Hybridization Efficiency of the Adhesive/Dentin Interface with Wet Bonding

Yong Wang, Paulette Spencer

Journal of Dental Research · 2003 · 374 citations · 14 references

TL;DR

Dentin bonding is believed to depend on adhesive infiltration of demineralized dentin, yet the extent to which resin monomers seal collagen fibrils under wet bonding conditions is unclear. The study aimed to compare the quality and molecular structure of adhesive/dentin interfaces produced by wet bonding with those formed under optimal hybrid conditions. Researchers prepared two adjacent dentin fractions from extracted molars: one infiltrated with Single Bond under optimum conditions and the other bonded wet, then stained and analyzed by micro‑Raman spectroscopy. Histomorphologic and spectroscopic analyses revealed that wet‑bonded adhesive/dentin interfaces are porous collagen webs primarily infiltrated by the hydrolytically unstable HEMA monomer.

Abstract

Although it is generally proposed that dentin bonding results from adhesive infiltration of superficially demineralized dentin, it is not clear how well the resin monomers seal the dentin collagen fibrils under wet bonding conditions. The aim of this study was to determine the quality and molecular structure of adhesive/dentin (a/d) interfaces formed with wet bonding as compared with adhesive-infiltrated demineralized dentin (AIDD) produced under controlled conditions (optimum hybrid). From each extracted, unerupted human 3rd molar, one fraction was demineralized, dehydrated, and infiltrated with Single Bond (SB) adhesive under optimum conditions; the remaining, adjacent fraction was treated with SB by wet bonding. AIDD and a/d interface sections were stained with Goldner’s trichrome; corresponding sections were analyzed with micro-Raman spectroscopy. The histomorphologic and spectroscopic results suggest that, under wet bonding, the a/d interface is a porous collagen web infiltrated primarily by the hydrolytically unstable HEMA.

References

14