Reinforcement of Glass Ionomer Cement: Incorporating with Silk Fiber
Subject Areas : Finite Element ModelingMina Bahrami-Abadi 1 , Masoumeh Khaghani 2 , Ahmad Monshi 3 , Ali Doostmohammadi 4 , Sara Alizadeh 5
1 - Young Researchers and Elite Club, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
2 - Young Researchers and Elite Club, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
3 - Advanced Materials Research Center, Faculty of Materials Engineering, Najafabad Branch, Islamic Azad University, Najafabad, Iran
4 - Materials Department, Engineering faculty, Shahrekord University, Shahrekord, Iran.
5 - Young Researchers and Elite Club, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
Keywords:
Abstract :
[1] R. A. Shiekh, I. A. Rahman, S. M. Masudi, N. Luddin, "Modification of glassionomer cement by incorporating hydroxyapatite- silica nano- powder composite: Sol– gel synthesis and characterization", Ceram. Int., Vol. 40, 2014, pp. 3165– 3170.
[2] S. Li, B. Su, J. Ran, J. Wang, L. Yan, X. Tu, "Effects of niobium oxide addition on the mechanical properties of glass ionomer cement", Mater. Sci. Forum, Vol. 815, 2015, pp. 373-378.
[3] F. S. Sayyedan, M. H. Fathi, H. Edris, A. Doostmohammadi, V. Mortazavi, A. Hanif, "Effect of forsterite nanoparticles on mechanical properties of glass ionomer cements", Ceram. Int., Vol. 40, 2014, pp. 10743-10748.
[4] J. Zoergiebel, N. Ilie, "Evaluation of a conventional glass ionomer cement with new zinc formulation: effect of coating, aging and storage agents", Clin. Oral. Invest., Vol. 17, 2013, pp. 619-626.
[5] H. A. Zraikat, J. E. A. Palamara, H. H. Messer, M. F. Burrow, E. C. Reynolds, "The incorporation of casein phosphopeptide–amorphous calcium phosphate into a glass ionomer cement", Dent. Mater., Vol. 27, 2011, pp. 235-243.
[6] M. Irie, H. Nakai, "Mechanical properties of silver-added glass ionomers and their bond strength to human tooth", Dent. Mater. J., Vol. 7, 1988, pp. 87-93.
[7] C. Farrugia, J. Camilleri, "Antimicrobial properties of conventional restorative filling materials and advances inantimicrobial properties of composite resins and glass ionomer cements—A literature review", Dent. Mater., Vol. 31, 2015, pp. 89-99.
[8] M. Kobayashi, M. Kon, K. Miyai, K. Asaoka, "Strengthening of glassionomer cement by compounding short fibers with CaOP2O5–SiO2-Al2O3 glass", Biomater., Vol. 21, 2000, pp. 2051-2058.
[9] K. Arita, H. Nakajima, M. Nishino, T. Okabe, "Effect of reinforcements on mechanical properties of glass ionomer", J. Dent. Res., Vol. 72, 1992, pp. 631.
[10] A. Moshaverinia, S. Ansari, M. Moshaverinia, N. Roohpour, J. A. Darr, I. Rehman, "Effects of incorporation of hydroxyapatite and fluoroapatite nanobioceramics into conventional glass ionomer cements (GIC)", Acta Biomater., Vol. 4, 2008, pp. 432-440.
[11] I. M. Hammouda, "Reinforcement of conventional glass-ionomer restorative material with short glass fibers", J. Mech. Behav. Biomed. Mater., Vol. 2, 2009, pp. 73- 81.
[12] R. M. Silva, P. H. N. Santos, L. B. Souza, V. C. Dumont, J. A. Soares, M. H. Santos, "Effects of cellulose fibers on the physical and chemical properties of glass ionomer dental restorative materials", Mater, Res, Bullet., Vol. 48, 2013, pp. 118-126.
[13] C. Vepari, D. L. Kaplan, "Silk as a biomaterial", Prog. Polym. Sci., Vol. 32, 2007, pp. 991-1007.
[14] J. G. Hardy, L. M. Romer, T. R. Scheibel, "Polymeric materials based on silk proteins", Polymer, Vol. 49, 2008, pp. 4309-4327.
[15] S. Mobini, B. Hoyer, M. Solati-Hashjin, A. Lode, N. Nosoudi, A. Samadikuchaksaraei, M. Gelinsky, "Fabrication and characterization of regenerated silk scaffolds reinforced with natural silk fibers for bone tissue engineering", J. Biomed. Mater. Res. Part A, Vol. 101A, 2013, pp. 2392-2404.
