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The Effect of Water Sorption and Solubility of Different Types of Conventional and Resin-Modified

Year 2005, Volume: 32 Issue: 1 - Volume: 32 Issue: 1, 25 - 34, 01.02.2005

Abstract

The aim of this study, was to compare thewater sorption and solubility of two traditional glassionomer cements GIC and one resin-modifiedglass ionomer cement RM GIC material. The traditional GIC dental materials which were CeramFil PSP Dental, England and Ionofil VocoGmbH, Germany and the RM GIC dental materialwhich was Rely-X 3M Dental Products, St Paul,USA were used in study. All specimens were prepared according to the manufacturer’s instructionsand then subjected to water sorption and solubilitytests based on the ISO 4049 and ADA No.8 requirements. In the study, weight changes of specimens ofthree materials were determinated after waterimmersion for 1 and 7 days and the results werecompared. Values were analyzed with two-wayANOVA and Duncan’s test at a 0.01 significancelevel. Results showed that, the Rely-X specimenshad significantly less water sorption and solubilityvalues than other two traditional GIC specimensafter water immersion for 7 days and the Ionofilspecimens had most water sorption and solubilityvalues than specimens of other two materials afterwater immersion for 7 days. There were not significantly differences statistically between specimensof three materials after water immersion for oneday

References

  • Rosenstiel SF, Land MF, Crispin MJ. Dental luting agents: A review of the current literature. J Prosthet Dent 1998; 80: 280-301.
  • Yap A, Lee CM. Water sorption and solubil- ity of resin-modified polyalkenoate cements. J Oral Rehabil 1997; 24: 310-4.
  • Mitra SB, Kedrowski BL. Long-term mechanical properties of glass ionomers. Dent Mater 1994; 10: 78-82.
  • Elaine LD, Xinyi Y, Robert BJ, Gerard WJ, Louis G. Shear bond strength and microleakage of light-cured glass ionomers. Am J Dent 1993; 6: 127- 9.
  • Cortes O, Garcia-Godoy F, Boj Jr. Bond strength of resin-reinforced glass ionomer cements after enamel etching. Am J Dent 1993; 6: 299-301.
  • Charlton DG, Haveman CW. Dentin surface treatment and bond strength of glass ionomers. Am J Dent 1994; 7: 47-9.
  • Swift EJ Jr, Pawlus MA, Vargas MA. Shear bond strengths of resin-modified glass-ionomer restorative materials. Oper Dent 1995; 20: 138-43.
  • Takahashi K, Emilson CG, Birkhed D. Fluoride release in vitro from various glass ionomer cements and resin composites after exposure to NaF solutions. Dent Mater 1993; 9: 350-4.
  • Burgess JO, Barghi N, Chan DC, Hummert T. A comparative study of three glass ionomer base materials. Am J Dent 1993; 6: 137-41.
  • Forss H. Release of fluoride and other ele- ments from light-cured glass ionomers in neutral and acidic conditions. J Dent Res 1993; 72: 1257-62.
  • Woolford MJ, Grieve AR. Release of fluo- ride from glass polyalkenoate (ionomer) cement sub- jected to radiant heat. J Dent 1995; 23: 233-7.
  • Hinoura K, Miyazaki M, Onose H. Dentin bond strength of light cured glass ionomer cements. J Dent Res 1991; 70: 1542-4.
  • Lin A, Melntyre NS, Davidson RD. Studies on the adhesion of glass-ionomer cements to dentin. J Dent Res 1992; 71: 1836-41.
  • Nicholson JW, McLean JW. A preliminary report on the effect of storage in water on the prop- erties of commercial light-cured glass-ionomer cements. Br Dent J 1992; 173:98-101.
  • Aboush YE, Jenkins JB. An evaluation of the bonding of glass-ionomer restoratives to dentine and enamel. Br Dent J 1986; 179-84.
  • Plant CG, Shovelton DS, Vlietstra Jr, Wartnaby JM. The use of glass ionomer cement in deciduous teeth. Br Dent J; 143: 271-4.
