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Updated: Jul 19, 2026

Trabecular Bone Microarchitecture Evaluation in an Osteoporosis Mouse Model
Published on: September 8, 2023
Accentuated ovariectomy-induced bone loss and altered osteogenesis in heterozygous N-cadherin null mice
Chung Fang Lai1, Su-Li Cheng, Gabriel Mbalaviele
1Division of Bone and Mineral Diseases, Department of Internal Medicine, Washington School of Medicine, St Louis, Missouri 63110, USA.
Unlabelled:
Ovariectomy-induced bone loss is accentuated in mice with germline Cdh2 haploinsufficiency, the result of a decreased osteoblastogenesis in the face of normal osteoclast number. Reduced N-cadherin abundance in these mice decreases cell-cell adhesion and alters signaling pathways important for osteoblast commitment and differentiation, thus providing in vivo evidence that N-cadherin-mediated cell-cell interactions are involved in homeostatic responses to increased bone remodeling.
Introduction:
We have shown that targeted expression of a dominant negative truncated form of N-cadherin (Cdh2) delays acquisition of peak bone mass in mice and retards osteoblast differentiation. We tested the role of this molecule in the skeletal homeostatic response to ovariectomy in mice with germline Cdh2 haploinsufficiency.
Materials And Methods:
Heterozygous Cdh2 null (Cdh2+/-) and wildtype mice were ovariectomized and followed up to 13 weeks by in vivo radiodensitometric and ex vivo histologic assessment of bone mass and turnover. Cells isolated from wildtype and Cdh2+/- mice were used to determine the alterations in bone cell function produced by partial loss of N-cadherin.
Results:
Bone mass was not significantly different between Cdh2+/- and wildtype littermates, but on ovariectomy, bone loss in Cdh2+/- mice was initially slower, but with time it became significantly greater than in wildtype mice. This accentuated bone loss was associated with lower osteoblast number and serum osteocalcin levels, with no differences in bone resorption. Although development of calcified nodules was faster in calvaria cells isolated from Cdh2+/- mice relative to Cdh2+/+ cells, bone marrow osteogenic precursors were lower in the former than in the latter genotypes. Cdh2 expression was downregulated with differentiation in wildtype calvaria cells, whereas cadherin-11 abundance remained unchanged. Furthermore, cell-cell adhesion (postconfluence) was decreased among heterozygous calvaria cells, as was cell proliferation (preconfluence), relative to wildtype cells. Finally, the abundance and cellular distribution of beta-catenin was minimally decreased in Cdh2+/- cells, whereas mitogen-activated protein kinase (MAPK) signaling was more active in Cdh2 insufficient cells.
Conclusions:
Cdh2 is involved in the homeostatic bone formation response to ovariectomy, presumably by regulating osteoprogenitors number and differentiation through stabilization of cell-cell adhesion and/or signaling modulation.
Insights
Germline N-cadherin (Cdh2) haploinsufficiency accentuates ovariectomy-induced bone loss in mice. Reduced N-cadherin impairs osteoblastogenesis and cell-cell adhesion, impacting bone remodeling responses.
Area of Science:
- Bone biology and skeletal remodeling.
- Cell adhesion and signaling in osteogenesis.
- Estrogen deficiency and bone loss models.
Background:
- N-cadherin (Cdh2) plays a crucial role in bone mass acquisition and osteoblast differentiation.
- Previous studies showed targeted N-cadherin expression delays peak bone mass and retards osteoblast differentiation.
- The role of N-cadherin in the skeletal response to ovariectomy was investigated.
Purpose of the Study:
- To investigate the role of N-cadherin in the homeostatic response to ovariectomy in mice with germline Cdh2 haploinsufficiency.
- To determine how reduced N-cadherin affects bone cell function and bone loss following ovariectomy.
Main Methods:
- Ovariectomy was performed on heterozygous Cdh2 null (Cdh2+/-) and wildtype mice.
- Bone mass and turnover were assessed using in vivo and ex vivo methods up to 13 weeks post-surgery.
- Bone cell function was analyzed in cells isolated from Cdh2+/- and wildtype mice.
Main Results:
- Ovariectomy led to significantly greater bone loss in Cdh2+/- mice compared to wildtype mice over time.
- This exacerbated bone loss was linked to reduced osteoblast numbers and serum osteocalcin, without affecting osteoclast numbers.
- Reduced N-cadherin decreased cell-cell adhesion and proliferation in calvaria cells, while increasing MAPK signaling.
Conclusions:
- N-cadherin is essential for the homeostatic bone formation response to ovariectomy.
- N-cadherin likely regulates osteoprogenitor number and differentiation via cell-cell adhesion and signaling modulation.
- These findings highlight N-cadherin's critical role in maintaining bone health during periods of increased bone remodeling.

