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Comparative Study on Adhesive Performance of Functional Monomers

Journal of Dental Research · 2004 · Vol. 83(6) · pp. 454–458
Yasuhiro YoshidaK. NagakaneR. FukudaY. NakayamaM. OkazakiHideaki ShintaniSatoshi InoueYoh‐ichi TagawaKazuomi SuzukiJan De MunckBart Van Meerbeek

Abstract

Mild self-etch adhesives demineralize dentin only partially, leaving hydroxyapatite around collagen within a submicron hybrid layer. We hypothesized that this residual hydroxyapatite may serve as a receptor for chemical interaction with the functional monomer and, subsequently, contribute to adhesive performance in addition to micro-mechanical hybridization. We therefore chemically characterized the adhesive interaction of 3 functional monomers with synthetic hydroxyapatite, using x-ray photoelectron spectroscopy and atomic absorption spectrophotometry. We further characterized their interaction with dentin ultra-morphologically, using transmission electron microscopy. The monomer 10-methacryloxydecyl dihydrogen phosphate (10-MDP) readily adhered to hydroxyapatite. This bond appeared very stable, as confirmed by the low dissolution rate of its calcium salt in water. The bonding potential of 4-methacryloxyethyl trimellitic acid (4-MET) was substantially lower. The monomer 2-methacryloxyethyl phenyl hydrogen phosphate (phenyl-P) and its bond to hydroxyapatite did not appear to be hydrolytically stable. Besides self-etching dentin, specific functional monomers have additional chemical bonding efficacy that is expected to contribute to their adhesive potential to tooth tissue.

Dental materials and restorationsEndodontics and Root Canal TreatmentsDental Implant Techniques and OutcomesMonomerAdhesiveDentinDissolutionChemistryX-ray photoelectron spectroscopyHydrogen bondPolymer chemistryNuclear chemistryMaterials science

MeSH terms

AdhesivenessDental BondingDentinElectron Probe MicroanalysisHumansHydrolysisMaterials TestingMethacrylatesMicroscopy, ElectronOrganophosphorus CompoundsSpectrophotometry, AtomicSurface PropertiesTricarboxylic AcidsDentin-Bonding AgentsDurapatite

Funding

  • Uehara Memorial Foundation
Citations
1,165
FWCI
26.51
field-weighted impact
References
16
Percentile
100%
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Citations per year
References
High Resolution XPS of Organic Polymers
Analytica Chimica Acta · 1992 · 1,690 citations
Nanoleakage:Leakage Within the Hybrid Layer
Journal of Dental Research · 1994 · 534 citations
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