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Micromorphology of resin–dentin interfaces using one-bottle etch&rinse and self-etching adhesive systems on laser-treated dentin surfaces: A confocal laser scanning microscope analysis

✍ Scribed by Marcelo Tavares de Oliveira; Cesar Augusto Galvão Arrais; Ana Cecília Aranha; Carlos de Paula Eduardo; Katsuya Miyake; Frederick Allen Rueggeberg; Marcelo Giannini


Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
183 KB
Volume
42
Category
Article
ISSN
0196-8092

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✦ Synopsis


Abstract

Background and Objectives

This study evaluated the hybrid layer (HL) morphology created by three adhesive systems (AS) on dentin surfaces treated with Er:YAG laser using two irradiation parameters.

Study Design

Occlusal flat dentin surfaces of 36 human third molars were assigned into nine groups (n = 4) according to the following ASs: one bottle etch&rinse Single Bond Plus (3M ESPE), two‐step Clearfil Protect Bond (Kuraray), and all‐in‐one S^3^ Bond (Kuraray) self‐etching, which were labeled with rhodamine B or fluorescein isothiocyanate–dextran and were applied to dentin surfaces that were irradiated with Er:YAG laser at either 120 (38.7 J/cm^2^) or 200 mJ/pulse (64.5 J/cm^2^), or were applied to untreated dentin surfaces (control group). The ASs were light‐activated following MI and the bonded surfaces were restored with resin composite Z250 (3M ESPE). After 24 hours of storage in vegetable oil, the restored teeth were vertically, serially sectioned into 1‐mm thick slabs, which had the adhesive interfaces analyzed with confocal laser microscope (CLSM—LSM 510 Meta). CLSM images were recorded in the fluorescent mode from three different regions along each bonded interface.

Results

Non‐uniform HL was created on laser‐irradiated dentin surfaces regardless of laser irradiation protocol for all AS, while regular and uniform HL was observed in the control groups. “Stretch mark”‐like red lines were found within the HL as a result of resin infiltration into dentin microfissures, which were predominantly observed in 200 mJ/pulse groups regardless of AS. Poor resin infiltration into peritubular dentin was observed in most regions of adhesive interfaces created by all ASs on laser‐irradiated dentin, resulting in thin resin tags with neither funnel‐shaped morphology nor lateral resin projections.

Conclusion

Laser irradiation of dentin surfaces at 120 or 200 mJ/pulse resulted in morphological changes in HL and resin tags for all ASs evaluated in the study. Lasers Surg. Med. 42:662–670, 2010. © 2010 Wiley‐Liss, Inc.


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Effect of Er:YAG laser on bond strength
✍ Renata P. Ramos; Daniela T. Chimello; Michelle A. Chinelatti; Tomio Nonaka; Jesu 📂 Article 📅 2002 🏛 John Wiley and Sons 🌐 English ⚖ 76 KB 👁 1 views

## Abstract ## Background and Objectives To assess the effect of erbium:yttrium aluminium garnet (Er:YAG) laser on bond strength to dentin of a self‐etching primer (Clearfil Liner Bond 2V, CL2V) and two single‐bottle agents (Excite, EX; Gluma One Bond, GB). ## Study Design/Materials and Methods