Evaluation of pH and calcium ion release of new root-end filling materials.
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R. A. Bernardes | I. G. de Moraes | C. Bramante | R. B. Garcia | N. Bernardineli | B. C. de Vasconcelos | M. H. Duarte | P. Padilha | S. M. L. Cruz
[1] Takashi Saito,et al. The effect of mineral trioxide aggregate on the mineralization ability of rat dental pulp cells: an in vitro study. , 2008, Journal of endodontics.
[2] I. G. de Moraes,et al. Evaluation of the tissue response to MTA and MBPC: Microscopic analysis of implants in alveolar bone of rats. , 2006, Journal of endodontics.
[3] P. Eleazer,et al. Elemental analysis of crystal precipitate from gray and white MTA. , 2006, Journal of endodontics.
[4] A. Yap,et al. Comparison of the physical and mechanical properties of MTA and portland cement. , 2006, Journal of endodontics.
[5] K. Matsushima,et al. Effects of pH on mineralization ability of human dental pulp cells. , 2006, Journal of endodontics.
[6] E. T. Koh,et al. Properties of a new root-end filling material. , 2005, Journal of endodontics.
[7] H. Gerth,et al. Chemical and physical surface and bulk material characterization of white ProRoot MTA and two Portland cements. , 2005, Dental materials : official publication of the Academy of Dental Materials.
[8] C. R. Sipert,et al. In vitro antimicrobial activity of Fill Canal, Sealapex, Mineral Trioxide Aggregate, Portland cement and EndoRez. , 2005, International endodontic journal.
[9] E. Araújo,et al. Physico-chemical properties of MTA and a novel experimental cement. , 2005, International endodontic journal.
[10] M. Kuga,et al. Arsenic release provided by MTA and Portland cement. , 2005, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[11] M. Kuga,et al. pH and calcium ion release of 2 root-end filling materials. , 2003, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[12] T. Fujita,et al. The effect of extracellular calcium ion on gene expression of bone-related proteins in human pulp cells. , 2003, Journal of endodontics.
[13] Silva Néto,et al. CAPACIDADE SELADORA E ADAPTAÇÃO MARGINAL PROPORCIONADAS POR ALGUNS MATERIAIS QUANDO UTILIZADOS EM PERFURAÇÕES NA REGIÃO DE FURCA DE MOLARES HUMANOS , 2002 .
[14] R. Holland,et al. Reaction of rat connective tissue to implanted dentin tube filled with mineral trioxide aggregate, Portland cement or calcium hydroxide. , 2001, Brazilian dental journal.
[15] J. D. PÉcora,et al. Antimicrobial and chemical study of MTA, Portland cement, calcium hydroxide paste, Sealapex and Dycal. , 2000, Brazilian dental journal.
[16] R. Holland,et al. Reaction of rat connective tissue to implanted dentin tubes filled with mineral trioxide aggregate or calcium hydroxide. , 1999, Journal of endodontics.
[17] A. Heinecke,et al. Effect of root canal filling materials containing calcium hydroxide on the alkalinity of root dentin. , 1995, Endodontics & dental traumatology.
[18] M. Torabinejad,et al. Physical and chemical properties of a new root-end filling material. , 1995, Journal of endodontics.
[19] T R Pitt Ford,et al. Sealing ability of a mineral trioxide aggregate when used as a root end filling material. , 1993, Journal of endodontics.
[20] M. Torabinejad,et al. Sealing ability of a mineral trioxide aggregate for repair of lateral root perforations. , 1993, Journal of endodontics.
[21] D. Hartmann,et al. Odontoblast-like cytodifferentiation of human dental pulp cells in vitro in the presence of a calcium hydroxide-containing cement. , 1991, Archives of oral biology.
[22] H. Stanley. Pulp capping: conserving the dental pulp--can it be done? Is it worth it? , 1989, Oral surgery, oral medicine, and oral pathology.