Research Journal of Biological Sciences

Year: 2012
Volume: 7
Issue: 3
Page No. 123 - 127

Genotoxicity of Mineral Trioxide Aggregate and Three Endodontic Cements on Human Gingival Fibroblast Cells

Authors : Mohammad-Ghasem Aminozarbian, Batool Hashemibeni, Ali Ghazalgoo and Fariba Heidari

References

AAE, 2004. New materials/technologies position paper. American Association of Endodontists.

Auletta, A. and J. Ashby, 1988. Workshop on the relationship between short-term information and carcinogenicity, Williamsburg, Virginia, January 20-23, 1987. Environ. Mol. Mutagen., 11: 135-145.
PubMed  |  

Braz, M.G., E.A. Camargo, D.M. Salvadori, M.E. Marques and D.A. Ribeiro, 2006. Evaluation of genetic damage in human peripheral lymphocytes exposed to mineral trioxide aggregate and portland cements. J. Oral Rehabil, 33: 234-239.
PubMed  |  Direct Link  |  

Camilleri, J. and T.R.P. Ford, 2006. Mineral trioxide aggregate: A review of the constituents and biological properties of the material. Int. Endod. J., 39: 747-754.
PubMed  |  

Camilleri, J., F.E. Montesin, K. Brady, R. Sweeney, R.V. Curtis and T.R. Ford, 2005. The constitution of mineral trioxide aggregate. Dent. Mater., 21: 297-303.
PubMed  |  

Da Silva, G.N., M.G. Braz, E.A. de Camargo, D.M.F. Salvadori and D.A. Ribeiro, 2006. Genotoxicity in primary human peripheral lymphocytes after exposure to regular and white mineral trioxide aggregate. Oral. Surg. Oral. Med. Oral. Pathol. Oral. Radiol. Endod., 102: e50-e54.
Direct Link  |  

De Morais, C.A., N. Bernardineli, R.B. Garcia, M.A. Duarte and D.M. Guerisoli, 2006. Evaluation of tissue response to MTA and Portland cement with iodoform. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod., 102: 417-421.
PubMed  |  

De Oliveira, M.G., C.B. Xavier, F.F. Demarco, A.L.B. Pinheiro, A.T. Costa and D.H. Pozza, 2007. Comparative chemical study of MTA and portland cements. Braz. Dent. J., 18: 3-7.
Direct Link  |  

Fernandes, K., E. Santos, S. Reda and L.S. Motta, 2010. Biocompatibility analysis of MTA, portland cement and modified portland cement on cultured fibroblast cells and subcutaneous tissue. Conscientiae Saude, 9: 11-16.

Franz, A., K. Konradsson, F. Konig, J.W. van Dijken and A. Schedle, 2006. Cytotoxicity of calcium aluminate cement in comparison with other dental cements and resin-based materials. Acta Odontol. Scand., 64: 1-8.

Hartmann, A., E. Agurell, C. Beevers, S. Brendler-Schwaab and B. Burlinson et al., 2003. Recommendations for conducting the in vivo alkaline comet assay. Mutagenesis, 18: 45-51.
CrossRef  |  PubMed  |  Direct Link  |  

Hesaraki, S., A. Zamanian and F. Moztarzadeh, 2009. Effect of adding sodium hexametaphosphate liquefier on basic properties of calcium phosphate cements. J. Biomed. Mater. Res. A., 88A: 314-321.
CrossRef  |  

Kimura, M., Y. Sorata, S. Yanome, O. Hideshima and M. Yokomoto et al., 1991. Study of root canal cements comprising calcium aluminate. Shoni Shikagaku Zasshi, 29: 44-54.
PubMed  |  

Koh, E.T., F. McDonald, T.R.P. Ford and M. Torabinejad, 1998. Cellular response to mineral trioxide aggregate. J. Endod., 24: 543-547.

