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Updated: Jul 15, 2025

An Adoptive Transfer Model of Rheumatoid Arthritis in Mice
Published on: June 6, 2025
Integrated bioinformatics analysis and experimental validation reveals hub genes of rheumatoid arthritis
Kun Luo1, Yumei Zhong2, Yanding Guo1
1Acupuncture and Tuina School, Chengdu University of Traditional Chinese Medicine, Chengdu, Sichuan 610075, P.R. China.
Abstract:
Rheumatoid arthritis (RA) is an autoimmune disease characterized by systemic inflammation, especially synovitis, leading to joint damage. It is important to explore potential biomarkers and therapeutic targets to improve the clinical treatment of RA. However, the potential underlying mechanisms of action of available treatments for RA have not yet been fully elucidated. The present study investigated the potential biomarkers of RA and identified specific targets for therapeutic intervention. A comprehensive analysis was performed using mRNA files downloaded from the Gene Expression Omnibus. Differences in gene expression were analyzed and compared between the normal and RA groups. In addition, Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses were performed on differentially expressed genes (DEGs). A protein-protein interaction network, Molecular Complex Detection and cytoHubba network were evaluated to identify hub genes. Finally, using an experimental RA rat model induced by Freund's complete adjuvant (FCA), the expression of potential biomarkers or target genes in RA were verified through reverse transcription-quantitative PCR. The results of the mRNA dataset processing revealed 195 DEGs in patients with RA when compared with the healthy controls. Moreover, 10 hub genes were identified in patients with RA and four candidate mRNAs were identified, as follows: Discs large homolog-associated protein 5 (DLGAP5), kinesin family member 20A (KIF20A), maternal embryonic leucine zipper kinase (MELK) and nuclear division cycle 80 (NDC80). Finally, the bioinformatics analysis results were validated by quantifying the expression of the DLGAP5, KIF20A, MELK and NDC80 genes in the FCA-induced experimental RA rat model. The findings of the present study suggested that the treatment of RA may be successful through the inhibition of DLGAP5, KIF20A, MELK and NDC80 expression. Therefore, the targeting of these genes may result in more effective treatments for patients with RA.
Insights
Researchers identified four key genes (DLGAP5, KIF20A, MELK, NDC80) as potential biomarkers for rheumatoid arthritis (RA). Inhibiting these genes may offer a new therapeutic strategy for treating RA effectively.
Area of Science:
- Immunology and Molecular Biology
- Biomarker Discovery for Autoimmune Diseases
Background:
- Rheumatoid arthritis (RA) is an autoimmune disease causing systemic inflammation and joint damage.
- Current RA treatments lack fully elucidated mechanisms, necessitating the search for novel therapeutic targets and biomarkers.
- Understanding the molecular mechanisms underlying RA is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate potential biomarkers for rheumatoid arthritis (RA).
- To identify specific gene targets for therapeutic intervention in RA.
- To elucidate the underlying molecular mechanisms of RA pathogenesis and treatment.
Main Methods:
- Comprehensive analysis of mRNA expression data from Gene Expression Omnibus (GEO) datasets.
- Differential gene expression analysis, Gene Ontology (GO), and Kyoto Encyclopedia of Genes and Genes (KEGG) pathway enrichment.
- Protein-protein interaction network analysis, Molecular Complex Detection, and cytoHubba to identify hub genes.
- Validation using a Freund's complete adjuvant (FCA)-induced RA rat model with reverse transcription-quantitative PCR (RT-qPCR).
Main Results:
- Identified 195 differentially expressed genes (DEGs) between RA patients and healthy controls.
- Discovered 10 hub genes and four candidate mRNAs: Discs large homolog-associated protein 5 (DLGAP5), kinesin family member 20A (KIF20A), maternal embryonic leucine zipper kinase (MELK), and nuclear division cycle 80 (NDC80).
- Validated the elevated expression of DLGAP5, KIF20A, MELK, and NDC80 in an experimental RA rat model.
Conclusions:
- The study identified DLGAP5, KIF20A, MELK, and NDC80 as potential therapeutic targets for rheumatoid arthritis.
- Inhibition of these identified genes may represent a promising strategy for effective RA treatment.
- These findings contribute to a better understanding of RA pathogenesis and offer new avenues for drug development.
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