Bond strength of two total-etching bonding systems on caries-affected and sound primary teeth dentin
Aim. As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries‐affected and sound primary molar tooth dentin and observed the micr...
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Published in | International journal of paediatric dentistry Vol. 18; no. 1; pp. 62 - 69 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Oxford, UK
Blackwell Publishing Ltd
01.01.2008
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Subjects | |
Online Access | Get full text |
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Abstract | Aim. As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries‐affected and sound primary molar tooth dentin and observed the micromorphology of the adhesive–dentin interfaces.
Methods. By grinding both the sound (n = 30) and caries‐affected (n = 30) approximal surfaces of teeth, flat dentin surfaces were obtained. The prepared surfaces were bonded with one of the each adhesive systems and a composite resin. After storing the bonded specimens in water at 37 °C for 24 h, the samples were sectioned and the bond strength of the adhesive systems was tested by the microshear test method. The data were statistically analysed.
Results. Microshear bond strengths of PQI group for caries‐affected and sound primary tooth dentin were 9.43 ± 2.44 (MPa) and 9.32 ± 2.95 (MPa) (P > 0.05), respectively, and the bond strengths of OptiBond Solo Plus group for caries‐affected and sound primary tooth dentin were 15.33 ± 3.59 (MPa) and 11.96 ± 2.30 (MPa) (P < 0.05), respectively. Micromorphological features between sound and caries‐affected dentin were similar in both PQI and OptiBond Solo Plus groups.
Conclusion. Both the adhesives showed significantly different bond strengths in caries‐affected dentin but showed similar bond strengths in sound dentin. |
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AbstractList | Aim.
As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries‐affected and sound primary molar tooth dentin and observed the micromorphology of the adhesive–dentin interfaces.
Methods.
By grinding both the sound (
n
= 30) and caries‐affected (
n
= 30) approximal surfaces of teeth, flat dentin surfaces were obtained. The prepared surfaces were bonded with one of the each adhesive systems and a composite resin. After storing the bonded specimens in water at 37 °C for 24 h, the samples were sectioned and the bond strength of the adhesive systems was tested by the microshear test method. The data were statistically analysed.
Results.
Microshear bond strengths of PQI group for caries‐affected and sound primary tooth dentin were 9.43 ± 2.44 (MPa) and 9.32 ± 2.95 (MPa) (
P
> 0.05), respectively, and the bond strengths of OptiBond Solo Plus group for caries‐affected and sound primary tooth dentin were 15.33 ± 3.59 (MPa) and 11.96 ± 2.30 (MPa) (
P <
0.05), respectively. Micromorphological features between sound and caries‐affected dentin were similar in both PQI and OptiBond Solo Plus groups.
Conclusion.
Both the adhesives showed significantly different bond strengths in caries‐affected dentin but showed similar bond strengths in sound dentin. As bond strength of currently available adhesive systems in caries-affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries-affected and sound primary molar tooth dentin and observed the micromorphology of the adhesive-dentin interfaces. By grinding both the sound (n = 30) and caries-affected (n = 30) approximal surfaces of teeth, flat dentin surfaces were obtained. The prepared surfaces were bonded with one of the each adhesive systems and a composite resin. After storing the bonded specimens in water at 37 degrees C for 24 h, the samples were sectioned and the bond strength of the adhesive systems was tested by the microshear test method. The data were statistically analysed. Microshear bond strengths of PQI group for caries-affected and sound primary tooth dentin were 9.43 +/- 2.44 (MPa) and 9.32 +/- 2.95 (MPa) (P > 0.05), respectively, and the bond strengths of OptiBond Solo Plus group for caries-affected and sound primary tooth dentin were 15.33 +/- 3.59 (MPa) and 11.96 +/- 2.30 (MPa) (P < 0.05), respectively. Micromorphological features between sound and caries-affected dentin were similar in both PQI and OptiBond Solo Plus groups. Both the adhesives showed significantly different bond strengths in caries-affected dentin but showed similar bond strengths in sound dentin. AIMAs bond strength of currently available adhesive systems in caries-affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries-affected and sound primary molar tooth dentin and observed the micromorphology of the adhesive-dentin interfaces.METHODSBy grinding both the sound (n = 30) and caries-affected (n = 