Shear bond strength of different luting agents to polyether ether ketone

Background: Polyether ether ketone (PEEK) was recently introduced to dentistry. However, difficulty in provision of a strong durable bond is its main drawback. Thus, precise surface treatment and use of a suitable luting agent are imperative for bonding of PEEK restorations. This study aimed to asse...

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Main Authors: Hossein Pourkhalili, Hamid Neshandar Asli, Newsha Toreihi, Mehran Falahchai
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2022-01-01
Series:Dental Research Journal
Subjects:
Online Access:http://www.drjjournal.net/article.asp?issn=1735-3327;year=2022;volume=19;issue=1;spage=45;epage=45;aulast=Pourkhalili
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author Hossein Pourkhalili
Hamid Neshandar Asli
Newsha Toreihi
Mehran Falahchai
author_facet Hossein Pourkhalili
Hamid Neshandar Asli
Newsha Toreihi
Mehran Falahchai
author_sort Hossein Pourkhalili
collection DOAJ
description Background: Polyether ether ketone (PEEK) was recently introduced to dentistry. However, difficulty in provision of a strong durable bond is its main drawback. Thus, precise surface treatment and use of a suitable luting agent are imperative for bonding of PEEK restorations. This study aimed to assess the effect of type of luting agent on shear bond strength (SBS) of PEEK. Materials and Methods: In this in vitro study, 60 square-shaped PEEK samples were fabricated and sandblasted with 110 μm Al2O3 particles. The samples were then divided into four groups based on the type of cement used (n = 15): zinc phosphate cement, Panavia F2, Panavia V5, and resin-modified glass-ionomer (RMGI) cement. After bonding, the samples were thermocycled for 5000 cycles. The SBS was measured by a universal testing machine. The surface of samples was inspected under a video measuring machine to determine the mode of failure. Data were analyzed using the Kruskal–Wallis test via SPSS version 24 (α = 0.05). Results: RMGI did not bond to PEEK. The SBS values were 4.02 ± 2.87 megapascals (MPa) for Panavia V5, 10.84 ± 6.05 MPa for Panavia F2, and 10.50 ± 2.88 MPa for zinc phosphate. The SBS in the Panavia V5 group was significantly lower than that in the Panavia F2 (P = 0.001) and zinc phosphate (P < 0.001) groups. No significant difference existed between the Panavia F2 and zinc phosphate groups in this respect (P > 0.05). Conclusion: Panavia F2 resin cement and zinc phosphate conventional cement provided the highest bond strength to PEEK, while RMGI did not bond to PEEK.
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spelling doaj.art-40a5510e38454c18b840f3b9f8d809562022-12-22T02:11:50ZengWolters Kluwer Medknow PublicationsDental Research Journal1735-33272008-02552022-01-01191454510.4103/1735-3327.346403Shear bond strength of different luting agents to polyether ether ketoneHossein PourkhaliliHamid Neshandar AsliNewsha ToreihiMehran FalahchaiBackground: Polyether ether ketone (PEEK) was recently introduced to dentistry. However, difficulty in provision of a strong durable bond is its main drawback. Thus, precise surface treatment and use of a suitable luting agent are imperative for bonding of PEEK restorations. This study aimed to assess the effect of type of luting agent on shear bond strength (SBS) of PEEK. Materials and Methods: In this in vitro study, 60 square-shaped PEEK samples were fabricated and sandblasted with 110 μm Al2O3 particles. The samples were then divided into four groups based on the type of cement used (n = 15): zinc phosphate cement, Panavia F2, Panavia V5, and resin-modified glass-ionomer (RMGI) cement. After bonding, the samples were thermocycled for 5000 cycles. The SBS was measured by a universal testing machine. The surface of samples was inspected under a video measuring machine to determine the mode of failure. Data were analyzed using the Kruskal–Wallis test via SPSS version 24 (α = 0.05). Results: RMGI did not bond to PEEK. The SBS values were 4.02 ± 2.87 megapascals (MPa) for Panavia V5, 10.84 ± 6.05 MPa for Panavia F2, and 10.50 ± 2.88 MPa for zinc phosphate. The SBS in the Panavia V5 group was significantly lower than that in the Panavia F2 (P = 0.001) and zinc phosphate (P < 0.001) groups. No significant difference existed between the Panavia F2 and zinc phosphate groups in this respect (P > 0.05). Conclusion: Panavia F2 resin cement and zinc phosphate conventional cement provided the highest bond strength to PEEK, while RMGI did not bond to PEEK.http://www.drjjournal.net/article.asp?issn=1735-3327;year=2022;volume=19;issue=1;spage=45;epage=45;aulast=Pourkhalilidental cementglass-ionomer cementresin cementshear strength
spellingShingle Hossein Pourkhalili
Hamid Neshandar Asli
Newsha Toreihi
Mehran Falahchai
Shear bond strength of different luting agents to polyether ether ketone
Dental Research Journal
dental cement
glass-ionomer cement
resin cement
shear strength
title Shear bond strength of different luting agents to polyether ether ketone
title_full Shear bond strength of different luting agents to polyether ether ketone
title_fullStr Shear bond strength of different luting agents to polyether ether ketone
title_full_unstemmed Shear bond strength of different luting agents to polyether ether ketone
title_short Shear bond strength of different luting agents to polyether ether ketone
title_sort shear bond strength of different luting agents to polyether ether ketone
topic dental cement
glass-ionomer cement
resin cement
shear strength
url http://www.drjjournal.net/article.asp?issn=1735-3327;year=2022;volume=19;issue=1;spage=45;epage=45;aulast=Pourkhalili
work_keys_str_mv AT hosseinpourkhalili shearbondstrengthofdifferentlutingagentstopolyetheretherketone
AT hamidneshandarasli shearbondstrengthofdifferentlutingagentstopolyetheretherketone
AT newshatoreihi shearbondstrengthofdifferentlutingagentstopolyetheretherketone
AT mehranfalahchai shearbondstrengthofdifferentlutingagentstopolyetheretherketone