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Updated: Jan 29, 2026

Synovial Fluid Analysis to Identify Osteoarthritis
Published on: October 20, 2022
Wnt16 attenuates osteoarthritis progression through a PCP/JNK-mTORC1-PTHrP cascade
Wenxue Tong1, Yelin Zeng2, Dick Ho Kiu Chow1
1Musculoskeletal Research Laboratory, Department of Orthopaedics and Traumatology, Innovative Orthopaedic Biomaterial and Drug Translational Research Laboratory, Li Ka Shing Institute of Health Sciences, The Chinese University of Hong Kong, Hong Kong, China.
Objectives:
Wnt16 is implicated in bone fracture and bone mass accrual both in animals and humans. However, its functional roles and molecular mechanism in chondrocyte differentiation and osteoarthritis (OA) pathophysiology remain largely undefined. In this study, we analysed its mechanistic association and functional relationship in OA progression in chondrocyte lineage.
Methods:
The role of Wnt16 during skeletal development was examined by Col2a1-Wnt16 transgenic mice and Wnt16 (Wnt16-cKO) mice. OA progression was assessed by micro-CT analysis and Osteoarthritis Research Society International score after anterior cruciate ligament transection (ACLT) surgery with Wnt16 manipulation by adenovirus intra-articular injection. The molecular mechanism was investigated in vitro using 3D chondrocyte pellet culture and biochemical analyses. Histological analysis was performed in mouse joints and human cartilage specimens.
Results:
Wnt16 overexpression in chondrocytes in mice significantly inhibited chondrocyte hypertrophy during skeletal development. Wnt16 deficiency exaggerated OA progression, whereas intra-articular injection of Ad-Wnt16 markedly attenuated ACLT-induced OA. Cellular and molecular analyses showed that, instead of β-catenin and calcium pathways, Wnt16 activated the planar cell polarity (PCP) and JNK pathway by interacting mainly with AP2b1, and to a lesser extend Ror2 and CD146, and subsequently induced PTHrP expression through phosphor-Raptor mTORC1 pathway.
Conclusions:
Our findings indicate that Wnt16 activates PCP/JNK and crosstalks with mTORC1-PTHrP pathway to inhibit chondrocyte hypertrophy. Our preclinical study suggests that Wnt16 may be a potential therapeutic target for OA treatment.
Insights
Wnt16 inhibits chondrocyte hypertrophy and osteoarthritis progression by activating the PCP/JNK pathway. This study suggests Wnt16 as a potential therapeutic target for osteoarthritis treatment.
Area of Science:
- Skeletal Biology
- Chondrocyte Differentiation
- Osteoarthritis Pathophysiology
Background:
- Wnt16 is known to influence bone mass and fracture healing.
- The specific roles of Wnt16 in chondrocyte differentiation and osteoarthritis (OA) remain unclear.
Purpose of the Study:
- To investigate the functional roles and molecular mechanisms of Wnt16 in chondrocyte differentiation.
- To elucidate the involvement of Wnt16 in osteoarthritis pathophysiology.
Main Methods:
- Utilized transgenic and knockout mouse models (Col2a1-Wnt16 and Wnt16-cKO) to study skeletal development.
- Assessed OA progression via micro-CT and OARSI scores following anterior cruciate ligament transection (ACLT) surgery with Wnt16 manipulation.
- Employed in vitro 3D chondrocyte cultures and biochemical analyses to explore molecular mechanisms. Histological analysis was performed on mouse joints and human cartilage.
Main Results:
- Wnt16 overexpression inhibited chondrocyte hypertrophy during skeletal development.
- Wnt16 deficiency exacerbated OA progression, while Ad-Wnt16 injection attenuated OA.
- Wnt16 activated the planar cell polarity (PCP) and JNK pathway, interacting with AP2b1, Ror2, and CD146, leading to PTHrP expression via the mTORC1 pathway, independent of beta-catenin and calcium signaling.
Conclusions:
- Wnt16 activates the PCP/JNK pathway and interacts with the mTORC1-PTHrP pathway to suppress chondrocyte hypertrophy.
- Preclinical findings highlight Wnt16 as a potential therapeutic target for osteoarthritis.
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