Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study
Purpose. This study investigated the long-term resin-dentin bond strength of dentin biomodified by proanthocyanidin-rich (PA) agents. Materials and Methods. Forty molars had their coronal dentin exposed, etched, and treated for 10 minutes with 6.5% grape seed extract (GSE), 6.5% cocoa seed extract e...
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doaj-90ec1f38046342e5bef0c9413799ce092020-11-24T20:45:53ZengHindawi LimitedInternational Journal of Dentistry1687-87281687-87362013-01-01201310.1155/2013/918010918010Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength StudyCarina S. Castellan0Ana K. Bedran-Russo1Alberto Antunes2Patricia N. R. Pereira3Department of Dental Materials, University of Sao Paulo, Avenida Professor Lineu Prestes 2227 Cidade Universitaria, 05508-000 Sao Paulo, SP, BrazilDepartment of Restorative Dentistry, College of Dentistry, University of Illinois at Chicago, 801 S Paulina Street, Chicago, IL 60612, USADepartment of Restorative Dentistry, College of Dentistry, University of Illinois at Chicago, 801 S Paulina Street, Chicago, IL 60612, USADepartment of Operative Dentistry, University of Brasilia, Campus Universitário Darcy Ribeiro—70910-900 Brasília, DF, BrazilPurpose. This study investigated the long-term resin-dentin bond strength of dentin biomodified by proanthocyanidin-rich (PA) agents. Materials and Methods. Forty molars had their coronal dentin exposed, etched, and treated for 10 minutes with 6.5% grape seed extract (GSE), 6.5% cocoa seed extract ethanol-water (CSE-ET), 6.5% cocoa seed extract acetone-water (CSE-AC), and distilled water (CO). Samples were restored either with One-Step Plus (OS) or Adper Single-Bond Plus (SB). Bond strength test was performed immediately or after 3, 6, and 12 months. Results. Higher μTBS were observed for GSE immediately (SB- 62.9 MPa; OS- 51.9 MPa) when compared to CSE-ET (SB- 56.95 MPa; OS- 60.28 MPa), CSE-AC (SB- 49.97 MPa; OS- 54.44 MPa), and CO (SB- 52.0 MPa; OS- 44.0 MPa) (P<0.05). CSE outcomes were adhesive system and solvent dependant. After 12 months storage SB results showed no difference among treatment types (GSE- 57.15 MPa; CSE/ET- 54.04 MPa; CSE/AC- 48.22 MPa; CO- 51.68 MPa; P=0.347),while OS results where treatment dependent (GSE- 42.62 MPa; CSE/ET- 44.06 MPa; CSE/AC- 41.30 MPa; CO- 36.85 MPa; P=0.036). Conclusions. GSE and CSE-ET agents provided enhanced immediate adhesion and stabilization to demineralized dentin after long-term storage, depending on adhesive system.http://dx.doi.org/10.1155/2013/918010 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carina S. Castellan Ana K. Bedran-Russo Alberto Antunes Patricia N. R. Pereira |
spellingShingle |
Carina S. Castellan Ana K. Bedran-Russo Alberto Antunes Patricia N. R. Pereira Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study International Journal of Dentistry |
author_facet |
Carina S. Castellan Ana K. Bedran-Russo Alberto Antunes Patricia N. R. Pereira |
author_sort |
Carina S. Castellan |
title |
Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study |
title_short |
Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study |
title_full |
Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study |
title_fullStr |
Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study |
title_full_unstemmed |
Effect of Dentin Biomodification Using Naturally Derived Collagen Cross-Linkers: One-Year Bond Strength Study |
title_sort |
effect of dentin biomodification using naturally derived collagen cross-linkers: one-year bond strength study |
publisher |
Hindawi Limited |
series |
International Journal of Dentistry |
issn |
1687-8728 1687-8736 |
publishDate |
2013-01-01 |
description |
Purpose. This study investigated the long-term resin-dentin bond strength of dentin biomodified by proanthocyanidin-rich (PA) agents. Materials and Methods. Forty molars had their coronal dentin exposed, etched, and treated for 10 minutes with 6.5% grape seed extract (GSE), 6.5% cocoa seed extract ethanol-water (CSE-ET), 6.5% cocoa seed extract acetone-water (CSE-AC), and distilled water (CO). Samples were restored either with One-Step Plus (OS) or Adper Single-Bond Plus (SB). Bond strength test was performed immediately or after 3, 6, and 12 months. Results. Higher μTBS were observed for GSE immediately (SB- 62.9 MPa; OS- 51.9 MPa) when compared to CSE-ET (SB- 56.95 MPa; OS- 60.28 MPa), CSE-AC (SB- 49.97 MPa; OS- 54.44 MPa), and CO (SB- 52.0 MPa; OS- 44.0 MPa) (P<0.05). CSE outcomes were adhesive system and solvent dependant. After 12 months storage SB results showed no difference among treatment types (GSE- 57.15 MPa; CSE/ET- 54.04 MPa; CSE/AC- 48.22 MPa; CO- 51.68 MPa; P=0.347),while OS results where treatment dependent (GSE- 42.62 MPa; CSE/ET- 44.06 MPa; CSE/AC- 41.30 MPa; CO- 36.85 MPa; P=0.036). Conclusions. GSE and CSE-ET agents provided enhanced immediate adhesion and stabilization to demineralized dentin after long-term storage, depending on adhesive system. |
url |
http://dx.doi.org/10.1155/2013/918010 |
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