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Large-scale gene expression profiles, differentially represented in osteoarthritic synovium of the knee joint using cDNA microarray technology

机译:使用cDNA芯片技术在膝关节的骨关节炎滑膜中差异表达的大规模基因表达谱

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摘要

Osteoarthritis (OA) is one of the most common age-related chronic disorders of articular cartilage, joints and bone tissue. Diagnosis of OA commonly depends on clinical and radiographic findings. However, changes in cartilage associated with the early stage of OA cannot be detected using radiographs, because significant cartilage degeneration must occur before radiographic findings show alterations of the appearance of cartilage. To identify new biomarkers of OA, we analysed gene expression profiles of synovium from 43 patients with OA, ten patients with rheumatoid arthritis (RA), and eight non-OAon-RA patients using a novel cDNA microarray chip. We identified 21 genes with simultaneous significant differences in expression between OA and non-OAon-RA groups and between OA and RA groups. Linear discriminant analysis showed that the three groups could be well separated using those 21 genes. Statistical analysis also revealed that several of the 21 genes were associated with disease progression and clinical presentation. The graphical modelling method indicated that some of the 21 genes are significantly associated with a particular clinical presentation, suggesting biological relationships among those genes. This is the first report of the use of cDNA microarray technology to create large-scale gene expression profiles differentially expressed in situ in OA synovium of the knee joint.
机译:骨关节炎(OA)是最常见的与年龄相关的慢性慢性关节软骨,关节和骨组织疾病之一。 OA的诊断通常取决于临床和影像学发现。但是,与OA早期阶段相关的软骨变化无法使用X射线照片检测到,因为在影像学表现显示出软骨外观改变之前必须发生明显的软骨变性。为了鉴定OA的新生物标记,我们使用新型cDNA微阵列芯片分析了43例OA患者,10例类风湿关节炎(RA)和8例非OA /非RA患者的滑膜基因表达谱。我们鉴定出21个基因,在OA和非OA / non-RA组之间以及OA和RA组之间的表达同时具有显着差异。线性判别分析表明,使用这21个基因可以很好地分离这三个组。统计分析还显示,这21个基因中有几个与疾病进展和临床表现有关。图形化建模方法表明,这21个基因中的一些与特定的临床表现显着相关,暗示了这些基因之间的生物学关系。这是使用cDNA微阵列技术创建在膝关节OA滑膜中原位差异表达的大规模基因表达谱的首次报道。

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