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Published on: March 14, 2017
Cyclooxygenase-2 suppresses the anabolic response to PTH infusion in mice
Shilpa Choudhary1, Ernesto Canalis2, Thomas Estus2
1New England Musculoskeletal Institute, University of Connecticut Health Center, Farmington, Connecticut, United States of America; Department of Medicine, University of Connecticut Health Center, Farmington, Connecticut, United States of America.
Abstract:
We previously reported that the ability of continuously elevated PTH to stimulate osteoblastic differentiation in bone marrow stromal cell cultures was abrogated by an osteoclastic factor secreted in response to cyclooxygenase-2 (Cox2)-produced prostaglandin E2. We now examine the impact of Cox2 (Ptgs2) knockout (KO) on the anabolic response to continuously elevated PTH in vivo. PTH (40 μg/kg/d) or vehicle was infused for 12 or 21 days in 3-mo-old male wild type (WT) and KO mice in the outbred CD-1 background. Changes in bone phenotype were assessed by bone mineral density (BMD), μCT and histomorphometry. PTH infusion for both 12 and 21 days increased femoral BMD in Cox2 KO mice and decreased BMD in WT mice. Femoral and vertebral trabecular bone volume fractions were increased in KO mice, but not in WT mice, by PTH infusion. In the femoral diaphysis, PTH infusion increased cortical area in Cox2 KO, but not WT, femurs. PTH infusion markedly increased trabecular bone formation rate in the femur, serum markers of bone formation, and expression of bone formation-related genes, growth factors, and Wnt target genes in KO mice relative to WT mice, and decreased gene expression of Wnt antagonists only in KO mice. In contrast to the differential effects of PTH on anabolic factors in WT and KO mice, PTH infusion increased serum markers of resorption, expression of resorption-related genes, and the percent bone surface covered by osteoclasts similarly in both WT and KO mice. We conclude that Cox2 inhibits the anabolic, but not the catabolic, effects of continuous PTH. These data suggest that the bone loss with continuously infused PTH in mice is due largely to suppression of bone formation and that this suppression is mediated by Cox2.
Insights
Cyclooxygenase-2 (Cox2) inhibits the bone-building effects of parathyroid hormone (PTH). Cox2 knockout mice showed increased bone formation with PTH, unlike wild-type mice, suggesting Cox2 mediates PTH-induced bone loss.
Area of Science:
- Bone Biology
- Endocrinology
- Pharmacology
Background:
- Continuously elevated parathyroid hormone (PTH) normally stimulates bone formation.
- However, this anabolic effect can be inhibited by factors related to cyclooxygenase-2 (Cox2).
Purpose of the Study:
- To investigate the role of Cox2 in mediating the effects of continuous PTH administration in vivo.
- To determine if Cox2 knockout (KO) influences the anabolic and catabolic responses to PTH.
Main Methods:
- Wild-type (WT) and Cox2 KO mice received daily infusions of PTH (40 μg/kg/d) or vehicle for 12 or 21 days.
- Bone phenotype was assessed using bone mineral density (BMD), micro-computed tomography (μCT), and histomorphometry.
Main Results:
- PTH infusion increased femoral BMD and trabecular bone volume in Cox2 KO mice, but decreased BMD in WT mice.
- PTH increased bone formation markers and related gene expression in KO mice, while suppressing Wnt antagonists.
- PTH increased bone resorption markers and osteoclast surface similarly in both WT and KO mice.
Conclusions:
- Cox2 significantly inhibits the anabolic effects of continuous PTH on bone.
- The bone loss observed with continuous PTH administration in mice is primarily due to suppressed bone formation, mediated by Cox2.
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