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Two Techniques to Create Hypoparathyroid Mice: Parathyroidectomy Using GFP Glands and Diphtheria-Toxin-Mediated Parathyroid Ablation
Published on: March 14, 2017
Parathyroid hormone (PTH)-induced bone gain is blunted in SOST overexpressing and deficient mice
Ina Kramer1, Gabriela G Loots, Anne Studer
1Musculoskeletal Disease Area, Novartis Institutes for BioMedical Research, CH-4002 Basel, Switzerland.
Abstract:
Intermittent parathyroid hormone (PTH) treatment is a potent bone anabolic principle that suppresses expression of the bone formation inhibitor Sost. We addressed the relevance of Sost suppression for PTH-induced bone anabolism in vivo using mice with altered Sost gene dosage. Six-month-old Sost overexpressing and 2-month-old Sost deficient male mice and their wild-type littermates were subjected to daily injections of 100 microg/kg PTH(1-34) or vehicle for a 2-month period. A follow-up study was performed in Sost deficient mice using 40 and 80 microg/kg PTH(1-34). Animals were sacrificed 4 hours after the final PTH administration and Sost expression in long bone diaphyses was determined by qPCR. Bone changes were analyzed in vivo in the distal femur metaphysis by pQCT and ex vivo in the tibia and lumbar spine by DXA. Detailed ex vivo analyses of the femur were performed by pQCT, microCT, and histomorphometry. Overexpression of Sost resulted in osteopenia and Sost deletion in high bone mass. As shown before, PTH suppressed Sost in wild-type mice. PTH treatment induced substantial increases in bone mineral density, content, and cortical thickness and in aging wild-type mice also led to cancellous bone gain owing to amplified bone formation rates. PTH-induced bone gain was blunted at all doses and skeletal sites in Sost overexpressing and deficient mice owing to attenuated bone formation rates, whereas bone resorption was not different from that in PTH-treated wild-type controls. These data suggest that suppression of the bone formation inhibitor Sost by intermittent PTH treatment contributes to PTH bone anabolism.
Insights
Intermittent parathyroid hormone (PTH) treatment boosts bone growth by lowering Sclerostin (Sost), a bone formation inhibitor. This study shows Sost suppression is key to PTH
Area of Science:
- Bone biology
- Endocrinology
- Pharmacology
Background:
- Intermittent parathyroid hormone (PTH) therapy is a recognized bone anabolic treatment.
- Sclerostin (Sost) is a key inhibitor of bone formation.
- The role of Sost suppression in PTH's anabolic effects requires further elucidation.
Purpose of the Study:
- To investigate the necessity of Sost suppression for PTH-induced bone anabolism in vivo.
- To assess the impact of altered Sost gene dosage on PTH's bone-building efficacy.
Main Methods:
- Utilized Sost overexpressing and Sost deficient mice alongside wild-type littermates.
- Administered daily injections of PTH(1-34) or vehicle for 2 months.
- Analyzed bone changes using pQCT, DXA, microCT, and histomorphometry, with Sost expression quantified by qPCR.
Main Results:
- PTH treatment increased bone mineral density, content, and cortical thickness in wild-type mice.
- PTH-induced bone anabolism was significantly blunted in Sost overexpressing and Sost deficient mice.
- Bone formation rates were attenuated in Sost-altered mice, while bone resorption remained unaffected.
Conclusions:
- Suppression of the bone formation inhibitor Sost is a significant contributor to the anabolic effects of intermittent PTH treatment.
- Targeting Sost may enhance the efficacy of PTH-based therapies for bone diseases.
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