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Updated: Sep 19, 2025

Generation of Induced-pluripotent Stem Cells Using Fibroblast-like Synoviocytes Isolated from Joints of Rheumatoid Arthritis Patients
Published on: October 16, 2016
Unveiling the Therapeutic Potential: Targeting Fibroblast-like Synoviocytes in Rheumatoid Arthritis
Siran Yue1,2, Junyu Fan1,2,3, Duoli Xie1,2
1Department of Systems Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, China.
Abstract:
Rheumatoid arthritis (RA) is a systemic autoimmune disease characterized by chronic inflammation of the synovial membrane, leading to cartilage destruction and bone erosion. Due to the complex pathogenesis of RA and the limitations of current therapies, increasing research attention has been directed towards novel strategies targeting fibroblast-like synoviocytes (FLS), which are key cellular components of the hyperplastic pannus. Recent studies have highlighted the pivotal role of FLS in the initiation and progression of RA, driven by their tumour-like transformation and the secretion of pro-inflammatory mediators, including cytokines, chemokines and matrix metalloproteinases. The aggressive phenotype of RA-FLS is marked by excessive proliferation, resistance to apoptosis, and enhanced migratory and invasive capacities. Consequently, FLS-targeted therapies represent a promising avenue for the development of next-generation RA treatments. The efficacy of such strategies - particularly those aimed at modulating FLS signalling pathways - has been demonstrated in both preclinical and clinical settings, underscoring their therapeutic potential. This review provides an updated overview of the pathogenic mechanisms and functional roles of FLS in RA, with a focus on critical signalling pathways under investigation, including Janus kinase/signal transducer and activator of transcription (JAK/STAT), mitogen-activated protein kinase (MAPK), nuclear factor kappa B (NF-κB), Notch and interleukin-1 receptor-associated kinase 4 (IRAK4). In addition, we discuss the emerging understanding of FLS-subset-specific contributions to immunometabolism and explore how computational biology is shaping novel targeted therapeutic strategies. A deeper understanding of the molecular and functional heterogeneity of FLS may pave the way for more effective and precise therapeutic interventions in RA.
Insights
Fibroblast-like synoviocytes (FLS) drive rheumatoid arthritis (RA) progression through aggressive proliferation and inflammation. Targeting FLS and their signaling pathways offers a promising strategy for developing next-generation RA treatments.
Area of Science:
- Rheumatology
- Immunology
- Cell Biology
Background:
- Rheumatoid arthritis (RA) is a systemic autoimmune disease causing joint destruction.
- Current RA therapies have limitations, necessitating novel treatment strategies.
- Fibroblast-like synoviocytes (FLS) are key players in RA pathogenesis, exhibiting tumor-like properties.
Purpose of the Study:
- To review the pathogenic mechanisms and functional roles of FLS in RA.
- To highlight critical signaling pathways involving FLS in RA.
- To discuss emerging FLS-targeted therapeutic strategies and computational approaches.
Main Methods:
- Review of recent literature on FLS in RA.
- Analysis of FLS signaling pathways (JAK/STAT, MAPK, NF-κB, Notch, IRAK4).
- Exploration of FLS immunometabolism and computational biology applications.
Main Results:
- FLS contribute to RA initiation and progression via proliferation, apoptosis resistance, and invasion.
- Targeting FLS signaling pathways shows therapeutic potential in preclinical and clinical studies.
- FLS heterogeneity and immunometabolism are emerging areas for targeted RA therapies.
Conclusions:
- FLS are critical targets for novel rheumatoid arthritis treatments.
- Modulating FLS signaling pathways offers a promising therapeutic avenue.
- Understanding FLS heterogeneity can lead to more precise and effective RA interventions.
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