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Updated: Jul 4, 2025

An Adoptive Transfer Model of Rheumatoid Arthritis in Mice
Published on: June 6, 2025
STA-21 regulates Th-17/Treg balance and synovial fibroblasts functions in rheumatoid arthritis
Talar Ahmad Merza Mohammad1, Badraldin Kareem Hamad2, Avin Mohammad Arif Maroof3
1Department of Clinical Pharmacy, College of Pharmacy, Hawler Medical University, Kurdistan Region-Erbil, Iraq.
Abstract:
JAK/STAT signaling pathway plays a significant role in cytokines and growth factors signaling involved in the pathogenesis of rheumatoid arthritis (RA). STAT3 is a major downstream signaling mediator of important pro-inflammatory cytokines involved in Th-17 cell differentiation playing a significant role in regulating Th-17/ Treg balance and the development of autoimmune diseases, especially RA. Studies also have reported the role of the STAT3 pathway in inflammatory and destructive functions of synovial fibroblasts (SFs) in RA. STA-21 is a small molecule inhibitor that can inhibit STAT3 activation impairing the expression of STAT3 target genes. In this study, we tested whether a STAT3 inhibitor, STA-21, can alter Th-17/Treg balance and SF functions in RA. Peripheral blood mononuclear cells (PBMC) and SFs were isolated from 34 RA patients undergoing orthopedic surgery and 15 healthy controls to investigate in vitro effects of STA-21. The main assays were MTT assay, PI staining, reverse transcription-PCR (RT-PCR), flow cytometric analysis, and ELISA. Results showed that STA-21 reduced the proportion of Th-17 cells and the expression of STAT3 target genes, RORγt, IL-21, and IL-23R involved in Th-17 cells differentiation while it conversely increased the proportion of Treg cells, which theoretically may result in suppression of inflammation. We found that STAT3 activation and its target gene expression increased in RA-SFs. In addition, results showed that STA-21 can reduce the expression of STAT3 target genes related to cell proliferation, apoptosis, and inflammation leading to a decrease in proliferation and conversely increase in apoptosis of RA-SFs. Overall, our findings provide evidence that STA-21 can reduce inflammatory immune processes conducted by T cells and RA-SFs in RA, suggesting that this compound is a suitable option for clinical studies in RA.
Insights
STA-21, a STAT3 inhibitor, reduces inflammatory Th-17 cells and synovial fibroblast activity in rheumatoid arthritis (RA). This compound also promotes regulatory T (Treg) cells, suggesting potential for RA treatment.
Area of Science:
- Immunology
- Rheumatology
- Pharmacology
Background:
- The JAK/STAT signaling pathway is crucial in rheumatoid arthritis (RA) pathogenesis.
- STAT3 mediates pro-inflammatory cytokines, impacting Th-17 cell differentiation and the Th-17/Treg balance.
- STAT3 pathway activation is implicated in the inflammatory and destructive functions of synovial fibroblasts (SFs) in RA.
Purpose of the Study:
- To investigate the effects of STA-21, a STAT3 inhibitor, on Th-17/Treg balance and SF functions in RA.
- To evaluate STA-21's potential as a therapeutic agent for RA by examining its impact on key inflammatory pathways.
Main Methods:
- Peripheral blood mononuclear cells (PBMC) and SFs were isolated from RA patients and healthy controls.
- In vitro assays included MTT, PI staining, RT-PCR, flow cytometry, and ELISA to assess STA-21's effects.
- The study analyzed changes in Th-17 and Treg cell proportions and STAT3 target gene expression.
Main Results:
- STA-21 decreased the proportion of Th-17 cells and suppressed STAT3 target genes (RORγt, IL-21, IL-23R) involved in their differentiation.
- STA-21 increased the proportion of Treg cells, potentially suppressing inflammation.
- STA-21 reduced STAT3 target gene expression in RA-SFs related to proliferation and inflammation, while increasing apoptosis.
Conclusions:
- STA-21 effectively modulates Th-17/Treg balance, favoring an anti-inflammatory state.
- STA-21 inhibits inflammatory and proliferative functions of RA-SFs.
- STA-21 demonstrates potential as a therapeutic candidate for clinical studies in RA.
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