Literature DB >> 17110254

Scanning electron microscopic evaluation of enamel surfaces exposed to 3 orthodontic bonding systems.

Morten Fjeld1, Bjørn Øgaard.   

Abstract

INTRODUCTION: This in-vitro study investigated the effects of conventional etching with a 35% phosphoric etching gel and priming/bonding with Transbond XT primer/adhesive (3M Unitek, Monrovia, Calif), conditioning with 10% polyacrylic acid and bonding with a resin-modified glass ionomer cement (Fuji ORTHO LC, GC Corporation, Tokyo Japan) or using a self-etching bonding system (Transbond Plus) and bonding with Transbond XT adhesive on the surface morphology of the enamel. The study was conducted at the Faculty of Dentistry, University of Oslo, in Norway, 2004.
METHODS: The enamel surfaces of extracted premolars where conditioned with 1 of the 3 systems and evaluated with environmental scanning electron microscope. Brackets were then bonded with 1 of 3 bonding agents and examined with a conventional scanning electron microscope.
RESULTS: The bonding systems induced different effects on the enamel structure. Phosphoric acid etching produced a rough, etched surface with the typical honeycomb pattern. Bonding brackets to such a surface resulted in thick resin tags relatively deep into the enamel. Less pronounced etching of the surface enamel was obtained by the self-etching primer system, and bonding resulted in smaller and fewer resin tags. The resin-modified glass ionomer bonded after conditioning the enamel with polyacrylic acid showed no resin tags.
CONCLUSIONS: Bonding systems with self-etching primers or conditioners with polyacrylic acid might offer potential benefits compared with conventional acid etching and priming because of fewer irreversible changes to the enamel surface.

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Year:  2006        PMID: 17110254     DOI: 10.1016/j.ajodo.2006.07.002

Source DB:  PubMed          Journal:  Am J Orthod Dentofacial Orthop        ISSN: 0889-5406            Impact factor:   2.650


  28 in total

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3.  Tooth color change due to different etching and debonding procedures.

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4.  Effect of nanotechnology in self-etch bonding systems on the shear bond strength of stainless steel orthodontic brackets.

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Journal:  Dental Press J Orthod       Date:  2017-02

5.  Repeated bonding of fixed retainer increases the risk of enamel fracture.

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6.  Evaluation of a Fluorescence-aided Identification Technique (FIT) to assist clean-up after orthodontic bracket debonding.

Authors:  Oliver Stadler; Christian Dettwiler; Christian Meller; Michel Dalstra; Carlalberta Verna; Thomas Connert
Journal:  Angle Orthod       Date:  2019-06-17       Impact factor: 2.079

7.  Identification of a protein-containing enamel matrix layer which bridges with the dentine-enamel junction of adult human teeth.

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Journal:  Arch Oral Biol       Date:  2012-05-19       Impact factor: 2.633

8.  Comparison of Self-Etch Primers with Conventional Acid Etching System on Orthodontic Brackets.

Authors:  Amit Zope; Yogita Zope-Khalekar; Shrikant S Chitko; Veerendra V Kerudi; Harshal Ashok Patil; Prasad Vasudeo Bonde; Pratik Jaltare; Siddhesh G Dolas
Journal:  J Clin Diagn Res       Date:  2016-12-01

9.  Effects of bonding materials on the mechanical properties of enamel around orthodontic brackets.

Authors:  Naohisa Kohda; Masahiro Iijima; William Brantley; Takeshi Muguruma; Toshihiro Yuasa; Susumu Nakagaki; Itaru Mizoguchi
Journal:  Angle Orthod       Date:  2011-08-09       Impact factor: 2.079

10.  Effect of orthodontic bonding steps on the initial adhesion of mutans streptococci in the presence of saliva.

Authors:  Il-Hyung Yang; Bum-Soon Lim; Ja-Ryeong Park; Jung-Yub Hyun; Sug-Joon Ahn
Journal:  Angle Orthod       Date:  2011-03       Impact factor: 2.079

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