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.

Abstract

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.

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