Open AccessMaterials ScienceMedicine

B. Van Meerbeek, Kirsten L. Van Landuyt, J. de Munck, M. Hashimoto, M. Peumans, P. Lambrechts, Y. Yoshida, S. Inoue, Kazuomi Suzuki

2005.3.1DENTAL MATERIALS JOURNAL

DOI: 10.4012/dmj.24.1

tlooto Summary

Besides micro-mechanical interlocking through hybrid-layer formation, self-etch adhesives may benefit from additional chemical interaction between the functional monomer and residual hydroxyapatite, which may account for their lower bonding effectiveness.

Abstract

Besides micro-mechanical interlocking through hybrid-layer formation, self-etch adhesives may benefit from additional chemical interaction between the functional monomer and residual hydroxyapatite. One-step adhesives are commonly associated with lower bonding effectiveness, which must be attributed in part to the dissolution of hydrophilic and hydrophobic monomers in a relatively highly concentrated solvent. In this 'difficult' mixture, also water is essential as ionization medium to enable self-etching activity. Due to the high hydrophilicity, one-step self-etch adhesives have been reported to behave as semi-permeable membranes, allowing fluids to pass through and seriously jeopardizing bond durability. Recent research has also revealed that HEMA-free one-step adhesives are prone to phase-separation, which may also account for their lower bonding effectiveness. Employing an appropriate air-drying technique may, however, improve the bonding effectiveness of such phase-separating adhesives by getting rid of substantially more interfacial water than HEMA-containing adhesives, of which water might be more difficult to remove from.

Citation format

MEERBEEK, B. Van, et al. Technique-sensitivity of contemporary adhesives. DENTAL MATERIALS JOURNAL, 2005, 24 1: 1–13.