  • Nitta Y, Yamada T, Morigami M, Hosoda H. Study on dental cement Part 5. Cryo-SEM obser- vation on dentin-glass polyalkenoate cement inter- face . In: Iwami Y, Yamamoto H, Sato W, Kawai K, Torii M, Ebisu S. Weight change of various light- cured restorative materials after water immersion. Oper Dent 1998; 23: 132-7.
  • Mitra SB. Adhesion to dentin and physical properties of a light-cured glass ionomer liner/base. J Dent Res 1991; 70: 72-4.
  • Kovarik RE, Muncy MV. Fracture tough- ness of resin-modified glass ionomers. Am J Dent 1995; 8: 145-8.
  • Uno S, Finger WJ, Fritz U. Long-term mechanical characteristics of resin-modified glass ionomer restorative materials. Dent Mater 1996; 12: 64-9.
  • McLean JW, Nicholson JW, Wilson AD. Proposed nomenclature for glass-ionomer dental cements and related materials. Quintessence Int; 1994; 25: 587-9.
  • Nicholson JW, Alsarheed M. Changes on storage of polyacid-modified composite resins. J Oral Rehabil 1998; 25: 616-20.
  • Braden M. recent advances in dental mate- rials. In: Yap A, Lee CM. Water sorption and solu- bility of resin-modified polyalkenoate cements. J Oral Rehabil 1997; 24: 310-4.
  • Hinoura K, Onose H, Masutani S, Matsuzaki T, Moore BK. Volumetric change of light cured glass ionomer in water. J Dent Res 1993; 72: 222, Abstr. No.947.
  • Iwami Y, Yamamoto H, Sato W, Kawai K, Torii M, Ebisu S. Weight change of various light- cured restorative materials after water immersion. Oper Dent 1998; 23: 132-7.
  • Eliades G, Palaghias G. In vitro characteri- zation of visible light-cured glass ionomer liners. Dent Mater 1993; 9: 198-203.
  • Cho E, Kopel H, White SN. Moisture sus- ceptibility of resin-modified glass-ionomer materi- als. Ouintessence Int 1995; 26: 351-8.
  • Örtengren U, Wellendorf H, Karlsson S, Ruyter I E. Water sorption and solubility of dental composites and identification of monomers released in an aqueous environment. J Oral Rehabil 2001; 28: 1106-15.
  • Hondrum SO. Storage stability of dental luting agents. J Prosthet Dent 1999; 81: 464-8.
  • Feilzer AJ, Kakaboura AI, de Gee AJ, Davidson CL. The influence of water sorption on the development of setting shrinkage stress in traditional and resin-modified glass ionomer cements. Dent Mater 1995; 11: 186-90.
  • Cattani-Lorente MA, Dupuis V, Payan J, Moya F, Meyer JM. Effect of water on the physical properties of resin-modified glass ionomer cements. Dent Mater 1999; 15: 71-8.
  • Bek B, Doğan A. Farklı simanların çözünür- lüğünün in vitro incelenmesi. G.Ü. Diş Hek Fak. Derg 1988; 5: 125-33.
  • Cattani-Lorente MA, Dupuis V, Moya F, Payan J, Meyer JM. Comparative study of the phys- ical properties of a polyacid-modified composite resin and a resin-modified glass ionomer cement. Dent Mater 1999; 15: 21-32.
  • Crisp S, Lewis BG, Wilson AD. Characterization of glass-ionomer cements. 6. A study of erosion and water absorption in both neutral and acidic media. J Dent 1980; 8: 68-74.
  • Kanchanavasita W, Pearson GJ, Anstice HM. Water sorption characteristics of resin-modified glass-ionomer cements. J Dent Res 1996; 75:70, Abstract 422.
  • International Organization For Standardization. ISO 4049: Dental resin-base restorative materials. Switzerland 1985; TC106- WGI-TG9-DP4049.
  • American Dental Association, Council on Dental Materials And Devices. Revised American National Standards Institute/ American Dental Association, Specification No 8 for zinc phosphate cement. J Am Dent Assoc 1978; 96: 121-3.
  • Pearson GJ, Longman CM. Water sorption and solubility of resin-based materials following inadequate polymerization by a visible-light curing system. J Oral Rehabil 1989; 16: 57-61.
  • Momoi Y, McCabe JF. Hygroscopic expan- sion of resin based composites during 6 months of water storage. Br Dent J 1994; 176: 91-6.

