Micromorphological spectrum of acid-conditioned dentin following the application of a water-based adhesive

被引:55
作者
Tay, FR
Gwinnett, JA
Wei, SHY
机构
[1] Univ Hong Kong, Prince Philip Dent Hosp, Fac Dent, Hong Kong, Peoples R China
[2] SUNY Stony Brook, Sch Dent Med, Dept Oral Biol & Pathol, Stony Brook, NY 11794 USA
关键词
D O I
10.1016/S0109-5641(98)00046-3
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objectives. The goal of this study was to illustrate the micromorphological spectrum along the resin-dentin interface when a waterbased, dentin adhesive (Scotchbond Multi-purpose) was applied to acid-conditioned dentin under different dry and wet bonding conditions. Methods. Twenty-eight 1 mm dentin discs were each conditioned with 10% maleic acid for 15 s. Twenty-four of these discs were randomly divided into four groups, based upon the status of the remaining surface moisture: Group I (30 s dry); Group II (3 s dry); Group III (visibly moist) and Group IV (overwet). They were bonded using Scotchbond Multi-purpose. The remaining four discs were bonded using an experimental water-based primer containing 35 vol.% HEMA (Group V). Laminated dentin disc pairs were prepared for transmission electron microscopic examination. Results. In all groups, diffusion of the polyalkenoic acid copolymer component of the primer into acid-conditioned dentin was localized to the surface region of the hybrid layer. The remaining part of the hybrid layer (the subsurface region) appeared variable. In Group 1 (30 s dry), collagen fibrils were collapsed. In Group II (3 s dry) and Group III (visibly moist), stained collagen fibrils were surrounded by wide electron-lucent interfibrillar spaces. In Group IV (overwet), a marked diffusion gradient was observed representing dilution of part of the primer components. In addition, an electron-dense primer phase, containing electron-lucent globular domains was invariably observed, irrespective of the hydration status of the demineralized collagen matrix. This electron dense phase was absent when HEMA alone was used as the primer (Group V). Significance. With the use of a water-based adhesive, one could briefly air-dry the acid-conditioned dentin and allow the water in the primer to rehydrate the collapsed collagen matrix, without the risk of incomplete hybridization or tubular seal along the resin-dentin interface. However, care should be exercised to minimize dilution of the water-soluble primer component. (C) 1999 Academy of Dental Materials. Published by Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:329 / 338
页数:10
相关论文
共 36 条
[1]  
Barpal D, 1996, J DENT RES, V75, P316
[2]   Influence of criteria on the results of in vitro evaluation of microleakage [J].
Dejou, J ;
Sindres, V ;
Camps, J .
DENTAL MATERIALS, 1996, 12 (5-6) :342-349
[3]   SCANNING-TRANSMISSION ELECTRON-MICROSCOPY ENERGY-DISPERSIVE SPECTROSCOPY ANALYSIS OF THE DENTIN ADHESIVE INTERFACE USING A LABELED 2-HYDROXYETHYLMETHACRYLATE ANALOG [J].
EICK, JD ;
ROBINSON, SJ ;
BYERLEY, TJ ;
CHAPPELL, RP ;
SPENCER, P ;
CHAPPELOW, CC .
JOURNAL OF DENTAL RESEARCH, 1995, 74 (06) :1246-1252
[4]   Quantitative analysis of the dentin adhesive interface by Auger spectroscopy [J].
Eick, JD ;
Miller, RG ;
Robinson, SJ ;
Bowles, CQ ;
Gutshall, PL ;
Chappelow, CC .
JOURNAL OF DENTAL RESEARCH, 1996, 75 (04) :1027-1033
[5]  
ELAIDES GC, 1993, STATE ART DIRECT POS, P49
[6]  
Ferrari M, 1996, AM J DENT, V9, P240
[7]   SOME FEATURES OF BREAKDOWN IN WATER-IN-OIL-IN-WATER MULTIPLE EMULSIONS [J].
FLORENCE, AT ;
WHITEHILL, D .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1981, 79 (01) :243-256
[8]  
Fundingsland J. W., 1992, J DENT RES, V71, P665
[9]  
GRIFFITHS BM, 1995, AM J DENT, V8, P212
[10]  
Halvorson R, 1997, J DENT RES, V76, P417