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Updated: Mar 22, 2026

Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
sFRP4-dependent Wnt signal modulation is critical for bone remodeling during postnatal development and age-related
Ryuma Haraguchi1, Riko Kitazawa1,2, Kiyoshi Mori3
1Department of Molecular Pathology, Ehime University Graduate School of Medicine, Shitsukawa, Toon City, Ehime 791-0295, Japan.
Abstract:
sFRP4 is an extracellular Wnt antagonist that fine-tunes its signal activity by direct binding to Wnts. Bone fragility under oxidative stress by diabetes and aging is partly related to the suppression of the Wnt signal through upregulated sFRP4. Here, to explore the functions of sFRP4 as a balancer molecule in bone development and remodeling, we analyzed the sFRP4 knock-in mouse strain. X-gal and immunohistochemically stained signals in sFRP4-LacZ heterozygous mice were detectable in restricted areas, mostly in osteoblasts and osteoclasts, of the femoral diaphysis after neonatal and postnatal stages. Histological and μCT analyses showed increased trabecular bone mass with alteration of the Wnt signal and osteogenic activity in sFRP4 mutants; this augmented the effect of the buildup of trabecular bone during the ageing period. Our results indicate that sFRP4 plays a critical role in bone development and remodeling by regulating osteoblasts and osteoclasts, and that its functional loss prevents age-related bone loss in the trabecular bone area. These findings imply that sFRP4 functions as a key potential endogenous balancer of the Wnt signaling pathway by efficiently having direct influence on both bone formation and bone absorption during skeletal bone development and maintenance through remodeling.
Insights
Secreted frizzled-related protein 4 (sFRP4) loss prevents age-related bone loss by regulating osteoblasts and osteoclasts. This study reveals sFRP4
Area of Science:
- Bone biology
- Wnt signaling pathway
- Skeletal remodeling
Background:
- Secreted frizzled-related protein 4 (sFRP4) is an extracellular Wnt antagonist.
- Upregulated sFRP4 suppresses Wnt signaling, contributing to bone fragility in diabetes and aging.
Purpose of the Study:
- To investigate the role of sFRP4 as a balancer molecule in bone development and remodeling.
- To analyze the effects of sFRP4 deficiency on bone mass and Wnt signaling.
Main Methods:
- Analysis of an sFRP4 knock-in mouse strain (sFRP4-LacZ heterozygous mice).
- X-gal staining and immunohistochemistry to detect sFRP4 expression.
- Histological and micro-computed tomography (μCT) analyses to assess bone structure and mass.
Main Results:
- sFRP4 expression was detected in osteoblasts and osteoclasts in specific bone regions.
- sFRP4 mutants exhibited increased trabecular bone mass and altered Wnt signaling.
- Loss of sFRP4 function prevented age-related bone loss in the trabecular bone area.
Conclusions:
- sFRP4 plays a critical role in regulating osteoblasts and osteoclasts during bone development and remodeling.
- sFRP4 acts as an endogenous balancer of the Wnt signaling pathway, influencing bone formation and resorption.
- Targeting sFRP4 may offer a therapeutic strategy for preventing age-related bone loss.
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