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Updated: Apr 25, 2026

Establishment of a Surgically-induced Model in Mice to Investigate the Protective Role of Progranulin in Osteoarthritis
Published on: February 25, 2014
Progranulin protects against osteoarthritis through interacting with TNF-α and β-Catenin signalling
Yun-Peng Zhao1,2, Ben Liu1,2, Qing-Yun Tian1
1Department of Orthopaedic Surgery, Hospital for Joint Diseases, New York University, New York, New York, USA.
Objective:
Progranulin (PGRN) was previously isolated as an osteoarthritis (OA)-associated growth factor. Additionally, PGRN was found to play a therapeutic role in inflammatory arthritis mice models through antagonising tumour necrosis factor α (TNF-α). This study was aimed at investigating the role of PGRN in degradation of cartilage and progression of OA.
Methods:
Progression of OA was analysed in both spontaneous and surgically induced OA models in wild type and PGRN-deficient mice. Cartilage degradation and OA were evaluated using Safranin O staining, immunohistochemistry and ELISA. Additionally, mRNA expression of degenerative factors and catabolic markers known to be involved in cartilage degeneration in OA were analysed. Furthermore, the anabolic effects and underlying mechanisms of PGRN were investigated by in vitro experiments with primary chondrocytes.
Results:
Here, we found that deficiency of PGRN led to spontaneous OA-like phenotype in 'aged' mice. Additionally, PGRN-deficient mice exhibited exaggerated breakdown of cartilage structure and OA progression, while local delivery of recombinant PGRN protein attenuated degradation of cartilage matrix and protected against OA development in surgically induced OA models. Furthermore, PGRN activated extracellular signal-regulated kinases (ERK) 1/2 signalling and elevated the levels of anabolic biomarkers in human chondrocyte, and the protective function of PGRN was mediated mainly through TNF receptor 2. Additionally, PGRN suppressed inflammatory action of TNF-α and inhibited the activation of β-Catenin signalling in cartilage and chondrocytes.
Conclusions:
Collectively, this study provides new insight into the pathogenesis of OA, and also presents PGRN as a potential target for the treatment of joint degenerative diseases, including OA.
Insights
Progranulin (PGRN) deficiency accelerates osteoarthritis (OA) progression and cartilage degradation. PGRN administration protects against OA, highlighting its therapeutic potential for joint degenerative diseases.
Area of Science:
- Biochemistry
- Immunology
- Orthopedics
Background:
- Progranulin (PGRN) is an osteoarthritis (OA)-associated growth factor.
- PGRN exhibits therapeutic effects in inflammatory arthritis by antagonizing tumor necrosis factor-alpha (TNF-α).
Purpose of the Study:
- To investigate the role of PGRN in cartilage degradation.
- To elucidate the role of PGRN in osteoarthritis progression.
Main Methods:
- Analysis of OA progression in spontaneous and surgically induced OA mouse models (wild type and PGRN-deficient).
- Evaluation of cartilage degradation using Safranin O staining, immunohistochemistry, and ELISA.
- In vitro experiments with primary chondrocytes to assess PGRN's anabolic effects and mechanisms.
Main Results:
- PGRN deficiency led to spontaneous OA-like phenotypes and accelerated cartilage breakdown.
- Local delivery of recombinant PGRN attenuated cartilage degradation and protected against OA.
- PGRN activated ERK1/2 signaling, elevated anabolic biomarkers, and mediated protection via TNF receptor 2, while suppressing TNF-α and β-Catenin signaling.
Conclusions:
- PGRN plays a crucial role in preventing cartilage degradation and OA progression.
- PGRN presents a potential therapeutic target for joint degenerative diseases like OA.
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