Effect of Double-layer Application on Dentin Bond Durability of One-step Self-etch Adhesives

Author:

Taschner M1,Kümmerling M2,Lohbauer U3,Breschi L4,Petschelt A5,Frankenberger R6

Affiliation:

1. Michael Taschner, DMD, assistant professor, University Hospital of Erlangen, Dental Clinic 1, Erlangen, Germany

2. Maria Kümmerling, post graduate student, University Hospital of Erlangen, Dental Clinic 1, Erlangen, Germany

3. Ulrich Lohbauer, MSc, PhD, FADM, Dental Clinic 1, Dental Materials Lab, Erlangen, Germany

4. Lorenzo Breschi, DDS, PhD, professor, Department of Biomedical and Neuromotor Sciences, DIBINEM, University of Bologna, Bologna, Italy

5. Anselm Petschelt, DMD, PhD, professor and chair, University Hospital of Erlangen, Dental Clinic 1, Erlangen, Germany

6. Roland Frankenberger, DMD, PhD, professor and chair, Department of Operative Dentistry and Endodontology, University of Marburg, Marburg, Germany

Abstract

SUMMARY Purpose The aim of this in vitro study was 1) to analyze the influence of a double-layer application technique of four one-step self-etch adhesive systems on dentin and 2) to determine its effect on the stability of the adhesive interfaces stored under different conditions. Materials and Methods Four different one-step self-etch adhesives were selected for the study (iBondSE, Clearfil S3 Bond, XenoV+, and Scotchbond Universal). Adhesives were applied according to manufacturers' instructions or with a double-layer application technique (without light curing of the first layer). After bonding, resin-dentin specimens were sectioned for microtensile bond strength testing in accordance with the nontrimming technique and divided into 3 subgroups of storage: a) 24 hours (immediate bond strength, T0), b) six months (T6) in artificial saliva at 37°C, or c) five hours in 10 % NaOCl at room temperature. After storage, specimens were stressed to failure. Fracture mode was assessed under a light microscope. Results At T0, iBond SE showed a significant increase in microtensile bond strength when the double-application technique was applied. All adhesive systems showed reduced bond strengths after six months of storage in artificial saliva and after storage in 10% NaOCl for five hours; however at T6, iBond SE, Clearfil S3 Bond, and XenoV+ showed significantly higher microtensile bond strength results for the double-application technique compared with the single-application technique. Scotchbond Universal showed no difference between single- or double-application, irrespective of the storage conditions. Conclusion The results of this study show that improvements in bond strength of one-step self-etch adhesives by using the double-application technique are adhesive dependent.

Publisher

Operative Dentistry

Subject

General Dentistry

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