Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion

Statement of the problem: The effect of long-term water immersion on the shear bond strength between denture base resin and Triad visible-light-polymerized (VLP) direct hard reline resin is not known. Purpose: The aim of this study was to investigate the bonding characteristics of Triad VLP direct h...

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Main Author: Mohammad Q. Al Rifaiy
Format: Article
Language:English
Published: Elsevier 2012-01-01
Series:Saudi Dental Journal
Online Access:http://www.sciencedirect.com/science/article/pii/S1013905211000708
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spelling doaj-ed078b4f7ecb4c23ba3b1fc84a16bb7d2020-11-25T02:23:39ZengElsevierSaudi Dental Journal1013-90522012-01-012412327Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersionMohammad Q. Al Rifaiy0Tel.: +966 1 467 7327.; Department of Prosthetic Dental Sciences, College of Dentistry, King Saud University, P.O. Box 60169, Riyadh 11545, Saudi ArabiaStatement of the problem: The effect of long-term water immersion on the shear bond strength between denture base resin and Triad visible-light-polymerized (VLP) direct hard reline resin is not known. Purpose: The aim of this study was to investigate the bonding characteristics of Triad VLP direct hard reline resin to heat-polymerized denture base resin subjected to long-term water immersion. Material and methods: Ninety circular disks, 15 mm in diameter and 3 mm thick, of denture base resin were polymerized from a gypsum mold. Sixty specimens were subjected to water immersion and 30 were stored at ambient room temperature for 4 months. Thirty water-immersed specimens were dried with gauze (group 1), while the other 30 water-immersed specimens were dried with a hair dryer (group 2). The dry specimens (n = 30) represented the control group (group 3). All specimens were air abraded and painted with bonding agent before packing Triad VLP direct hard-reline resin. Specimens in each group were subjected to thermal cycling for 50,000 cycles between 4 °C and 60 °C water baths with 1-min dwell time at each temperature. The bond strength at which the bond failed under stress was recorded using a universal testing machine. One-way ANOVA and Tukey post hoc comparison were applied to find significant differences between groups (α = 0.05). Results: Significant differences in mean shear bond strength among the specimens existed because of variable water content in the denture base resin (P < 0.05). Group 3 (dry) was higher than group 2 (desiccated), and the lowest was group 1 (saturated). Conclusion: The shear bond strength of Triad VLP direct hard reline resin to denture base resin depended on the water content in the denture base resin. The dry denture base resin demonstrated superior bond strength compared with the desiccated and water-saturated denture base resins. Keywords: Shear bond strength, Light polymerized, Hard reline resin, Denture base resinhttp://www.sciencedirect.com/science/article/pii/S1013905211000708
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Q. Al Rifaiy
spellingShingle Mohammad Q. Al Rifaiy
Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
Saudi Dental Journal
author_facet Mohammad Q. Al Rifaiy
author_sort Mohammad Q. Al Rifaiy
title Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
title_short Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
title_full Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
title_fullStr Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
title_full_unstemmed Shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
title_sort shear bond strength between light polymerized hard reline resin and denture base resin subjected to long term water immersion
publisher Elsevier
series Saudi Dental Journal
issn 1013-9052
publishDate 2012-01-01
description Statement of the problem: The effect of long-term water immersion on the shear bond strength between denture base resin and Triad visible-light-polymerized (VLP) direct hard reline resin is not known. Purpose: The aim of this study was to investigate the bonding characteristics of Triad VLP direct hard reline resin to heat-polymerized denture base resin subjected to long-term water immersion. Material and methods: Ninety circular disks, 15 mm in diameter and 3 mm thick, of denture base resin were polymerized from a gypsum mold. Sixty specimens were subjected to water immersion and 30 were stored at ambient room temperature for 4 months. Thirty water-immersed specimens were dried with gauze (group 1), while the other 30 water-immersed specimens were dried with a hair dryer (group 2). The dry specimens (n = 30) represented the control group (group 3). All specimens were air abraded and painted with bonding agent before packing Triad VLP direct hard-reline resin. Specimens in each group were subjected to thermal cycling for 50,000 cycles between 4 °C and 60 °C water baths with 1-min dwell time at each temperature. The bond strength at which the bond failed under stress was recorded using a universal testing machine. One-way ANOVA and Tukey post hoc comparison were applied to find significant differences between groups (α = 0.05). Results: Significant differences in mean shear bond strength among the specimens existed because of variable water content in the denture base resin (P < 0.05). Group 3 (dry) was higher than group 2 (desiccated), and the lowest was group 1 (saturated). Conclusion: The shear bond strength of Triad VLP direct hard reline resin to denture base resin depended on the water content in the denture base resin. The dry denture base resin demonstrated superior bond strength compared with the desiccated and water-saturated denture base resins. Keywords: Shear bond strength, Light polymerized, Hard reline resin, Denture base resin
url http://www.sciencedirect.com/science/article/pii/S1013905211000708
work_keys_str_mv AT mohammadqalrifaiy shearbondstrengthbetweenlightpolymerizedhardrelineresinanddenturebaseresinsubjectedtolongtermwaterimmersion
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