Bonding of contemporary glass ionomer cements to different tooth substrates; microshear bond strength and scanning electron microscope study
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Date
2015
Authors
Journal Title
Journal ISSN
Volume Title
Type
Article
Publisher
Dental Investigations Society
Series Info
European Journal of Dentistry
9
9
Scientific Journal Rankings
Abstract
Objective: This study was conducted to evaluate the microshear bond strength (?SBS) and ultramorphological characterization of glass ionomer (GI) cements; conventional GI cement (Fuji IX, CGI), resin modified GI (Fuji II LC, RMGI) and nano-ionomer (Ketac N100, NI) to enamel, dentin and cementum substrates. Materials and Methods: Forty-five lower molars were sectioned above the cemento-enamel junction. The occlusal surfaces were ground flat to obtain enamel and dentin substrates, meanwhile the cervical one-third of the root portion were utilized to evaluate the bonding efficacy to cementum substrate. Each substrate received microcylinders from the three tested materials; which were applied according to manufacturer instructions. ?SBS was assessed using a universal testing machine. The data were analyzed using two-way analysis of variance (ANOVA) and Tukey's post-hoc test. Modes of failure were examined using stereomicroscope at 25 magnification. Interfacial analysis of the bonded specimens was carried out using environmental field emission scanning electron microscope. Results: Two-way ANOVA revealed that materials, substrates and their interaction had a statistically significant effect on the mean ?SBS values at P values; ?0.0001, 0.0108 and 0.0037 respectively. RMGI showed statistically significant the highest ?SBS values to all examined tooth substrates. CGI and RMGI show substrate independent bonding efficiency, meanwhile; NI showed higher ?SBS values to dentin and cementum compared to enamel. Conclusion: Despite technological development of GI materials, mainly the nano-particles use, better results have not been achieved for both investigations, when compared to RMGI, independent of tooth substrate. � 2015 Dental Investigations Society.
Description
Scopus
Keywords
October University for Modern Sciences and Arts, جامعة أكتوبر للعلوم الحديثة والآداب, University of Modern Sciences and Arts, MSA University, Cementum, Conventional glass ionomer, Dentin, Enamel, Microshear bond strength, Nano-ionomer, Resin-modified glass ionomer