Silicon substituted hydroxyapatite (Si-HA) is a new material with an enhanced bioactibity and it can be produced by chemical synthesis. Nevertheless, the coating of metallic substrates with a bioactive material is a common method nowadays to improve its integration with the receptor bone. Si-HA fil
Biological stability and osteoconductivity in rabbit tibia of pulsed laser deposited hydroxylapatite coatings
✍ Scribed by C. Peraire; J.L. Arias; D. Bernal; J. Pou; B. León; A. Arañó; W. Roth
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 382 KB
- Volume
- 77A
- Category
- Article
- ISSN
- 1549-3296
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✦ Synopsis
Abstract
A comparative study of the biological stability and the osteoconductivity of hydroxylapatite (HA) coatings produced by pulsed laser deposition (PLD) and plasma spraying (PS) was conducted. Three different implant groups were used: grit‐blasted titanium rods coated with HA–PLD (2‐μm‐thick), grit‐blasted titanium rods coated with HA–PS (50‐μm‐thick), and uncoated. Implantation took place into the proximal tibia of 12 mature New Zealand White rabbits for 24 weeks. Samples were evaluated using descriptive histology and histomorphometry. While HA–PS implants showed considerable instability and reduction in thickness after 24 weeks, but no statistical difference to the titanium group, the HA–PLD group showed a significant higher amount of bone apposition (Scheffé test, p < 0.05) than the other two groups, without signs of degradation or dissolution. Remarkably, after 6 months, the almost intact thin pulsed laser deposited coating could be observed by electron microscopy in extended areas. © 2006 Wiley Periodicals, Inc. J Biomed Mater Res, 2006
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