30) approximal surfaces of teeth, flat dentin surfaces were obtained. The prepared surfaces were bonded with one of the each adhesive systems and a composite resin. After storing the bonded specimens in water at 37 degrees C for 24 h, the samples were sectioned and the bond strength of the adhesive systems was tested by the microshear test method. The data were statistically analysed.RESULTSMicroshear bond strengths of PQI group for caries-affected and sound primary tooth dentin were 9.43 +/- 2.44 (MPa) and 9.32 +/- 2.95 (MPa) (P > 0.05), respectively, and the bond strengths of OptiBond Solo Plus group for caries-affected and sound primary tooth dentin were 15.33 +/- 3.59 (MPa) and 11.96 +/- 2.30 (MPa) (P < 0.05), respectively. Micromorphological features between sound and caries-affected dentin were similar in both PQI and OptiBond Solo Plus groups.CONCLUSIONBoth the adhesives showed significantly different bond strengths in caries-affected dentin but showed similar bond strengths in sound dentin. Aim. As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of two bonding systems (PQI and OptiBond Solo Plus) was evaluated on caries‐affected and sound primary molar tooth dentin and observed the micromorphology of the adhesive–dentin interfaces. Methods. By grinding both the sound (n = 30) and caries‐affected (n = 30) approximal surfaces of teeth, flat dentin surfaces were obtained. The prepared surfaces were bonded with one of the each adhesive systems and a composite resin. After storing the bonded specimens in water at 37 °C for 24 h, the samples were sectioned and the bond strength of the adhesive systems was tested by the microshear test method. The data were statistically analysed. Results. Microshear bond strengths of PQI group for caries‐affected and sound primary tooth dentin were 9.43 ± 2.44 (MPa) and 9.32 ± 2.95 (MPa) (P > 0.05), respectively, and the bond strengths of OptiBond Solo Plus group for caries‐affected and sound primary tooth dentin were 15.33 ± 3.59 (MPa) and 11.96 ± 2.30 (MPa) (P < 0.05), respectively. Micromorphological features between sound and caries‐affected dentin were similar in both PQI and OptiBond Solo Plus groups. Conclusion. Both the adhesives showed significantly different bond strengths in caries‐affected dentin but showed similar bond strengths in sound dentin. |
Author | TOSUN, GUL KOYUTURK, ALP ERDIN SENER, YAGMUR SENGUN, ABDULKADIR |
Author_xml | – sequence: 1 givenname: GUL surname: TOSUN fullname: TOSUN, GUL organization: Department of Pediatric Dentistry, Faculty of Dentistry, Selçuk University, Konya, Turkey – sequence: 2 givenname: ALP ERDIN surname: KOYUTURK fullname: KOYUTURK, ALP ERDIN organization: Department of Pediatric Dentistry, Faculty of Dentistry, On Dokuz Mayýs University, Samsun, Turkey, and – sequence: 3 givenname: YAGMUR surname: SENER fullname: SENER, YAGMUR organization: Department of Pediatric Dentistry, Faculty of Dentistry, Selçuk University, Konya, Turkey – sequence: 4 givenname: ABDULKADIR surname: SENGUN fullname: SENGUN, ABDULKADIR organization: Department of Conservative Dentistry, Faculty of Dentistry, Selçuk University, Konya, Turkey |
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CitedBy_id | crossref_primary_10_1016_j_ijadhadh_2014_01_024 crossref_primary_10_1016_j_dental_2010_05_009 crossref_primary_10_1089_photob_2022_0019 crossref_primary_10_5005_jp_journals_10024_1734 crossref_primary_10_1002_jemt_22340 crossref_primary_10_17567_ataunidfd_444095 crossref_primary_10_1016_j_ijadhadh_2015_04_011 crossref_primary_10_2341_23_065_L |
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References_xml | – volume: 31 start-page: 427 year: 1993 end-page: 440 article-title: Resin adhesion to the primary dentin. 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Snippet | Aim. As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of... As bond strength of currently available adhesive systems in caries-affected teeth dentin on primary tooth dentin was not well known, the bond strength of two... Aim. As bond strength of currently available adhesive systems in caries‐affected teeth dentin on primary tooth dentin was not well known, the bond strength of... AIMAs bond strength of currently available adhesive systems in caries-affected teeth dentin on primary tooth dentin was not well known, the bond strength of... |
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SubjectTerms | Dental Bonding - methods Dental Caries Dentin - ultrastructure Dentin-Bonding Agents - chemistry Dentistry Epidemiologic Methods Humans Microscopy, Electron, Scanning Resin Cements - chemistry Shear Strength Tooth, Deciduous - ultrastructure |
Title | Bond strength of two total-etching bonding systems on caries-affected and sound primary teeth dentin |
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