Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive

ObjectivesThis study investigated the effect of an aluminum chloride hemostatic agent on the shear bond strength (SBS) of a universal adhesive to dentin.Materials and MethodsEighty extracted human molars were trimmed at the occlusal dentin surfaces and divided mesiodistally. According to hemostatic...

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Main Authors: Sujin Kim, Yoorina Choi, Sujung Park
Format: Article
Language:English
Published: Korean Academy of Conservative Dentistry 2023-05-01
Series:Restorative Dentistry & Endodontics
Subjects:
Online Access:http://www.rde.ac/upload/pdf/rde-48-e14.pdf
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author Sujin Kim
Yoorina Choi
Sujung Park
author_facet Sujin Kim
Yoorina Choi
Sujung Park
author_sort Sujin Kim
collection DOAJ
description ObjectivesThis study investigated the effect of an aluminum chloride hemostatic agent on the shear bond strength (SBS) of a universal adhesive to dentin.Materials and MethodsEighty extracted human molars were trimmed at the occlusal dentin surfaces and divided mesiodistally. According to hemostatic agent application, specimens were randomly allocated into control (C) and hemostatic agent (Traxodent; H) groups. Each group was divided into 4 subgroups according to the adhesive system (n = 20): Scotchbond Multi-Purpose (SBER), Clearfil SE Bond (CLSE), All-Bond Universal etch-and-rinse mode (ALER), and All-Bond Universal self-etch mode (ALSE). SBS was measured for half of the specimens at 24 hours, and the other half were thermocycled in water baths (group T). Fracture surfaces were examined to determine the failure mode. The SBS was measured, and data were analyzed using 1-way analysis of variance, the Student’s t-test, and the Tukey honestly significant difference test (p = 0.05).ResultsNo significant differences in SBS were found between groups C and H for any adhesive system at 24 hours. After thermocycling, a statistically significant difference was observed between CT+ALSE and HT+ALSE (p < 0.05). When All-Bond Universal was applied to hemostatic agent-contaminated dentin, the SBS of H+ALSE was significantly lower than that of H+ALER (p < 0.05). The SBER subgroups showed no significant differences in SBS regardless of treatment and thermocycling.ConclusionsWhen exposed dentin was contaminated by an aluminum chloride hemostatic agent before dentin adhesive treatment, application of All-Bond Universal in etch-and-rinse mode was superior to self-etch mode.
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spelling doaj-art-deaacb3fd99a424e99ffbef018fb7eaa2025-08-20T03:29:22ZengKorean Academy of Conservative DentistryRestorative Dentistry & Endodontics2234-76582234-76662023-05-01482e1410.5395/rde.2023.48.e141055Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesiveSujin KimYoorina ChoiSujung ParkObjectivesThis study investigated the effect of an aluminum chloride hemostatic agent on the shear bond strength (SBS) of a universal adhesive to dentin.Materials and MethodsEighty extracted human molars were trimmed at the occlusal dentin surfaces and divided mesiodistally. According to hemostatic agent application, specimens were randomly allocated into control (C) and hemostatic agent (Traxodent; H) groups. Each group was divided into 4 subgroups according to the adhesive system (n = 20): Scotchbond Multi-Purpose (SBER), Clearfil SE Bond (CLSE), All-Bond Universal etch-and-rinse mode (ALER), and All-Bond Universal self-etch mode (ALSE). SBS was measured for half of the specimens at 24 hours, and the other half were thermocycled in water baths (group T). Fracture surfaces were examined to determine the failure mode. The SBS was measured, and data were analyzed using 1-way analysis of variance, the Student’s t-test, and the Tukey honestly significant difference test (p = 0.05).ResultsNo significant differences in SBS were found between groups C and H for any adhesive system at 24 hours. After thermocycling, a statistically significant difference was observed between CT+ALSE and HT+ALSE (p < 0.05). When All-Bond Universal was applied to hemostatic agent-contaminated dentin, the SBS of H+ALSE was significantly lower than that of H+ALER (p < 0.05). The SBER subgroups showed no significant differences in SBS regardless of treatment and thermocycling.ConclusionsWhen exposed dentin was contaminated by an aluminum chloride hemostatic agent before dentin adhesive treatment, application of All-Bond Universal in etch-and-rinse mode was superior to self-etch mode.http://www.rde.ac/upload/pdf/rde-48-e14.pdfadhesivedentinhemostaticsshear bond strength
spellingShingle Sujin Kim
Yoorina Choi
Sujung Park
Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
Restorative Dentistry & Endodontics
adhesive
dentin
hemostatics
shear bond strength
title Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
title_full Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
title_fullStr Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
title_full_unstemmed Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
title_short Effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
title_sort effect of an aluminum chloride hemostatic agent on the dentin shear bond strength of a universal adhesive
topic adhesive
dentin
hemostatics
shear bond strength
url http://www.rde.ac/upload/pdf/rde-48-e14.pdf
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AT yoorinachoi effectofanaluminumchloridehemostaticagentonthedentinshearbondstrengthofauniversaladhesive
AT sujungpark effectofanaluminumchloridehemostaticagentonthedentinshearbondstrengthofauniversaladhesive