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1.
J Dent Res ; 89(12): 1499-504, 2010 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-20940353

RESUMO

The long-term effectiveness of chlorhexidine as a matrix metalloproteinase (MMP) inhibitor may be compromised when water is incompletely removed during dentin bonding. This study challenged this anti-bond degradation strategy by testing the null hypothesis that wet-bonding with water or ethanol has no effect on the effectiveness of chlorhexidine in preventing hybrid layer degradation over an 18-month period. Acid-etched dentin was bonded under pulpal pressure simulation with Scotchbond MP and Single Bond 2, with water wet-bonding or with a hydrophobic adhesive with ethanol wet-bonding, with or without pre-treatment with chlorhexidine diacetate (CHD). Resin-dentin beams were prepared for bond strength and TEM evaluation after 24 hrs and after aging in artificial saliva for 9 and 18 mos. Bonds made to ethanol-saturated dentin did not change over time with preservation of hybrid layer integrity. Bonds made to CHD pre-treated acid-etched dentin with commercial adhesives with water wet-bonding were preserved after 9 mos but not after 18 mos, with severe hybrid layer degradation. The results led to rejection of the null hypothesis and highlight the concept of biomimetic water replacement from the collagen intrafibrillar compartments as the ultimate goal in extending the longevity of resin-dentin bonds.


Assuntos
Colagem Dentária/métodos , Adesivos Dentinários/química , Etanol/química , Solventes/química , Condicionamento Ácido do Dente , Bis-Fenol A-Glicidil Metacrilato/química , Clorexidina/química , Clorexidina/farmacologia , Colágeno/ultraestrutura , Resinas Compostas/química , Materiais Dentários/química , Análise do Estresse Dentário/instrumentação , Dentina/ultraestrutura , Humanos , Interações Hidrofóbicas e Hidrofílicas , Teste de Materiais , Inibidores de Metaloproteinases de Matriz , Microscopia Eletrônica de Transmissão , Cimentos de Resina/química , Saliva Artificial/química , Estresse Mecânico , Fatores de Tempo , Água/química
2.
J Dent Res ; 86(6): 524-8, 2007 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-17525351

RESUMO

Although hydrophobic resins may be bonded to acid-etched dentin with an ethanol wet-bonding technique, the protocol is sensitive to moisture contamination when bonding is performed in deep dentin. This study tested the hypothesis that the use of oxalate or poly(glutamic) acid-modified, diluted ceramicrete (PADC) for dentinal tubule occlusion prevents fluid contamination and improves the bonding of an experimental hydrophobic adhesive to acid-etched, ethanol-dehydrated dentin. Mid-coronal and deep acid-etched moist dentin pre-treated with oxalate or PADC was dehydrated by ethanol wet-bonding and infiltrated with the experimental three-step etch-and-rinse hydrophobic adhesive under simulated pulpal pressure. Tensile bond strengths to deep dentin without pre-treatment were severely compromised. Conversely, oxalate and PADC pre-treatments reduced dentin permeability, prevented water contamination, and improved bond strengths. Minimal nanoleakage was identified within hybrid layers created in the oxalate- and PADC-pre-treated deep dentin. The use of tubular occluding agents optimized bonding of hydrophobic resins to dentin.


Assuntos
Resinas Compostas/química , Colagem Dentária , Dentina/ultraestrutura , Condicionamento Ácido do Dente/métodos , Bis-Fenol A-Glicidil Metacrilato/química , Colagem Dentária/métodos , Infiltração Dentária/classificação , Materiais Dentários/química , Etanol/química , Humanos , Interações Hidrofóbicas e Hidrofílicas , Óxido de Magnésio/química , Teste de Materiais , Microscopia Eletrônica de Transmissão , Oxalatos/química , Fosfatos/química , Polietilenoglicóis/química , Ácido Poliglutâmico/química , Ácidos Polimetacrílicos/química , Compostos de Potássio/química , Materiais Restauradores do Canal Radicular , Solventes/química , Estresse Mecânico , Propriedades de Superfície , Resistência à Tração
3.
Brazilian Journal of Oral Sciences;2(4): 156-159,
em Inglês | URUGUAIODONTO | ID: odn-18289
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