Tehran University of Medical Sciences

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Hypomethylation of the Human Oas2 Gene in Blood Cells As a Potential Biomarker for Rheumatoid Arthritis: Findings From an Iranian Case-Control Study Publisher Pubmed



Gholami D ; Ourang Z ; Saatchi M ; Rigi Yousefabadi E ; Esmaeilzadeh E ; Akhlaghi M ; Kavosi H ; Khorram Khorshid H R
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Source: Archives of Iranian medicine Published:2026


Abstract

BACKGROUND: Given the pivotal role of DNA methylation in the progression and severity of rheumatoid arthritis (RA), identifying a unique methylation pattern associated with the disease could support early detection, disease monitoring, and the development of personalized treatment plans. We aimed to explore the potential of OAS2 and OAS3 methylation levels in peripheral blood cells. These levels could be used to diagnose RA and predict patient outcomes. METHODS: We collected 105 peripheral blood specimens from RA patients and 110 from healthy subjects. We then performed methylation analysis using the methylation-quantification of endonuclease-resistant DNA (MethyQESD) technique. Finally, we analyzed the data using appropriate nonparametric tests. RESULTS: Our study revealed a significant decrease in OAS2 gene methylation in RA patients (P<0.001). The ROC curve analysis further underscored the potential of OAS2 DNA methylation (AUC=0.718, P<0.001) to effectively distinguish RA patients from healthy individuals. Although OAS2 methylation was generally reduced in RA patients compared to controls, RA patients with a positive family history exhibited higher methylation than those without (P=0.018). Moreover, increased OAS2 methylation was associated with reduced CRP levels (r=-0.317, P<0.001). CONCLUSION: The methylation levels of OAS2 in peripheral blood cells show promise in distinguishing RA patients from healthy individuals. Furthermore, these levels show potential in identifying inflammation, a family history of RA, and other related disorders. © 2026 The Author(s). This is an open-access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.