Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin

Abstract Objective: To evaluate the effect of a synthetic inhibitor of MMPs (Galardin) and its solvents [ethanol and dimethyl sulfoxide (DMSO)] on the microtensile bond strength (µTBS) of adhesive systems to dentin. Material and Methods: Sound human third molars (n=180) were randomly assigned into 5 based on solution type: DMSO; ethanol; Galardin + DMSO; Galardin + ethanol; and distilled water as control. Then were further subdivided into 6 based on the adhesive system, i.e. 3-step and 2-step etch-and-rinse (ER), one-step and 2-step self-etch (SE) and universal in ER and SE strategies. The samples underwent a 500-round thermocycling procedure at 5±5/55±5°C and were sectioned into 1-mm2 pieces perpendicularly in a cutting machine. The µTBS was measured at a strain rate of 1 mm/min. Data were analyzed with two-way ANOVA and post hoc Games-Howell tests (p<0.05). Results: The adhesive system and the solution had significant effects on the µTBS (p<0.001). The universal adhesive in the SE mode resulted in a significant decrease in µTBS compared to the other adhesives (p<0.05). Ethanol, too, resulted in a significant decrease in µTBS compared to other solutions (p<0.05). Conclusion: Galardin and its solvents, except for ethanol, had no detrimental effects on the immediate µTBS.

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Main Authors: Chaharom,Mohammad Esmaeel Ebrahimi, Bahari,Mahmoud, Rahbar,Mahdi, Golbaz,Sepideh
Format: Digital revista
Language:English
Published: Associação de Apoio à Pesquisa em Saúde Bucal 2019
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-46322019000100322
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spelling oai:scielo:S1983-463220190001003222019-08-29Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to DentinChaharom,Mohammad Esmaeel EbrahimiBahari,MahmoudRahbar,MahdiGolbaz,Sepideh Dental Materials Dentin-Bonding Agents Tensile Strength Abstract Objective: To evaluate the effect of a synthetic inhibitor of MMPs (Galardin) and its solvents [ethanol and dimethyl sulfoxide (DMSO)] on the microtensile bond strength (µTBS) of adhesive systems to dentin. Material and Methods: Sound human third molars (n=180) were randomly assigned into 5 based on solution type: DMSO; ethanol; Galardin + DMSO; Galardin + ethanol; and distilled water as control. Then were further subdivided into 6 based on the adhesive system, i.e. 3-step and 2-step etch-and-rinse (ER), one-step and 2-step self-etch (SE) and universal in ER and SE strategies. The samples underwent a 500-round thermocycling procedure at 5±5/55±5°C and were sectioned into 1-mm2 pieces perpendicularly in a cutting machine. The µTBS was measured at a strain rate of 1 mm/min. Data were analyzed with two-way ANOVA and post hoc Games-Howell tests (p<0.05). Results: The adhesive system and the solution had significant effects on the µTBS (p<0.001). The universal adhesive in the SE mode resulted in a significant decrease in µTBS compared to the other adhesives (p<0.05). Ethanol, too, resulted in a significant decrease in µTBS compared to other solutions (p<0.05). Conclusion: Galardin and its solvents, except for ethanol, had no detrimental effects on the immediate µTBS.info:eu-repo/semantics/openAccessAssociação de Apoio à Pesquisa em Saúde BucalPesquisa Brasileira em Odontopediatria e Clínica Integrada v.19 20192019-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-46322019000100322en10.4034/pboci.2019.191.12
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libraryname SciELO
language English
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author Chaharom,Mohammad Esmaeel Ebrahimi
Bahari,Mahmoud
Rahbar,Mahdi
Golbaz,Sepideh
spellingShingle Chaharom,Mohammad Esmaeel Ebrahimi
Bahari,Mahmoud
Rahbar,Mahdi
Golbaz,Sepideh
Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
author_facet Chaharom,Mohammad Esmaeel Ebrahimi
Bahari,Mahmoud
Rahbar,Mahdi
Golbaz,Sepideh
author_sort Chaharom,Mohammad Esmaeel Ebrahimi
title Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
title_short Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
title_full Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
title_fullStr Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
title_full_unstemmed Effect of Galardin and its Solvents on the Microtensile Bond Strength of Different Adhesive Systems to Dentin
title_sort effect of galardin and its solvents on the microtensile bond strength of different adhesive systems to dentin
description Abstract Objective: To evaluate the effect of a synthetic inhibitor of MMPs (Galardin) and its solvents [ethanol and dimethyl sulfoxide (DMSO)] on the microtensile bond strength (µTBS) of adhesive systems to dentin. Material and Methods: Sound human third molars (n=180) were randomly assigned into 5 based on solution type: DMSO; ethanol; Galardin + DMSO; Galardin + ethanol; and distilled water as control. Then were further subdivided into 6 based on the adhesive system, i.e. 3-step and 2-step etch-and-rinse (ER), one-step and 2-step self-etch (SE) and universal in ER and SE strategies. The samples underwent a 500-round thermocycling procedure at 5±5/55±5°C and were sectioned into 1-mm2 pieces perpendicularly in a cutting machine. The µTBS was measured at a strain rate of 1 mm/min. Data were analyzed with two-way ANOVA and post hoc Games-Howell tests (p<0.05). Results: The adhesive system and the solution had significant effects on the µTBS (p<0.001). The universal adhesive in the SE mode resulted in a significant decrease in µTBS compared to the other adhesives (p<0.05). Ethanol, too, resulted in a significant decrease in µTBS compared to other solutions (p<0.05). Conclusion: Galardin and its solvents, except for ethanol, had no detrimental effects on the immediate µTBS.
publisher Associação de Apoio à Pesquisa em Saúde Bucal
publishDate 2019
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-46322019000100322
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