Skeletal effects of a gastrin receptor antagonist in H+/K+ATPase beta subunit KO mice

Author:

Aasarød Kristin M1,Ramezanzadehkoldeh Masoud2,Shabestari Maziar3,Mosti Mats P1,Stunes Astrid K1,Reseland Janne E3,Beisvag Vidar1,Eriksen Erik Fink4,Sandvik Arne K156,Erben Reinhold G7,Schüler Christiane7,Boyce Malcolm8,Skallerud Bjørn H2,Syversen Unni19,Fossmark Reidar15

Affiliation:

1. 1Department of Cancer Research and Molecular MedicineNTNU, Trondheim, Norway

2. 2Department of Structural EngineeringNTNU, Trondheim, Norway

3. 3Department of BiomaterialsInstitute of Clinical Dentistry, University of Oslo, Oslo, Norway

4. 4Institute of Clinical MedicineUniversity of Oslo, Oslo, Norway

5. 5Department of Gastroenterology and HepatologySt. Olav’s Hospital, Trondheim, Norway

6. 6Centre of Molecular Inflammation ResearchNTNU, Trondheim, Norway

7. 7Department of Biomedical SciencesUniversity of Veterinary Medicine Vienna, Vienna, Austria

8. 8Hammersmith Medicines ResearchLondon, UK

9. 9Department of EndocrinologySt. Olav’s Hospital, Trondheim, Norway

Abstract

Epidemiological studies suggest an increased fracture risk in patients taking proton pump inhibitors (PPIs) for long term. The underlying mechanism, however, has been disputed. By binding to the gastric proton pump, PPIs inhibit gastric acid secretion. We have previously shown that proton pump (H+/K+ATPase beta subunit) KO mice exhibit reduced bone mineral density (BMD) and inferior bone strength compared with WT mice. Patients using PPIs as well as these KO mice exhibit gastric hypoacidity, and subsequently increased serum concentrations of the hormone gastrin. In this study, we wanted to examine whether inhibition of the gastrin/CCK2 receptor influences bone quality in these mice. KO and WT mice were given either the gastrin/CCK2 receptor antagonist netazepide dissolved in polyethylene glycol (PEG) or only PEG for 1year. We found significantly lower bone mineral content and BMD, as well as inferior bone microarchitecture in KO mice compared with WT. Biomechanical properties by three-point bending test also proved inferior in KO mice. KO mice receiving netazepide exhibited significantly higher cortical thickness, cortical area fraction, trabecular thickness and trabecular BMD by micro-CT compared with the control group. Three-point bending test also showed higher Young’s modulus of elasticity in the netazepide KO group compared with control mice. In conclusion, we observed that the gastrin receptor antagonist netazepide slightly improved bone quality in this mouse model, suggesting that hypergastrinemia may contribute to deteriorated bone quality during acid inhibition.

Publisher

Bioscientifica

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism

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