Surface Enamel Remineralization: Biomimetic Apatite Nanocrystals and Fluoride Ions Different Effects

Реминерализация поверхности эмали: биомиметические апатитные нанокристаллы и ионы фтора — различные эффекты
Claudia L. Bianchi‬, Lia Rimondini, Alberto Naldoni, Michele Iafisco, Norberto Roveri, Elisa Battistella, Ismaela Foltran, Elisabetta Foresti, Marco Lelli, Barbara Palazzo
2009-01-01

biomimetic apatite coatingcarbonate-hydroxyapatite nanocrystalsfluoride ionssurface enamel remineralization
A new method for altered enamel surface remineralization has been proposed . To this aim carbonate‐hydroxyapatite nanocrystals which mimic for composition, structure, nanodimensions, and morphology dentine apatite crystals and resemble closely natural apatite chemical‐physical properties have been used. The results underline the differences induced by the use of fluoride ions and hydroxyapatite nanocrystals in contrasting the mechanical abrasions and acid attacks to which tooth enamel is exposed. Fluoride ions generate a surface modification of the natural enamel apatite crystals increasing their crystallinity degree and relative mechanical and acid resistance. On the other hand, the remineralization produced by carbonate‐hydroxyapatite consists in a deposition of a new apatitic mineral into the eroded enamel surface scratches. A new biomimetic mineral coating, which progressively fills and shadows surface scratches, covers and safeguards the enamel structure by contrasting the acid and bacteria attacks.
1
Carbonate-hydroxyapatite nanocrystals that mimic dentine apatite composition, structure, size, and morphology can be used for altered enamel surface remineralization.
2
Fluoride and carbonate-hydroxyapatite produce different protective effects: fluoride enhances existing crystal properties, while nanocrystals create a new protective mineral layer.
3
Fluoride ions modify natural enamel apatite crystals by increasing crystallinity and improving mechanical and acid resistance.
4
Remineralization with carbonate-hydroxyapatite deposits a new apatitic mineral into eroded enamel surface scratches, rather than merely modifying existing crystals.
5
The biomimetic carbonate-hydroxyapatite coating progressively fills and covers surface scratches, protecting enamel against acid and bacterial attacks.

Tooth enamel surface undergoing remineralization treatments with carbonate-hydroxyapatite nanocrystals and fluoride ions

Comparative effects of biomimetic carbonate-hydroxyapatite nanocrystal coating versus fluoride ion treatment on enamel surface remineralization, including formation of new apatitic mineral deposits, increased crystallinity, and enhanced mechanical and acid resistance against abrasion and acid/bacterial attacks

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2009-01-01
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Claudia L. Bianchi‬
Lia Rimondini
Alberto Naldoni
Michele Iafisco
Norberto Roveri
Elisa Battistella
Ismaela Foltran
Elisabetta Foresti
Marco Lelli
Barbara Palazzo
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