[Adhesive strength of a β-tricalcium phosphate-enriched bone adhesive]

Z Orthop Unfall. 2011 Jun;149(3):271-8. doi: 10.1055/s-0030-1270709. Epub 2011 May 12.
[Article in German]

Abstract

Background: This investigation describes experimental tests of the biomechanical features of a new resorbable bone adhesive based on methacrylate-terminated oligolactides enhanced with osteoconductive β-tricalcium phosphate.

Material and methods: 51 New Zealand white rabbits were randomised to an adhesive group (n = 29) and a control group (n = 22). An extra-articular bone cylinder was taken from the proximal tibia, two stripes of adhesive were applied and the cylinders were replanted. After 10 and 21 days, 3 and 12 months tibial specimens were harvested and the cylinder pull-out test was performed with a servo-hydraulic machine. Additionally the pull-out force was evaluated with the bone-equivalent Ebazell® after 5, 10 and 360 minutes in 14 specimens each.

Results: Average pull-out forces in the adhesive group were 28 N after 10 days (control: 57 N), 155 N after 21 days (216 N), 184 N after 3 months (197 N) and 205 N after 12 months (185 N). Investigations with Ebazell® showed almost identical pull-out forces after 5 min, 15 min and 360 min. Adhesive forces were as high as 125 N/cm (2) of adhesive surface and more than 1200 N/g of adhesive mass.

Conclusions: The adhesive investigated here has a very good primary adhesive power, compared to the literature data, achieved after only 5 minutes. Even in moist surroundings the adhesive capacity remains sufficient. The adhesive has to prove its resorptive properties in further investigations and in first line its medium-term and long-lasting biocompatibility. Furthermore, biomechanical features will have to be compared to those of conventional fixation techniques.

MeSH terms

  • Animals
  • Biocompatible Materials*
  • Biomechanical Phenomena*
  • Bone Cements*
  • Bone Transplantation*
  • Calcium Phosphates*
  • Cone-Beam Computed Tomography
  • Image Processing, Computer-Assisted
  • Imaging, Three-Dimensional
  • In Vitro Techniques
  • Osseointegration / physiology
  • Tensile Strength
  • Tibia / diagnostic imaging
  • Tibia / physiopathology*
  • Tibia / surgery*

Substances

  • Biocompatible Materials
  • Bone Cements
  • Calcium Phosphates
  • beta-tricalcium phosphate