[16] H. Y. Cheung, M. P. Ho, K. T. Lau, F. Cardona, D. Hui, "Natural fibre-reinforced composites for bioengineering and environmental engineering applications", Compos: Part B, Vol. 40, 2009, pp. 655-663.
[17] F. Mirahmadi, M. Tafazzoli-Shadpour, M. A. Shokrgozar, S. Bonakdar, "Enhanced mechanical properties of thermosensitive chitosan hydrogel by silk fibers for cartilage tissue engineering", Mater. Sci. Eng: C, Vol, 33, 2013, pp. 4786-4794.
[18] S. M. Lee, D. Cho, W. H. Park, S. G. Lee, "Novel silk/poly(butylene succinate) biocomposites: the effect of short fibre content on their mechanical and thermal properties", Compos. Sci. Tech., Vol. 65 2005, pp. 647-657.
[19] H. I. Prosser, D. R. Powis, A. D. Wilson, "Glass ionomer cements of improved flexural strength", J. Dent. Res., Vol. 65, 1986, pp. 146-148.
[20] Y.W. Gu, A.U.J. Yap, P. Cheang, K.A. Khor, "Effects of incorporation of HA/ZrO2 into glass ionomer cement (GIC)", Biomater., Vol. 26, 2005, pp. 713-720.
[21] A. Moshaverinia, N. Roohpour, W. W. L. Chee, S. R. Schricker, "A review of powder modifications in conventional glass-ionomer dental cements", J. Mater. Chem., Vol. 21, 2011, pp. 1319-1328.
[22] E. J. Swift, A. U. Dogan, "Analysis of glass-ionomer cement with the use of electron microscopy", J. Prothet. Dent., Vol. 64, 1990, pp. 167-174.
[23] N. Miyata, "Dispersion toughening of ceramics", Bull. Ceram. Soc. Japan, Vol. 21, 1986, pp. 605-612.
[24] M. Kon, F. Kawano, Y. Tada, S. Inoue, K. Asaoka, N. Matsumoto, "Effect of crystallization on fracture strength of castable glass-ceramics containing two crystals", Dent. Mater. J., Vol. 13, 1994, pp. 47-54.
[25] G. H. Altman, F. Diaz, C. Jakuba, T. Calabro, R. L. Horan, J. Chen, H. Lu, J. Richmond, D. L. Kaplan, "Silk-based biomaterials," Biomater., Vol. 24, 2003, pp. 401-416.
[26] U. Lohbauer, R. Frankenberger, A. Clare, A. Petschelt, P. Greil, "Toughening of dental glass ionomer cements with reactive glass fibres," Biomater., Vol. 25, 2004, pp. 5217-5225.
[27] U. Lohbauer, J. Walker, S. Nikolaenko, J. Werner, A. Clare, A. Petschelt, P. Greil, "Reactive fibre reinforced glass ionomer cements", Biomater., Vol. 24, 2003, pp. 2901-2907.
[28] S. Garoushi, P. K. Vallittu, L. V. Lassila, "Short glass fiber reinforced restorative composite resin with semiinter penetrating polymer network matrix", Dent. Mater., Vol. 23, 2007, pp. 1356-1362.
[29] H. YliUrpo, L. V. Lassila, T. Närhi, P. K. Vallittu, "Compressive strength and surface characterization of glass ionomer cements modified by particles of bioactive glass", Dent. Mater., Vol. 21, 2005, pp. 201- 209.
[30] D. Xie, W. A. Brantley, B. M. Culbertson, G. Wang, "Mechanical properties and microstructures of glass-ionomer cements", Dent. Mater., Vol. 16, 2000, pp. 129-138.
[31] A. Kenji, Y. Aimi, S. h. Yukari, H. Keiko, A. Yoko, N. Keizo, S. Shigeru, "Hydroxyapatite particle characteristics influence the enhancement of the mechanical and chemical properties of conventional restorative glass ionomer cement", Dent. Mater., Vol. 30, 2011, pp. 672-683.
[32] H. Nakajima, J. H. Watkins, K. Arita, K. Hanaoka, T. Okabe, "Mechanical properties of glass ionomers under static and dynamic loading", Dent. Mater., Vol. 12, 1996, pp. 30-37.