Koh, E.T., M. Torabinejad, T.R.P. Ford, K. Brady and F. Mcdonald, 1997. Mineral trioxide aggregate stimulates a biological response in human osteoblasts. J. Biomed. Mater. Res., 37: 432-439.
PubMed  |  

Kratchman, S.I., 2004. Perforation repair and one-step apexification procedures. Dent. Clin. North Am., 48: 291-307.
PubMed  |  

Lalis, R.M., M.L. Esain, G.A. Kokubu, J. Willis, C. Chaves and D.R. Grana, 2009. Rat subcutaneous tissue response to modified Portland Cement, a new mineral trioxide aggregate. Braz. Dent. J., 20: 112-117.
CrossRef  |  PubMed  |  

Maxim, L.D. and E.E. McConnell, 2005. A review of the toxicology and epidemiology of wollastonite. Inhal. Toxicol., 17: 451-466.
PubMed  |  

McNamara, R.P., M.A. Henry, W.G. Schindler and K.M. Hargreaves, 2010. Biocompatibility of accelerated mineral trioxide aggregate in a rat model. J. Endod., 36: 1851-1855.
Direct Link  |  

Ribeiro, D.A., M.A. Matsumoto, M.A. Duarte, M.E. Marques and D.M. Salvadori, 2005. In vitro biocompatibility tests of two commercial types of mineral trioxide aggregate. Braz. Oral Res., 19: 183-197.

Ribeiro, D.A., M.A. Matsumoto, M.A. Duarte, M.E. Marques and D.M. Salvadori, 2006. Ex vivo biocompatibility tests of regular and white forms of mineral trioxide aggregate. Int. Endod. J., 39: 26-30.
PubMed  |  

Ribeiro, D.A., M.A.H. Duarte, M.A. Matsumoto, E.A.A. Marques and D.M.F. Salvadori, 2005. Biocompatibility in vitro tests of mineral trioxide aggregate and regular and white Portland cements. J. Endod., 31: 605-607.
Direct Link  |  

Ribeiro, D.A., M.M. Sugui, M.A. Matsumoto, M.A.H. Duarte, M.E.A. Marques and D.M.F. Salvadori, 2006. Genotoxicity and cytotoxicity of mineral trioxide aggregate and regular and white portland cements on chinese hamster ovary (CHO) cells in vitro. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod., 101: 258-261.
Direct Link  |  

Ribeiro, D.A., P.L.A. de Lima, M.E.A. Marques and D.M.F. Salvadori, 2006. Lack of DNA damage induced by fluoride on human lymphoma and human fibroblast cells by single cell gel (Comet) assay. Braz. Dent. J., 17: 91-94.

Thevenot, P., W. Hu and L. Tang, 2008. Surface chemistry influences implant biocompatibility. Curr. Top. Med. Chem., 8: 270-280.
PubMed  |  

Tice, R.R., E. Agurell, D. Anderson, B. Burlinson and A. Hartmann et al., 2000. Single cell gel/comet assay: Guidelines for in vitro and in vivo genetic toxicology testing. Environ. Mol. Mutagen., 35: 206-221.
CrossRef  |  PubMed  |  Direct Link  |  

Torabinejad, M. and M. Parirokh, 2010. Mineral trioxide aggregate: A comprehensive literature review-Part II: Leakage and biocompatibility investigations. J. Endod., 36: 190-202.
PubMed  |  

Torabinejad, M., C.U. Hong, S.J. Lee, M. Monsef and T.R.P. Ford, 1995. Investigation of mineral trioxide aggregate for root-end filling in dogs. J. Endod., 21: 603-608.
Direct Link  |  

Torabinejad, M., P.W. Smith, J.D. Kettering and T.R.P. Ford, 1995. Comparative investigation of marginal adaptation of mineral trioxide aggregate and other commonly used root end filling materials. J. Endod., 21: 295-299.
CrossRef  |  

Torabinejad, M., T.F. Watson and T.R.P. Ford, 1993. Sealing ability of a mineral trioxide aggregate when used as a root-end filling material. J. Endod., 19: 591-595.
PubMed  |  

Torabinejad, M., T.R.P. Ford, D.J. McKendry, H.R. Abedi, D.A. Miller and S.P. Kariyawasam, 1997. Histologic assessment of mineral trioxide aggregate as a root-end filling in monkeys. J. Endod., 23: 225-228.
PubMed  |  

Yavari, H., S.H. Shahi, S. Rahimi and S.L. Shakouhi, 2009. Connective tissue reaction to white and gray MTA mixed with distilled water or chlorhexidine in rats. Int. Endodontic J., 4: 25-30.

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved