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Improving Combination Osteoporosis Therapy in a Preclinical Model of Heightened Osteoanabolism
Yu Shao1, Selene Hernandez-Buquer2, Paul Childress3
1Department of Medical and Molecular Genetics, Indiana University School of Medicine, Indianapolis, Indiana 46202.
Abstract:
Combining anticatabolic agents with parathyroid hormone (PTH) to enhance bone mass has yielded mixed results in osteoporosis patients. Toward the goal of enhancing the efficacy of these regimens, we tested their utility in combination with loss of the transcription factor Nmp4 because disabling this gene amplifies PTH-induced increases in trabecular bone in mice by boosting osteoblast secretory activity. We addressed whether combining a sustained anabolic response with an anticatabolic results in superior bone acquisition compared with PTH monotherapy. Additionally, we inquired whether Nmp4 interferes with anticatabolic efficacy. Wild-type and Nmp4-/- mice were ovariectomized at 12 weeks of age, followed by therapy regimens, administered from 16 to 24 weeks, and included individually or combined PTH, alendronate (ALN), zoledronate (ZOL), and raloxifene (RAL). Anabolic therapeutic efficacy generally corresponded with PTH + RAL = PTH + ZOL > PTH + ALN = PTH > vehicle control. Loss of Nmp4 enhanced femoral trabecular bone increases under PTH + RAL and PTH + ZOL. RAL and ZOL promoted bone restoration, but unexpectedly, loss of Nmp4 boosted RAL-induced increases in femoral trabecular bone. The combination of PTH, RAL, and loss of Nmp4 significantly increased bone marrow osteoprogenitor number, but did not affect adipogenesis or osteoclastogenesis. RAL, but not ZOL, increased osteoprogenitors in both genotypes. Nmp4 status did not influence bone serum marker responses to treatments, but Nmp4-/- mice as a group showed elevated levels of the bone formation marker osteocalcin. We conclude that the heightened osteoanabolism of the Nmp4-/- skeleton enhances the effectiveness of diverse osteoporosis treatments, in part by increasing hyperanabolic osteoprogenitors. Nmp4 provides a promising target pathway for identifying barriers to pharmacologically induced bone formation.
Insights
Removing the Nmp4 gene enhances osteoporosis treatments like parathyroid hormone (PTH) and raloxifene (RAL) by boosting bone formation. This suggests Nmp4 is a target for improving bone density.
Area of Science:
- Bone Biology and Osteoporosis Research
- Pharmacology and Drug Development
- Genetics and Molecular Biology
Background:
- Combining anticatabolic agents with parathyroid hormone (PTH) for osteoporosis has shown inconsistent results.
- The transcription factor Nmp4 influences PTH-induced bone growth by affecting osteoblast activity.
Purpose of the Study:
- To investigate if combining sustained anabolic response with anticatabolic therapy improves bone acquisition compared to PTH monotherapy.
- To determine if Nmp4 interferes with the efficacy of anticatabolic agents in osteoporosis treatment.
Main Methods:
- Ovariectomized wild-type and Nmp4-/- mice received PTH, alendronate (ALN), zoledronate (ZOL), or raloxifene (RAL) individually or in combination.
- Therapeutic regimens were administered from 16 to 24 weeks of age.
- Bone mass, osteoprogenitor numbers, adipogenesis, osteoclastogenesis, and serum bone markers were analyzed.
Main Results:
- Therapeutic efficacy followed the order: PTH + RAL ≈ PTH + ZOL > PTH + ALN ≈ PTH > vehicle control.
- Loss of Nmp4 amplified bone increases with PTH + RAL and PTH + ZOL treatments.
- Raloxifene (RAL), but not zoledronate (ZOL), increased osteoprogenitors in both genotypes; Nmp4 deficiency boosted RAL-induced bone gains.
Conclusions:
- Heightened osteoanabolism in Nmp4-/- mice enhances osteoporosis treatment effectiveness, partly via increased osteoprogenitors.
- Nmp4 is a potential therapeutic target for overcoming barriers to pharmacologically induced bone formation.
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