FARKLI TİPLERDEKİ GELENEKSEL VE REZİN-MODİFİYE CAM İYONOMER SİMANLARIN SU EMİLİMİ VE SUDA ÇÖZÜNÜRLÜĞÜ

Year 2005, Volume: 32 Issue: 1 - Volume: 32 Issue: 1, 25 - 34, 01.02.2005

Abstract

Bu çalışmanın amacı, iki geleneksel camiyonomer siman CİS ve bir rezin-modifiye camiyonomer simanın RM CİS ; su emilimlerinin vesuda çözünürlüklerinin araştırılması vekarşılaştırılmasıdır. Çalışmada geleneksel CİSmateryaller olarak, Ceram Fil PSP Dental,England ve Ionofil Voco GmbH, Germany veRM CİS materyal olarak ise Rely-X 3M DentalProducts, St Paul, USA kullanıldı. Tüm örnekler,üretici firmaların talimatları doğrultusundahazırlandı ve ardından ISO 4049 ve ADA No.8kriterleri doğrultusunda su emilimi ve sudaçözünürlük testlerine tabi tutuldu. Çalışmada, her 3materyale ait örneklerin ağırlıklarındaki değişiklikler, suda 1 ve 7 gün bekletildikten sonradeğerlendirildi ve karşılaştırıldı. Değerler iki-yönlüANOVA ve Duncan testleri kullanılarak istatistiksel olarak analiz edildi. Sonuçlar; 7 gün suda bekletilmenin ardından, Rely X örneklerin, diğer ikigeleneksel CİS örneklere nazaran belirgin orandadaha az su emilimi ve suda çözünürlük değerleriverdiğini, İonofil örneklerin ise, 7 gün suda bekletilmenin ardından en fazla su emilimi ve sudaçözünürlük değerleri verdiğini gösterdi. 1 gün sudabekletilmenin ardından her 3 materyale ait örnekler arasında ise istatistiksel olarak belirgin farklılıkbulunmadı

