Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W.
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Summary
The results support the concept that the apatite phase on the surface of glass-ceramic A-W is formed by a chemical reaction of the glass- Aceramic with the Ca2+, HPO4(2-), and OH- ions in the body fluid.
- Type
- article
- Published
- 1990-06-01
- Cited by
- 3,805
- References
- 16
- OpenAlex
- https://openalex.org/W2099108227
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37214760
Keywords
Simulated body fluid, Apatite, Ceramic, Materials science, Glass-ceramic
References
- Strength of bonding between A-W glass-ceramic and the surface of bone cortex.
- THE CHEMICAL DYNAMICS OF BONE MINERAL
- Apatite-wollastonite containing glass ceramic-fibrin mixture as a bone defect filler.
- Bone bonding behavior of three kinds of apatite containing glass ceramics.
- Fatigue and life-time of bioactive glass-ceramic A-W containing apatite and wollastonite
- Formation of a high-strength bioactive glass-ceramic in the system MgO-CaO-SiO2-P2O5
- Mechanical properties of a new type of apatite-containing glass-ceramic for prosthetic application
- Surface-active biomaterials.
- Difference of bond bonding behavior among surface active glasses and sintered apatite.
- SEM-EPMA observation of three types of apatite-containing glass-ceramics implanted in bone: the variance of a Ca-P-rich layer.
- Auger Spectroscopic Analysis of Bioglass Corrosion Films
- A new glass-ceramic for bone replacement: evaluation of its bonding to bone tissue.
- Multilayer Corrosion Films on Bioglass Surfaces
- Ca,P-rich layer formed on high-strength bioactive glass-ceramic A-W.
- Compositional dependence of the formation of calcium phosphate films on bioglass.
- Characterization of in vitro corroded surfaces of bioactive glasses (P2O5CaOSiO2) with infrared reflection spectroscopy
- Chemical anatomy, physiology and pathology of extracellular fluid
Cited by
- A tribological and biomimetic study of potential bone joint repair materials
- Bioactive bone cement: the effect of amounts of glass powder and histologic changes with time.
- Bone-bonding behavior under load-bearing conditions of an alumina ceramic implant incorporating beads coated with glass-ceramic containing apatite and wollastonite.
- Thin films of calcium phosphate on titanium dental screws: sol-gel route versus plasma spray
- Aligned bioactive mesoporous silica coatings for implants
- Influence of sol and stage of spinnability on in vitro bioactivity and dissolution of sol-gel-derived SiO2 fibers.
- Fabrication, characterization and cell cultures on a novel chitosan scaffold
- Sol-Gel Derived Functionally Graded TiO2/HAP Films on Ti-6Al-4V Implants
- In vitro bioactivity of silicon-substituted hydroxyapatites.
- Apatite formation on dental ceramics modified by a bioactive glass.
- Applicazione della tecnologia sol-gel: sintesi di un materiale ibrido biocompatibile e studio delle proprietà spettroscopiche ed elettrochimiche del citocromo c incapsulato in un bio sol-gel
- Structure and properties of the precipitates formed from condensed solutions of the revised simulated body fluid.
- Processing and properties of porous poly(L-lactide)/bioactive glass composites.
- Potential of biomimetic surfaces to promote in vitro osteoblast-like cell differentiation.
- Nucleation and growth of calcium phosphate on amine-, carboxyl- and hydroxyl-silane self-assembled monolayers.
- Effect of filler type on the mechanical properties of self-reinforced polylactide–calcium phosphate composites
- Resveratrol Loaded Lipid Nanoparticles for Brain Targeted Delivery
- Spectral characterization of apatite formation on poly(2-hydroxyethylmethacrylate)-TiO2 nanocomposite film prepared by sol-gel process.
- Synthesis of Osteoconductive Organic—Inorganic Nanohybrids through Modification of Chitin with Alkoxysilane and Calcium Chloride
- A novel route to fabricate the biomedical material: structure strategy and the biologically active ions controllable release.
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