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Updated: Dec 24, 2025

Software-Assisted Quantitative Measurement of Osteoarthritic Subchondral Bone Thickness
Published on: March 18, 2022
Reactivation of NR4A1 Restrains Chondrocyte Inflammation and Ameliorates Osteoarthritis in Rats
Yan Xiong1, Jisheng Ran1, Langhai Xu1
1Department of Orthopedic Surgery, The Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, China.
Abstract:
Osteoarthritis (OA) is the most prevalent joint disease and uncontrolled inflammation is now recognized to play vital roles in OA development. Targeting the endogenous counterpart of inflammation may develop new therapeutic approaches in resolving inflammation persistence and treating inflammatory disease including OA. The orphan nuclear receptor 4A1 (NR4A1) is a key negative regulator of inflammatory responses but its role in osteoarthritis remains unclear. In the present study, we found that the NR4A1 expression was elevated in human osteoarthritis cartilage and in vitro OA model, which could be blocked by NF-κB signal inhibitor JSH23. The overexpression of NR4A1 inhibited, whereas knockdown of NR4A1 enhanced IL-1β induced COX-2, iNOS, MMP3, MMP9 and MMP13 expression, and luciferase reporter activity of NF-κB response element. Though NR4A1 was upregulated in inflammatory stimulation and creates a negative feedback loop, persistent inflammatory stimulation inhibited NR4A1 expression and activation. The expression of NR4A1 declined rapidly after an initial peak in conditions of chronic IL-1β stimulation, which could be partially restored by HDACs inhibitor SAHA. The phosphorylation of NR4A1 was increased in human osteoarthritis cartilage, and p38 inhibitor SB203580, JNK inhibitor SP600125 and ERK inhibitor FR180204 could significantly inhibited IL-1β induced NR4A1 phosphorylation. Reactivation of NR4A1 by its agonist cytosporone B could inhibit IL-1β induced chondrocyte inflammation and expression of COX-2, iNOS, MMP3, MMP9, and MMP13. In rat OA model, intra-articular injection of cytosporone B protected cartilage damage and ameliorated osteoarthritis. Thus, our study demonstrated that the NR4A1 is a key endogenous inhibitor of chondrocyte inflammation, which was relatively inactivated under chronic inflammatory stimulation through HDACs mediated transcriptional suppression and MAKP dependent phosphorylation in osteoarthritis. NR4A1 agonist cytosporone B could reactivate and restore the inhibitory regulatory ability of NR4A1, prevent excessive inflammation, and ameliorates osteoarthritis.
Insights
The orphan nuclear receptor 4A1 (NR4A1) inhibits osteoarthritis inflammation. Reactivating NR4A1 with cytosporone B reduces cartilage damage and inflammation in osteoarthritis models.
Area of Science:
- Biochemistry
- Molecular Biology
- Immunology
Background:
- Osteoarthritis (OA) is a prevalent joint disease driven by uncontrolled inflammation.
- The orphan nuclear receptor 4A1 (NR4A1) is a known negative regulator of inflammation, but its role in OA is unclear.
Purpose of the Study:
- To investigate the role of NR4A1 in osteoarthritis pathogenesis.
- To explore NR4A1 as a potential therapeutic target for OA.
Main Methods:
- Analysis of NR4A1 expression in human OA cartilage and in vitro OA models.
- Investigated the effects of NR4A1 overexpression and knockdown on inflammatory markers (COX-2, iNOS, MMPs) and NF-κB activity.
- Examined NR4A1 phosphorylation and the impact of various inhibitors (HDACs, MAPK pathway inhibitors).
- Tested the therapeutic potential of NR4A1 agonist cytosporone B in vitro and in a rat OA model.
Main Results:
- NR4A1 expression was elevated in OA cartilage and models, but downregulated under chronic inflammation.
- NR4A1 overexpression inhibited OA-related gene expression, while knockdown enhanced it.
- Chronic inflammation led to NR4A1 inactivation via HDACs and MAPK pathways.
- Cytosporone B reactivated NR4A1, suppressed chondrocyte inflammation, and protected against cartilage damage in vivo.
Conclusions:
- NR4A1 acts as a crucial endogenous inhibitor of chondrocyte inflammation in OA.
- NR4A1 inactivation under chronic inflammation contributes to OA progression.
- NR4A1 agonist cytosporone B demonstrates therapeutic potential for treating osteoarthritis by restoring NR4A1 function.

