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Updated: May 21, 2026

An Adoptive Transfer Model of Rheumatoid Arthritis in Mice
Published on: June 6, 2025
Celastrus treatment modulates antigen-induced gene expression in lymphoid cells of arthritic rats
H Yu1, S H Venkatesha, S Nanjundaiah
1Department of Microbiology and Immunology, Division of Rheumatology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Abstract:
Rheumatoid arthritis (RA) is a debilitating autoimmune disease of global prevalence and the disease process primarily targets the synovial joints. Despite improvements in the treatment of RA over the past decade, there still is a need for new therapeutic agents that are efficacious, less expensive, and free of severe adverse reactions. Celastrus has been used in China for centuries for the treatment of rheumatic diseases. Furthermore, we previously reported that ethanol extract of Celastrus aculeatus Merr. (Celastrus) attenuates adjuvant-induced arthritis (AA) in rats. However, the mechanisms underlying the anti-arthritic activity of Celastrus have not yet been fully defined. We reasoned that microarray analysis might offer useful insights into the pathways and molecules targeted by Celastrus. We compared the gene expression profiles of the draining lymph node cells (LNC) of Celastrus-treated (Tc) versus water-treated (Tw) rats, and each group with untreated arthritic rats (T(0)). LNC were restimulated with mycobacterial heat shock protein-65 (Bhsp65). We identified 104 differentially expressed genes (DEG) (8 upregulated, 96 downregulated) when comparing Tc with T(0) rats, in contrast to 28 (12 upregulated, 16 downregulated) when comparing Tw and T(0) rats. Further, 20 genes (6 upregulated, 14 downregulated) were shared by both Tw and Tc groups. Thus, Celastrus treatment (Tc) significantly downregulated a large proportion of genes compared to controls (Tw). The DEG were mainly associated with the processes of immune response, cell proliferation and apoptosis, and cell signaling. These results provide novel insights into the mechanism of Celastrus anti-arthritic activity, and unravel potential therapeutic targets for arthritis.
Insights
Celastrus aculeatus Merr. (Celastrus) shows potential in treating rheumatoid arthritis (RA) by significantly downregulating immune response and cell signaling pathways. This study used microarray analysis to identify key molecular targets for future arthritis therapies.
Area of Science:
- Immunology
- Pharmacology
- Genomics
Background:
- Rheumatoid arthritis (RA) is a widespread autoimmune disease affecting synovial joints.
- Current RA treatments require improvement for efficacy, cost, and adverse reactions.
- Traditional Chinese medicine, including Celastrus, has a history of treating rheumatic diseases.
Purpose of the Study:
- To elucidate the underlying mechanisms of Celastrus's anti-arthritic activity.
- To identify molecular pathways and gene targets affected by Celastrus treatment in arthritis.
Main Methods:
- Microarray analysis of gene expression profiles in draining lymph node cells (LNC) from rats.
- Comparison of Celastrus-treated (Tc) and water-treated (Tw) arthritic rats against untreated arthritic rats (T(0)).
- LNC restimulation with mycobacterial heat shock protein-65 (Bhsp65).
Main Results:
- Celastrus treatment (Tc) significantly downregulated 96 out of 104 differentially expressed genes (DEGs) compared to untreated arthritic rats (T(0)).
- Water-treated rats (Tw) showed fewer DEGs (16 downregulated, 12 upregulated) compared to T(0).
- DEGs were primarily associated with immune response, cell proliferation, apoptosis, and cell signaling pathways.
Conclusions:
- Celastrus significantly modulates gene expression related to immune response and inflammation in arthritis.
- The study provides novel insights into the anti-arthritic mechanisms of Celastrus.
- Identified DEGs represent potential therapeutic targets for developing new arthritis treatments.

