Variability in synovial inflammation in rheumatoid arthritis investigated by microarray technology
Open Access
- 16 February 2006
- journal article
- research article
- Published by Springer Nature in Arthritis Research & Therapy
- Vol. 8 (2) , R47
- https://doi.org/10.1186/ar1903
Abstract
In recent years microarray technology has been used increasingly to acquire knowledge about the pathogenic processes involved in rheumatoid arthritis. The present study investigated variations in gene expression in synovial tissues within and between patients with rheumatoid arthritis. This was done by applying microarray technology on multiple synovial biopsies obtained from the same knee joints. In this way the relative levels of intra-patient and inter-patient variation could be assessed. The biopsies were obtained from 13 different patients: 7 by orthopedic surgery and 6 by rheumatic arthroscopy. The data show that levels of heterogeneity varied substantially between the biopsies, because the number of genes found to be differentially expressed between pairs of biopsies from the same knee ranged from 6 to 2,133. Both arthroscopic and orthopedic biopsies were examined, allowing us to compare the two sampling methods. We found that the average number of differentially expressed genes between biopsies from the same patient was about three times larger in orthopedic than in arthroscopic biopsies. Using a parallel analysis of the tissues by immunohistochemistry, we also identified orthopedic biopsies that were unsuitable for gene expression analysis of synovial inflammation due to sampling of non-inflamed parts of the tissue. Removing these biopsies reduced the average number of differentially expressed genes between the orthopedic biopsies from 455 to 171, in comparison with 143 for the arthroscopic biopsies. Hierarchical clustering analysis showed that the remaining orthopedic and arthroscopic biopsies had gene expression signatures that were unique for each patient, apparently reflecting patient variation rather than tissue heterogeneity. Subsets of genes found to vary between biopsies were investigated for overrepresentation of biological processes by using gene ontology. This revealed representative 'themes' likely to vary between synovial biopsies affected by inflammatory disease.Keywords
This publication has 42 references indexed in Scilit:
- Molecular classification of head and neck squamous cell carcinomas using patterns of gene expressionCancer Cell, 2004
- Quantitative biomarker analysis of synovial gene expression by real-time PCRArthritis Research & Therapy, 2003
- Interindividual and intra-articular variation of proinflammatory cytokines in patients with rheumatoid arthritis: potential implications for treatmentAnnals of the Rheumatic Diseases, 2000
- Molecular Classification of Cancer: Class Discovery and Class Prediction by Gene Expression MonitoringScience, 1999
- Intraarticular variability of synovial membrane histology, immunohistology, and cytokine mRNA expression in patients with rheumatoid arthritis.1999
- Distribution of T cells and signs of T-cell activation in the rheumatoid joint: implications for semiquantitative comparative histologyRheumatology, 1998
- Revised criteria for the classification of rheumatoid arthritis.1989
- Representative sample of rheumatoid synovium: a morphometric study.Journal of Clinical Pathology, 1988
- INTRA-ARTICULAR VARIATION OF SYNOVIAL CHANGES IN KNEE ARTHRITIS: BIOPSY STUDY COMPARING CHANGES IN PATELLOFEMORAL SYNOVIUM AND THE MEDIAL TIBIOFEMORAL SYNOVIUMRheumatology, 1987
- Intraarticular variation in synovitis. Local macroscopic and microscopic signs of inflammatory activity are significantly correlatedArthritis & Rheumatism, 1985