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WNT16 overexpression partly protects against glucocorticoid-induced bone loss
Claes Ohlsson1, Karin H Nilsson1, Petra Henning1
1Centre for Bone and Arthritis Research at Institute of Medicine, Sahlgrenska Academy at University of Gothenburg , Gothenburg , Sweden.
Abstract:
Therapeutic use of glucocorticoids (GCs) is a major cause of secondary osteoporosis, but the molecular mechanisms responsible for the deleterious effects of GCs in bone are only partially understood. WNT16 is a crucial physiological regulator of bone mass and fracture susceptibility, and we hypothesize that disturbed WNT16 activity might be involved in the deleterious effects of GC in bone. Twelve-week-old female Obl-Wnt16 mice (WNT16 expression driven by the rat procollagen type I α1 promoter) and wild-type (WT) littermates were treated with prednisolone (7.6 mg·kg-1·day-1) or vehicle for 4 wk. We first observed that GC treatment decreased the Wnt16 mRNA levels in bone of female mice (-56.4 ± 6.1% compared with vehicle, P < 0.001). We next evaluated if WNT16 overexpression protects against GC-induced bone loss. Dual-energy X-ray absorptiometry analyses revealed that GC treatment decreased total body bone mineral density in WT mice (-3.9 ± 1.2%, P = 0.028) but not in Obl-Wnt16 mice (+1.3 ± 1.4%, nonsignificant). Microcomputed tomography analyses showed that GC treatment decreased trabecular bone volume fraction (BV/TV) of the femur in WT mice ( P = 0.019) but not in Obl-Wnt16 mice. Serum levels of the bone formation marker procollagen type I N-terminal propeptide were substantially reduced by GC treatment in WT mice (-50.3 ± 7.0%, P = 0.008) but not in Obl-Wnt16 mice (-3.8 ± 21.2%, nonsignificant). However, the cortical bone thickness in femur was reduced by GC treatment in both WT mice and Obl-Wnt16 mice. In conclusion, GC treatment decreases Wnt16 mRNA levels in bone and WNT16 overexpression partly protects against GC-induced bone loss.
Insights
Glucocorticoids (GCs) reduce Wnt16 levels in bone, contributing to bone loss. Overexpressing Wnt16 in mice partly prevented GC-induced osteoporosis, suggesting Wnt16 as a therapeutic target for GC-induced bone damage.
Area of Science:
- Bone Biology
- Endocrinology
- Pharmacology
Background:
- Glucocorticoids (GCs) are a primary cause of secondary osteoporosis.
- The precise molecular mechanisms underlying GC-induced bone damage remain incompletely understood.
- WNT16 is a key regulator of bone mass and fracture risk.
Purpose of the Study:
- To investigate the role of WNT16 in the bone-damaging effects of GCs.
- To determine if WNT16 overexpression can protect against GC-induced bone loss.
Main Methods:
- Prednisolone treatment in wild-type (WT) and WNT16-overexpressing (Obl-Wnt16) female mice.
- Analysis of Wnt16 mRNA levels in bone.
- Assessment of bone mineral density (BMD) using dual-energy X-ray absorptiometry (DXA).
- Evaluation of bone structure using microcomputed tomography (micro-CT).
- Measurement of serum bone formation markers.
Main Results:
- GC treatment significantly decreased Wnt16 mRNA levels in WT mice.
- GCs reduced total body BMD and trabecular bone volume in WT mice, but not in Obl-Wnt16 mice.
- GCs decreased serum procollagen type I N-terminal propeptide levels in WT mice, with no significant change in Obl-Wnt16 mice.
- Cortical bone thickness was reduced by GCs in both WT and Obl-Wnt16 mice.
Conclusions:
- GC treatment downregulates Wnt16 expression in bone.
- WNT16 overexpression provides partial protection against GC-induced bone loss.
- WNT16 may represent a potential therapeutic target for mitigating GC-induced osteoporosis.
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