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The Effects of Maturity and Dehydration Shrinkage on Resin-modified Glass-ionomer Restorations
S.K. Sidhu
Department of Conservative Dentistry (Floor 25)
M. Sherriff
Department of Dental Materials Science, United Medical & Dental Schools of Guy's and St Thomas' Hospitals, Guy's Hospital, London Bridge, London SE1 9RT, United Kingdom
T.E. Watson
Department of Conservative Dentistry (Floor 25)
The dimensional change, including hygroscopic change, of adhesive dental materials is a clinically important topic, since excessive changes could cause debonding from tooth structure. The water balance of glass-ionomer cements arises mainly from their sensitivity to the environment; depending on the surroundings, they can gain or lose water, either of which can be potentially damaging. These effects become less noticeable as the cement ages. The effects of maturity of the newer resin-modified glass-ionomer materials and their responses to changes in moisture are unknown. Using confocal microscopy, we examined the effects of dehydration stress on the glass-ionomer/tooth interface in specimens of various degrees of maturity. Wedge-shaped cervical cavities in extracted teeth were restored with one of three resin-modified glass-ionomer restorative materials. The control specimens were restored with a conventional glass ionomer. The samples were left to mature, then sectioned and examined at 1 day, 1 wk, 1 mo, 3 mos, 6 mos, and 1 yr. After being sectioned, each specimen was examined immediately with a confocal microscope with water-immersion objectives so that the subsurface interfacial characteristics could be studied. The specimen was then allowed to dehydrate under the microscope, with further examinations at 15, 30, and 60 min. Generally, gap formation at the interface occurred within 15 min of dehydration. All materials showed a different pattern of gap change with maturity, probably due to the different setting mechanisms involved. All of them were susceptible to dehydration shrinkage up to 3 mos of maturity. At 6 mos and 1 yr, Fuji II and Fuji II LC showed insensitivity to dehydration. Vitremer and Photac-Fil showed less sensitivity to dehydration at 1 yr than at 6 mos. The results of this study of the maturing polymerized resin-modified cements have potential clinical implications in the handling of these materials; the addition of resin has not significantly reduced the glass ionomer's susceptibility to dehydration problems.
Key Words: glass ionomer dehydration resin-modified maturity confocal.
REFERENCES
- Altman DG (1991). Practical statistics for medical research. London: Chapman and Hall, pp. 211,259-261.
- Anstice HM, Nicholson JW (1992). Studies on the structure of light-cured glass-ionomer cements. J Mater Sci Mater Med 3:447-451.
- Antonucci JM, McKinney JE, Stansbury JW (1988). Resin-modified glass-ionomer dental cements field of the invention. US Patent Application 7160856. Springfield, VA: National Technical Information Service.
- Davidson C. (1994). Glass ionomer bases under posterior composites. In: Glass ionomers: The next generation. Proceedings of the 2nd International Symposium on Glass Ionomers, June, 1994, Philadelphia, PA. Hunt PR, editor. Philadelphia, PA: International Symposia in Dentistry, PC, pp. 175-179.
- Dunnett CW (1955). A multiple comparisons procedure for comparing several treatments with a control. J Am Statist Assoc 50:1096-1121.[CrossRef]
- Feilzer AJ, De Gee AJ, Davidson CL (1987). Setting stress in composite resin in relation to configuration of the restoration. J Dent Res 66:1636-1639.
- Jordan RE, Suzuki M., MacLean DF (1989). Light cured glass ionomers. J Esthet Dent 1:59-61.[Medline]
[Order article via Infotrieve]
- Mathis RS, Ferracane JL (1989). Properties of a glass ionomer/resin-composite hybrid material. Dent Mater 6:355-358.
- Mitra SB (1989). Photocurable ionomer cement systems. European Patent Application No. 88312127.9, publication No. 0323120.
- Nicholson JW, Anstice HM, McLean JW (1992). A preliminary report on the effect of storage in water on the properties of commercial light-cured glass-ionomer cements. Br Dent J 173:98-101.[Medline]
[Order article via Infotrieve]
- Sidhu SK, Watson TF (1994). The effect of dehydration on resin-modified glass-ionomer restorations. Singapore Dent J 19(1, Suppl):44-48.
- Sidhu SK, Watson TF (1995). Resin-modified glass ionomer materials. A status report for the American Journal of Dentistry. Am J Dent 8:59-67.[Medline]
[Order article via Infotrieve]
- Um CM, ilo G. ( 1992). The effect of early water contact on glass-ionomer cements. Quintessence Int 23:209-214.[Medline]
[Order article via Infotrieve]
- Watson TF (1989). A confocal optical microscope study of the morphology of the tooth/restoration interface using Scotchbond 2 dentin adhesive. J Dent Res 68:1124-1131.
- Watson TF (1990). A confocal microscopic study of some factors affecting the adaptation of a light-cured glass ionomer to tooth tissue. J Dent Res 69:1531-1538.
- Wilson AD (1990). Resin-modified glass-ionomer cements. Int J Prosthodont 3:425-429.[Medline]
[Order article via Infotrieve]
- Wilson AD, McLean JW, editors (1988). Glass ionomer cement. Chicago, IL: Quintessence Publishing Co., Inc., p. 51.
- Wilson AD, Paddon JM (1993). Dimensional changes occurring in a glass-ionomer cement. Am J Dent 6:280-282.[Medline]
[Order article via Infotrieve]
Journal of Dental Research, Vol. 76, No. 8,
1495-1501 (1997)
DOI: 10.1177/00220345970760081201

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