcribed and radioactively labeled to generate cDNA probes, before hybridization with the Research Genetics GF211 human gene microarray filter. The CTL and OA samples were found to have similar levels of gene expression for more than 4000 known human genes. However, forty-one genes were identified that were differentially expressed, twofold or more, between all three CTL–OA sample pairs. Using semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) analysis, three genes, fms-like tyrosine kinase 1 (FLT1), plexin B1 (PLXNB1), and small inducible cytokine A2 (SCYA2), were confirmed to be consistently expressed at lower levels in OA, in a majority of twenty age- and sex-matched CTL–OA bone sample pairs tested. FLT1, PLXNB1, and SCYA2 have known or potential roles in angiogenesis and bone remodeling. Down-regulation of these genes is consistent with a role for bone in the pathogenesis of OA.
Keywords: Osteoarthritis; cDNA microarray; Proximal femur; Trabecular bone
Description: Copyright © 2005 Elsevier Inc. All rights reserved.
RMID: 0020050399
DOI: 10.1016/j.bone.2005.02.003
Description (link): http://www.elsevier.com/wps/find/journaldescription.cws_home/525233/description#description
Appears in Collections:Orthopaedics and Trauma publications

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