INEB
INEB
TitleIn vivo performance of biodegradable calcium phosphate glass ceramics using the rabbit model: Histological and SEM observation
Publication TypeJournal Article
2006
AuthorsDias, AG, Lopes, MA, Santos, JD, Afonso, A, Tsuru, K, Osaka, A, Hayakawa, S, Takashima, S, Kurabayashi, Y
JournalJournal of Biomaterials ApplicationsJ. Biomater. Appl.
Volume20
Issue3
Pagination253 - 266
Date Published2006///
08853282 (ISSN)
Absorbable Implants, animal, Animals, article, Biodegradable glass ceramics, biodegradable implant, Biodegradation, bone prosthesis, Bone Substitutes, bone tissue, Calcium Compounds, calcium phosphate, Calcium phosphates, ceramics, chemistry, disease model, Disease Models, Animal, glass, Glass ceramics, histology, Imaging techniques, In vivo testing, materials testing, Optical microscopy, Pathology, rabbit, Rabbits, Scanning electron microscopy, tibia fracture, Tibial Fractures, Tissue, treatment outcome, X ray diffraction analysis
Two MK5 (45CaO-45P 2O 5-5MGO-5K 2O, in mol% and MT13 (45CaO-37P 2O 5-5MgO-13TiO 2, in mol%) glasses are prepared in the meta- and pyrophosphate regions and crystallized to obtain MK5B and MT13B, respectively. MK5B was obtained by controlled crystallization, and MT13B by powder sintering. As a result of these heat treatment processes, the crystalline phases precipitated in the glassy matrix are KCa(PO 3) 3, β-Ca(PO 3) 2, β-Ca 2P 2O 7 and Ca 4P 6O 19 phases for MK5B and CaTi 4(PO 4) 6, TiP 2O 7, α- and β-Ca 2P 2O 7 phases for MT13B. To assess the in vivo biological behavior of these glass ceramics, a mixed granulometry in the range 250-355 μm and 355-425 μm with a ratio of 1/1 was implanted for 2, 4, and 12 weeks in the tibiae of Japanese white rabbits. The results showed that the in vivo behavior was strongly affected by their solubility. All implanted materials, MK5B and MT13B, and β-tricalcium phosphate (β-TCP) as control material, showed signs of degradation in vivo. However, the levels of degradation were quite different throughout the implantation periods. The highest degradation was observed for MK5B glass ceramic and the lowest for MT13B with β-TCP in-between. All implanted materials allow for new bone formation in the bone defect area. At the longest implantation period (12 weeks), the MT13B and β-TCP materials were almost completely surrounded by new bone tissue, whereas MK5B showed some unfilled spaces. This behavior is discussed in terms of the high degradation observed in previous studies. © 2006 SAGE Publications.
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