Ion processes in glass ionomer cements

被引:56
作者
Billington, R. W. [1 ]
Williams, J. A. [1 ]
Pearson, G. J. [1 ]
机构
[1] Queen Mary Univ London, Inst Dent, London E1 4NS, England
关键词
glass ionomer cements; ion release; recharge; release;
D O I
10.1016/j.jdent.2005.09.008
中图分类号
R78 [口腔科学];
学科分类号
1003 [口腔医学];
摘要
Ion processes are involved in many aspects of glass-ionomer cements. The ions released from the glass take part in the formation of the cement matrix. Although this process has been investigated, particularly using model cement systems, no study provides a complete matrix composition. Combining results from different studies enables an approximate composition to be derived. The importance of Phosphorous in controlling ion release from the glass surface has been identified in a number of studies. The release of ions from the set cement into water (and other aqueous liquids) has been much reported, particularly for fluoride. Over most of the release periods studied (i.e. from > 7 days up to 3 years), release of F ion is related to t(1/2) indicating a diffusion-controlled process. other ions, except possibly Na+ also show this relationship. The amount of cumulative F release whilst maintaining this relationship indicates that more F than is in the matrix is involved. Ion chromatography would probably elucidate the precise form of the ionic species released. Glass-ionomer cements take up ions from solutions in which they are immersed. The levels are much higher than required to produce as internal/external equilibrium. Studies using dynamic SIMS and XPS give some information on ion location and elemental association. it is suggested that ToF SIMS would elucidate these further. Re-release of uptaken ions can vary considerably for different cements and ion species. Surface disruption of glass ionomers is caused by both F ion and monofluorophosphate ion and occurs much more readily in F containing cements than in F free ones. The mechanism of this process has not been elucidated. Analysis of the ions released from the cement as disruption occurs should provide an indication of the site of attack. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:544 / 555
页数:12
相关论文
共 80 条
[1]
AKSELSEN JP, 1987, CARIES RES, V21, P188
[2]
THE EVOLUTION OF GLASS-IONOMER CEMENTS [J].
ATKINSON, AS ;
PEARSON, GJ .
BRITISH DENTAL JOURNAL, 1985, 159 (10) :335-337
[3]
Billington RW, 2003, J DENT RES, V82, pB239
[4]
Glass ionomer cement: evidence pointing to fluorine release in the form of monofluorophosphate in addition to fluoride ion [J].
Billington, RW ;
Williams, JA ;
Dorban, A ;
Pearson, GJ .
BIOMATERIALS, 2004, 25 (17) :3399-3402
[5]
Effects of adding sodium and fluoride ions to glass ionomer on its interactions with sodium fluoride solution [J].
Billington, RW ;
Hadley, PC ;
Towler, MR ;
Pearson, GJ ;
Williams, JA .
BIOMATERIALS, 2000, 21 (04) :377-383
[6]
INVITRO EROSION OF 20 COMMERCIAL GLASS IONOMER CEMENTS MEASURED USING THE LACTIC-ACID JET TEST [J].
BILLINGTON, RW ;
WILLIAMS, JA ;
PEARSON, GJ .
BIOMATERIALS, 1992, 13 (08) :543-547
[7]
Kinetics of fluoride release from zinc oxide-based cements [J].
Billington, RW ;
Hadley, PC ;
Williams, JA ;
Pearson, GJ .
BIOMATERIALS, 2001, 22 (18) :2507-2513
[8]
BILLINGTON RW, 1987, J DENT RES, V66, P844
[9]
BILLINGTON RW, 1992, T 4 WORLD BIOM C, P213
[10]
Çehreli ZC, 2000, J DENT CHILD, V67, P330