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A challenge to the conventional wisdom that simultaneous etching and resin infiltration always occurs in self-etch adhesives

  • Ricardo M. Carvalho
    ,
  • Stefano Chersoni
    ,
  • Roland Frankenberger
    ,
  • David H. Pashley
    ,
  • Carlo Prati
    ,
  • Franklin R. Tay(corresponding author)
*Corresponding author for this work
  • Universidade de São Paulo
    ,
  • University of Bologna
    ,
  • Friedrich-Alexander University Erlangen-Nürnberg
    ,
  • Augusta University
    ,
  • The University of Hong Kong
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Abstract

This study provided morphological evidence that discrepancies between the depth of demineralisation and the depth of resin infiltration can occur in some mild self-etch adhesives. Sound dentine specimens derived from extracted human third molars were bonded with 5 one-step and 5 two-step self-etch adhesives. One millimeter thick slabs containing the resin-dentine interfaces were immersed in 50wt% aqueous ammoniacal silver nitrate and processed for TEM examination. A zone of partially etched but uninfiltrated dentine was identified beneath the hybrid layers in the milder versions of both one-step and two-step self-etch adhesives. This zone was characterised by the occurrence of silver deposits along the interfibrillar spaces of mineralised collagen fibrils. The silver infiltrated interfibrillar spaces were clearly identified from the one-step self-etch adhesives Xeno III, iBond, Brush&Bond and the experimental adhesive, and were thinner and only occasionally observed in the two-step self-etch adhesives Clearfil SE Bond and Clearfil Protect Bond. The more aggressive one-step and two-step adhesives that exhibit more abrupt transitions from completely demineralised to mineralised dentin were devoid of these silver-infiltrated interfibrillar spaces beneath the hybrid layers. Incomplete resin infiltration observed in some self-etch adhesives may be caused by the reduced etching potential of the acidic monomers toward the base of hybrid layers, or the presence of acidic but non-polymerisable hydrolytic adhesive components, creating potential sites for the degradation of the bonded created by these self-etch adhesives.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 1035-1042 (8 pages)

Journal (Volume, Issue Number)

Biomaterials (Volume 26, Issue 9)

Publication milestones

  • Published - 03/2005

Publication status

Published - 03/2005

ISSN

0142-9612

Publication IDs

  • Scopus: 4444321239
  • PubMed: 15369692

Publication metrics

Metrics

Scopus
citations
SciVal
FWCI
8.51
SciVal
Author count
6
SciVal
citations
218
SciVal
Paper percentile
98
SciVal
Top percentile
5
Fractional count
2
Fractional count
0.33
Fractional count
4
Fractional count
0.67
Fractional count
2
Fractional count
1

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Captures
133
Citation count
239

Funding Details

We thank Amy Wong, Electron Microscope Unit, The University of Hong Kong for technical assistance. This study was supported by grant 20003755/90800/08004/400/01, Faculty of Dentistry, the University of Hong Kong, by grants DE 014911 and DE 015306 from the National Institute of Dental and Craniofacial Research, and by grants 02/06682-1 from FAPESP, 300481/95-0, and 474226/03-4 from CNPq. The authors are grateful to Michelle Barnes and Zinnia Pang for secretarial support.