Cargando…

Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study

There is still a lack of consensus concerning the recommended etching concentration, application time and type of silane when bonding lithium disilicate-reinforced glass ceramics manufactured by CAD/CAM. The purpose of this study was thus to conduct an in vitro study which investigates the influence...

Descripción completa

Detalles Bibliográficos
Autores principales: Almiro, Matilde, Marinho, Beatriz, Delgado, António H. S., Rua, João, Monteiro, Paulo, Santos, Inês Caetano, Proença, Luís, Mendes, José João, Gresnigt, Marco M. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8950098/
https://www.ncbi.nlm.nih.gov/pubmed/35329495
http://dx.doi.org/10.3390/ma15062045
_version_ 1784675060903051264
author Almiro, Matilde
Marinho, Beatriz
Delgado, António H. S.
Rua, João
Monteiro, Paulo
Santos, Inês Caetano
Proença, Luís
Mendes, José João
Gresnigt, Marco M. M.
author_facet Almiro, Matilde
Marinho, Beatriz
Delgado, António H. S.
Rua, João
Monteiro, Paulo
Santos, Inês Caetano
Proença, Luís
Mendes, José João
Gresnigt, Marco M. M.
author_sort Almiro, Matilde
collection PubMed
description There is still a lack of consensus concerning the recommended etching concentration, application time and type of silane when bonding lithium disilicate-reinforced glass ceramics manufactured by CAD/CAM. The purpose of this study was thus to conduct an in vitro study which investigates the influence of hydrofluoric acid (HF) concentration, etching time and silane type on the microtensile bond strength (μTBS) of lithium disilicate to resin composites. Thirty-nine IPS e.max CAD blocks were randomly divided between thirteen groups (n = 3). The variables were HF concentration (9.5 or 4.9%), etching time (20 or 60 s) and silane type (Bis-Silane, Monobond Plus and ESPE Sil Silane). The blocks were cut into beams, aged for 10,000 cycles in a thermocycler and submitted to tensile stress to determine μTBS. A control group featuring the Monobond Etch & Prime (MEP) agent that combines etching/silanisation into a simultaneous process was also added. This group was discarded from the analysis due to only having pre-test failures. The data were analysed using a three-way ANOVA (α = 0.05). The HF concentration, etching time and silane type significantly influenced μTBS (p < 0.001). Significant interactions between time and silane type (p = 0.004), HF concentration and silane type (p < 0.001) and among the three factors (p < 0.001) were noted. Etching lithium disilicate with 9.5% HF (60 s), followed by the application of Bis-Silane, resulted in the highest μTBS (16.6 ± 9.0 MPa). The highest concentration and etching time under study, combined with a two-part silane, resulted in the highest bond strength, while the application of MEP showed a complete pre-test failure.
format Online
Article
Text
id pubmed-8950098
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89500982022-03-26 Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study Almiro, Matilde Marinho, Beatriz Delgado, António H. S. Rua, João Monteiro, Paulo Santos, Inês Caetano Proença, Luís Mendes, José João Gresnigt, Marco M. M. Materials (Basel) Article There is still a lack of consensus concerning the recommended etching concentration, application time and type of silane when bonding lithium disilicate-reinforced glass ceramics manufactured by CAD/CAM. The purpose of this study was thus to conduct an in vitro study which investigates the influence of hydrofluoric acid (HF) concentration, etching time and silane type on the microtensile bond strength (μTBS) of lithium disilicate to resin composites. Thirty-nine IPS e.max CAD blocks were randomly divided between thirteen groups (n = 3). The variables were HF concentration (9.5 or 4.9%), etching time (20 or 60 s) and silane type (Bis-Silane, Monobond Plus and ESPE Sil Silane). The blocks were cut into beams, aged for 10,000 cycles in a thermocycler and submitted to tensile stress to determine μTBS. A control group featuring the Monobond Etch & Prime (MEP) agent that combines etching/silanisation into a simultaneous process was also added. This group was discarded from the analysis due to only having pre-test failures. The data were analysed using a three-way ANOVA (α = 0.05). The HF concentration, etching time and silane type significantly influenced μTBS (p < 0.001). Significant interactions between time and silane type (p = 0.004), HF concentration and silane type (p < 0.001) and among the three factors (p < 0.001) were noted. Etching lithium disilicate with 9.5% HF (60 s), followed by the application of Bis-Silane, resulted in the highest μTBS (16.6 ± 9.0 MPa). The highest concentration and etching time under study, combined with a two-part silane, resulted in the highest bond strength, while the application of MEP showed a complete pre-test failure. MDPI 2022-03-10 /pmc/articles/PMC8950098/ /pubmed/35329495 http://dx.doi.org/10.3390/ma15062045 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Almiro, Matilde
Marinho, Beatriz
Delgado, António H. S.
Rua, João
Monteiro, Paulo
Santos, Inês Caetano
Proença, Luís
Mendes, José João
Gresnigt, Marco M. M.
Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title_full Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title_fullStr Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title_full_unstemmed Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title_short Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate–Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study
title_sort increasing acid concentration, time and using a two-part silane potentiates bond strength of lithium disilicate–reinforced glass ceramic to resin composite: an exploratory laboratory study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8950098/
https://www.ncbi.nlm.nih.gov/pubmed/35329495
http://dx.doi.org/10.3390/ma15062045
work_keys_str_mv AT almiromatilde increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT marinhobeatriz increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT delgadoantoniohs increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT ruajoao increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT monteiropaulo increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT santosinescaetano increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT proencaluis increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT mendesjosejoao increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy
AT gresnigtmarcomm increasingacidconcentrationtimeandusingatwopartsilanepotentiatesbondstrengthoflithiumdisilicatereinforcedglassceramictoresincompositeanexploratorylaboratorystudy