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Published on: March 18, 2022
WNT16 Regulation of the Articular Chondrocyte Phenotype in Mice
Subburaman Mohan1,2,3, Shelia Pourteymoor1, Chandrasekhar Kesavan1,2
1Musculoskeletal Disease Center, VA Loma Linda Healthcare System, Loma Linda, CA 92357, USA.
Abstract:
The anabolic effects of WNT16 on osteoblasts are well established, however, little is known regarding the role of WNT16 in chondrocytes. In this study, we evaluated Wnt16 expression and its biological effects on mouse articular chondrocytes (ACs), since these cells are key to the development of osteoarthritis. While ACs derived from the long bone epiphysis of 7-day old C57BL/6J mice express multiple Wnts, Wnt5b and Wnt16 represent the two most highly expressed Wnts (expressed at several-fold higher levels than other Wnts). Treatment of serum-free AC cultures, with 100 ng/mL of recombinant human (rh) WNT16 for 24 h (hrs), increased proliferation (20%, p < 0.05) and expression levels of makers (Sox9 and Col2) of immature chondrocytes at both 24 h and 72 h, while Acan increased at 72 h. Expression of Mmp9, a marker of mature chondrocytes was decreased at 24 h. Additionally, WNT16 treatment regulated expression levels of Wnt ligands in a biphasic manner, inhibiting its expression at 24 h, while stimulating expression at 72 h. To determine whether WNT16 exerted anabolic effects on the AC phenotype, ex vivo cultures of tibial epiphyses were treated with rhWNT16 or vehicle for 9 days, and the articular cartilage phenotype was evaluated by safranin O cartilage staining and expression of articular cartilage marker genes. Both articular cartilage area and expression levels of AC markers were increased after rhWNT16 treatment. Our data suggest that Wnt16 expressed in ACs may play a role in regulating joint cartilage homeostasis via its direct effect, as well as through modulating the expression of other Wnt ligands.
Insights
Wnt16 promotes chondrocyte proliferation and maintains cartilage homeostasis. This study reveals Wnt16
Area of Science:
- Cell Biology
- Biochemistry
- Orthopedics
Background:
- WNT16's anabolic effects on osteoblasts are known, but its role in chondrocytes is unclear.
- Articular chondrocytes (ACs) are crucial in osteoarthritis (OA) development.
- Wnt16 is highly expressed in ACs from mouse long bone epiphyses.
Purpose of the Study:
- To investigate Wnt16 expression and its biological functions in mouse articular chondrocytes.
- To determine Wnt16's impact on chondrocyte phenotype and cartilage homeostasis.
- To explore Wnt16's potential role in regulating joint health.
Main Methods:
- Cultured mouse ACs and treated with recombinant human WNT16 (rhWNT16).
- Assessed chondrocyte proliferation, marker gene expression (Sox9, Col2, Acan, Mmp9), and Wnt ligand regulation.
- Evaluated ex vivo tibial epiphysis cultures treated with rhWNT16 for cartilage area and marker gene expression.
Main Results:
- rhWNT16 treatment increased AC proliferation and immature chondrocyte markers (Sox9, Col2) at 24h and 72h.
- Mature chondrocyte marker (Mmp9) expression decreased at 24h; Acan expression increased at 72h.
- Ex vivo cultures showed increased articular cartilage area and marker gene expression after rhWNT16 treatment.
Conclusions:
- Wnt16 plays a role in regulating joint cartilage homeostasis.
- Wnt16 directly affects chondrocytes and modulates other Wnt ligands.
- Targeting Wnt16 may offer therapeutic potential for cartilage health.
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