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  1. Research Outputs

Microstructure and in vitro behaviour of 45S5 bioglass coatings deposited by high velocity suspension flame spraying (HVSFS)

Academic Article
Publication Date:
2011
Short description:
Microstructure and in vitro behaviour of 45S5 bioglass coatings deposited by high velocity suspension flame spraying (HVSFS) / L., Altomare; Bellucci, Devis; Bolelli, Giovanni; Bonferroni, Benedetta; Cannillo, Valeria; L., De Nardo; R., Gadow; A., Killinger; Lusvarghi, Luca; Sola, Antonella; N., Stiegler. - In: JOURNAL OF MATERIALS SCIENCE. MATERIALS IN MEDICINE. - ISSN 0957-4530. - STAMPA. - 22:5(2011), pp. 1303-1319. [10.1007/s10856-011-4307-6]
abstract:
The high-velocity suspension flame spraying technique (HVSFS) was employed in order to deposit 45S5 bioactive glass coatings onto titanium substrates, using a suspension of micron-sized glass powders dispersed in a water ? isopropanol mixture as feedstock. By modifying the process parameters, five coatings with different thick- ness and porosity were obtained. The coatings were entirely glassy but exhibited a through-thickness micro- structural gradient, as the deposition mechanisms of the glass droplets changed at every torch cycle because of the increase in the system temperature during spraying. After soaking in simulated body fluid, all of the coatings were soon covered by a layer of hydroxyapatite; furthermore, the coatings exhibited no cytotoxicity and human osteosar- coma cells could adhere and proliferate well onto their surfaces. HVSFS-deposited 45S5 bioglass coatings are therefore highly bioactive and have potentials as replace- ment of conventional hydroxyapatite in order to favour osseointegration of dental and prosthetic implants.
Iris type:
Articolo su rivista
Keywords:
45S5 bioglass; Bioactive glass coatings; Deposition mechanism; Different thickness; Glass Powder; High velocity; Human osteosarcoma cells; In-vitro; Isopropanol mixtures; Microstructural gradients; Osseointegration; Process parameters; Simulated body fluids; Suspension flame spraying; System temperature; Titanium substrates
List of contributors:
L., Altomare; Bellucci, Devis; Bolelli, Giovanni; Bonferroni, Benedetta; Cannillo, Valeria; L., De Nardo; R., Gadow; A., Killinger; Lusvarghi, Luca; Sola, Antonella; N., Stiegler
Authors of the University:
BELLUCCI Devis
BOLELLI Giovanni
CANNILLO Valeria
LUSVARGHI Luca
SOLA Antonella
Handle:
https://iris.unimore.it/handle/11380/658446
Published in:
JOURNAL OF MATERIALS SCIENCE. MATERIALS IN MEDICINE
Journal
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URL

http://link.springer.com/article/10.1007%2Fs10856-011-4307-6#page-1
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