Literature DB >> 26543033

Systemic Treatment with Strontium Ranelate Does Not Influence the Healing of Femoral Mid-shaft Defects in Rats.

Jens Bay Vegger1, Annemarie Brüel2, Thomas Givskov Sørensen3, Jesper Skovhus Thomsen4.   

Abstract

Strontium ranelate (SrR) has both bone anabolic and anti-resorption properties and has therefore the potential to increase the healing of bone defects. The aim of the present study was to investigate the effect of systemic treatment with SrR during the healing of cortical bone defects in rats. In addition, the vertebral bodies were examined in order to elucidate the effect of short-term treatment with SrR on intact trabecular bone. Sixty 16-week-old female Wistar rats were randomized into four groups. A cylindrical defect was drilled through the anterior cortex of the mid-femoral diaphysis in both hind limbs. Two of the groups were treated with SrR (900 mg/kg b.w.) mixed into the food and two groups served as controls. The animals were euthanized after either 3 or 8 weeks of treatment. Healing of the defects was analyzed with µCT, mechanical testing, and stereology. Treatment with SrR resulted in increased thickness of the defects after 3 weeks of treatment, whereas no effect on bone volume fraction (BV/TV), mechanical properties (maximum strength and maximum stiffness), periosteal callus volume, or osteoclast-covered bone surfaces (Oc.S/BS) after either 3 or 8 weeks of treatment was found. Furthermore, SrR increased the bone material density (ρ) of the vertebral bodies, and tended to increase BV/TV after 8 weeks of treatment (p = 0.087). The mechanical properties of the vertebral bodies were not influenced by SrR treatment. In conclusion, 3 weeks of treatment with SrR increased the thickness of the healing mid-femoral cortical bone defects in rats, but did not influence BV/TV, mechanical properties, periosteal callus volume, or Oc.S/BS after either 3 or 8 weeks. Furthermore, SrR had no effect on the microstructure and mechanical properties of the vertebral bodies.

Entities:  

Keywords:  Biomechanics; Bone defects; Bone healing; MicroCT; Rats; Strontium ranelate

Mesh:

Substances:

Year:  2015        PMID: 26543033     DOI: 10.1007/s00223-015-0077-3

Source DB:  PubMed          Journal:  Calcif Tissue Int        ISSN: 0171-967X            Impact factor:   4.333


  4 in total

1.  Assessment of bone metabolism and biomechanical properties of the femur, following treatment with anastrozole and letrozole in an experimental model of menopause.

Authors:  Ioannis Boutas; Vasilios Pergialiotis; Nicolaos Salakos; Laskarina-Maria Korou; Athanasios Mitousoudis; Emmanouil Kalampokas; Efthimios Deligeoroglou; Odysseas Gregoriou; Despina N Perrea; George Creatsas; Stavros Kourkoulis
Journal:  Oncol Lett       Date:  2017-07-18       Impact factor: 2.967

2.  The Effect of Strontium Ranelate on Fracture Healing: An Animal Study.

Authors:  Ourania I Koukou; Lampros D Pappas; Pelagia Chloropoulou; Maria A Kouroupi; Konstantinos I Koukos; Georgia Karpathiou; Antonios A Galanos; Georgios I Drosos; Evaggelos Magnisalis; Alexandra N Giatromanolaki; Dionysios Alexandros Verettas
Journal:  Biomed Res Int       Date:  2020-11-24       Impact factor: 3.411

3.  Drill-Hole Bone Defects in Animal Models of Bone Healing: Protocol for a Systematic Review.

Authors:  Jesper Skovhus Thomsen; Annemarie Brüel; Frederik Duch Bromer; Mikkel Bo Brent
Journal:  JMIR Res Protoc       Date:  2022-07-18

4.  The effect of oral dabigatran etexilate on bone density, strength, and microstructure in healthy mice.

Authors:  Mikkel Bo Brent; Jesper Skovhus Thomsen; Annemarie Brüel
Journal:  Bone Rep       Date:  2017-12-18
  4 in total

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