Morphological Aspects of the Resin-Dentin Interdiffusion Zone with Different Dentin Adhesive Systems
- 1 August 1992
- journal article
- research article
- Published by SAGE Publications in Journal of Dental Research
- Vol. 71 (8) , 1530-1540
- https://doi.org/10.1177/00220345920710081301
Abstract
Cross-sections of resin-dentin interfaces were etched with an argon-ion beam to make their substructure detectable by scanning electron microscopy. The dentin adhesive systems were categorized morphologically into three groups, and an attempt was made to clarify their adhesive mechanism. The first group of products removed the smear layer. The argon-ion bombardment clearly disclosed a hybrid or resin-impregnated dentin layer. It is hypothesized that conditioning with acidic or chelating agents demineralized the dentin surface-layer to a certain depth, leaving behind a collagen-rich mesh-work. Hydrophilic monomers are then believed to alter this collagen-fiber arrangement in a way that facilitates penetration of the adhesive resin, resulting in a mechanical, intermingled link between collagen and the adhesive resin. The second group preserved the smear layer. In this case, the dentinal tubules were obliterated with globular particles at their orifices and remained patent underneath these smear plugs. This type of adhesive system aims at the incorporation of the smear layer into the hydrophilic monomers, which have an affinity for the organic and/or inorganic components of the underlying dentin. Finally, a third, small group only partly dissolved the smear layer, creating a thin resin-impregnated dentin layer and a resin-impregnated smear plug. This study clearly showed that the application of recent adhesive systems induced structural changes in the dentin surface morphology, creating a retentive interface, called the interdiffusion zone, between the deep, untouched dentin layers and the composite filling material. This resin-dentin interdiffusion zone offers bonding sites for copolymerization with the resin composite and, concurrently, might have protective potential for the pulp tissues.Keywords
This publication has 21 references indexed in Scilit:
- Hybrid Layer as a Dentin‐Bonding MechanismJournal of Esthetic and Restorative Dentistry, 1991
- Dentin Bonding Systems: A Review of Current Products and TechniquesThe Journal of the American Dental Association, 1991
- Principles and Mechanisms of Bonding with Dentin Adhesive MaterialsJournal of Esthetic and Restorative Dentistry, 1991
- Surface reactions of adhesives on dentinDental Materials, 1990
- Time dependence of 2.5% nitric acid solution as an etchant on human dentin and enamelDental Materials, 1990
- A Scanning Electron Microscopic Investigation of Bonding of Methacryloyloxyalkyl Hydrogen Maleate to Etched DentinJournal of Dental Research, 1990
- The Impact of Composite Structure on Its Elastic ResponseJournal of Dental Research, 1986
- The promotion of adhesion by the infiltration of monomers into tooth substratesJournal of Biomedical Materials Research, 1982
- Scanning electron microscopic investigation of human dentinal tubulesArchives of Oral Biology, 1976
- A study of the etching of dental tissues with argon ion beamsJournal of Ultrastructure Research, 1962