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.

Endocrinology
|June 23, 2017
PubMed

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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