References

  • Rosenstiel SF, Land MF, Crispin MJ. Dental luting agents: A review of the current literature. J Prosthet Dent 1998; 80: 280-301.
  • Yap A, Lee CM. Water sorption and solubil- ity of resin-modified polyalkenoate cements. J Oral Rehabil 1997; 24: 310-4.
  • Mitra SB, Kedrowski BL. Long-term mechanical properties of glass ionomers. Dent Mater 1994; 10: 78-82.
  • Elaine LD, Xinyi Y, Robert BJ, Gerard WJ, Louis G. Shear bond strength and microleakage of light-cured glass ionomers. Am J Dent 1993; 6: 127- 9.
  • Cortes O, Garcia-Godoy F, Boj Jr. Bond strength of resin-reinforced glass ionomer cements after enamel etching. Am J Dent 1993; 6: 299-301.
  • Charlton DG, Haveman CW. Dentin surface treatment and bond strength of glass ionomers. Am J Dent 1994; 7: 47-9.
  • Swift EJ Jr, Pawlus MA, Vargas MA. Shear bond strengths of resin-modified glass-ionomer restorative materials. Oper Dent 1995; 20: 138-43.
  • Takahashi K, Emilson CG, Birkhed D. Fluoride release in vitro from various glass ionomer cements and resin composites after exposure to NaF solutions. Dent Mater 1993; 9: 350-4.
  • Burgess JO, Barghi N, Chan DC, Hummert T. A comparative study of three glass ionomer base materials. Am J Dent 1993; 6: 137-41.
  • Forss H. Release of fluoride and other ele- ments from light-cured glass ionomers in neutral and acidic conditions. J Dent Res 1993; 72: 1257-62.
  • Woolford MJ, Grieve AR. Release of fluo- ride from glass polyalkenoate (ionomer) cement sub- jected to radiant heat. J Dent 1995; 23: 233-7.
  • Hinoura K, Miyazaki M, Onose H. Dentin bond strength of light cured glass ionomer cements. J Dent Res 1991; 70: 1542-4.
  • Lin A, Melntyre NS, Davidson RD. Studies on the adhesion of glass-ionomer cements to dentin. J Dent Res 1992; 71: 1836-41.
  • Nicholson JW, McLean JW. A preliminary report on the effect of storage in water on the prop- erties of commercial light-cured glass-ionomer cements. Br Dent J 1992; 173:98-101.
  • Aboush YE, Jenkins JB. An evaluation of the bonding of glass-ionomer restoratives to dentine and enamel. Br Dent J 1986; 179-84.
  • Plant CG, Shovelton DS, Vlietstra Jr, Wartnaby JM. The use of glass ionomer cement in deciduous teeth. Br Dent J; 143: 271-4.
  • Nitta Y, Yamada T, Morigami M, Hosoda H. Study on dental cement Part 5. Cryo-SEM obser- vation on dentin-glass polyalkenoate cement inter- face . In: Iwami Y, Yamamoto H, Sato W, Kawai K, Torii M, Ebisu S. Weight change of various light- cured restorative materials after water immersion. Oper Dent 1998; 23: 132-7.
  • Mitra SB. Adhesion to dentin and physical properties of a light-cured glass ionomer liner/base. J Dent Res 1991; 70: 72-4.
  • Kovarik RE, Muncy MV. Fracture tough- ness of resin-modified glass ionomers. Am J Dent 1995; 8: 145-8.
  • Uno S, Finger WJ, Fritz U. Long-term mechanical characteristics of resin-modified glass ionomer restorative materials. Dent Mater 1996; 12: 64-9.
  • McLean JW, Nicholson JW, Wilson AD. Proposed nomenclature for glass-ionomer dental cements and related materials. Quintessence Int; 1994; 25: 587-9.
  • Nicholson JW, Alsarheed M. Changes on storage of polyacid-modified composite resins. J Oral Rehabil 1998; 25: 616-20.
  • Braden M. recent advances in dental mate- rials. In: Yap A, Lee CM. Water sorption and solu- bility of resin-modified polyalkenoate cements. J Oral Rehabil 1997; 24: 310-4.
  • Hinoura K, Onose H, Masutani S, Matsuzaki T, Moore BK. Volumetric change of light cured glass ionomer in water. J Dent Res 1993; 72: 222, Abstr. No.947.
  • Iwami Y, Yamamoto H, Sato W, Kawai K, Torii M, Ebisu S. Weight change of various light- cured restorative materials after water immersion. Oper Dent 1998; 23: 132-7.
  • Eliades G, Palaghias G. In vitro characteri- zation of visible light-cured glass ionomer liners. Dent Mater 1993; 9: 198-203.
  • Cho E, Kopel H, White SN. Moisture sus- ceptibility of resin-modified glass-ionomer materi- als. Ouintessence Int 1995; 26: 351-8.
  • Örtengren U, Wellendorf H, Karlsson S, Ruyter I E. Water sorption and solubility of dental composites and identification of monomers released in an aqueous environment. J Oral Rehabil 2001; 28: 1106-15.
  • Hondrum SO. Storage stability of dental luting agents. J Prosthet Dent 1999; 81: 464-8.
  • Feilzer AJ, Kakaboura AI, de Gee AJ, Davidson CL. The influence of water sorption on the development of setting shrinkage stress in traditional and resin-modified glass ionomer cements. Dent Mater 1995; 11: 186-90.
  • Cattani-Lorente MA, Dupuis V, Payan J, Moya F, Meyer JM. Effect of water on the physical properties of resin-modified glass ionomer cements. Dent Mater 1999; 15: 71-8.
  • Bek B, Doğan A. Farklı simanların çözünür- lüğünün in vitro incelenmesi. G.Ü. Diş Hek Fak. Derg 1988; 5: 125-33.
  • Cattani-Lorente MA, Dupuis V, Moya F, Payan J, Meyer JM. Comparative study of the phys- ical properties of a polyacid-modified composite resin and a resin-modified glass ionomer cement. Dent Mater 1999; 15: 21-32.
  • Crisp S, Lewis BG, Wilson AD. Characterization of glass-ionomer cements. 6. A study of erosion and water absorption in both neutral and acidic media. J Dent 1980; 8: 68-74.
  • Kanchanavasita W, Pearson GJ, Anstice HM. Water sorption characteristics of resin-modified glass-ionomer cements. J Dent Res 1996; 75:70, Abstract 422.
  • International Organization For Standardization. ISO 4049: Dental resin-base restorative materials. Switzerland 1985; TC106- WGI-TG9-DP4049.
  • American Dental Association, Council on Dental Materials And Devices. Revised American National Standards Institute/ American Dental Association, Specification No 8 for zinc phosphate cement. J Am Dent Assoc 1978; 96: 121-3.
  • Pearson GJ, Longman CM. Water sorption and solubility of resin-based materials following inadequate polymerization by a visible-light curing system. J Oral Rehabil 1989; 16: 57-61.
  • Momoi Y, McCabe JF. Hygroscopic expan- sion of resin based composites during 6 months of water storage. Br Dent J 1994; 176: 91-6.
There are 39 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

H. Cenker Küçükeşmen This is me

D. Derya Öztaş This is me

Çiğdem Küçükeşmen This is me

Rukiye Kaplan This is me

Publication Date February 1, 2005
Published in Issue Year 2005 Volume: 32 Issue: 1 - Volume: 32 Issue: 1

Cite

Vancouver Küçükeşmen HC, Öztaş DD, Küçükeşmen Ç, Kaplan R. FARKLI TİPLERDEKİ GELENEKSEL VE REZİN-MODİFİYE CAM İYONOMER SİMANLARIN SU EMİLİMİ VE SUDA ÇÖZÜNÜRLÜĞÜ. EADS. 2005;32(1):25-34.