; Bernardineli, N.; Garcia, R.B. Cantekin, K.; Avci, S. Evaluation of shear bond strength of two resin-based composites and glass ionomer cement to pure tricalcium silicate-based cement (Biodentine. Interfacial characteristics of Biodentine and MTA with dentine in simulated body fluid. Komabayashi, T.; Zhu, Q.; Eberhart, R.; Imai, Y. COVID-19 is an emerging, rapidly evolving situation. ; Piva, E. Physical and Biological Properties of a High-Plasticity Tricalcium Silicate Cement. indirect pulp capping, as a protective base/liner under composites, amalgams, cements, and other base materials. ; Schäfer, E.; Dammaschke, T. Shear bond strength of Biodentine, ProRoot MTA, glass ionomer cement and composite resin on human dentine ex vivo. The major challenge for the modern approach in restorative dentistry is to induce the remineralization of hypomineralized carious dentine, and therefore, protecting and preserving the vital pulp. NA—not available; SE—self-etch; DBA—dentine bonding agent. 2018;11:2173 doi: 10.3390/ma11112173. ; Ferreira, M.M. In Vitro 2010. Comparison of Setting Time, Compressive Strength, Solubility, and pH of Four Kinds of MTA. NA—not available; E&R—etch and rinse; 2-SE—two-step self-etch; DBA—dentine bonding agent; SBS—shear bond strength. 1201-1206. Mente, J.; Hufnagel, S.; Leo, M.; Michel, A.; Gehrig, H.; Panagidis, D.; Saure, D.; Pfefferle, T. Treatment Outcome of Mineral Trioxide Aggregate or Calcium Hydroxide Direct Pulp Capping: Long-term Results. Shear bond strength of different restorative materials to mineral trioxide aggregate and Biodentine. This comparatively new biomaterial is claimed to possess properties similar to MTA and is currently being explored for vital pulp therapy procedures. Effect of different surface treatment protocols on the shear bond strength of perforation repair materials to resin composite. Evaluation of the physical and chemical properties of two commercial and three experimental root-end filling materials. Available online: Jun, S.-K.; Lee, J.-H.; Lee, H.-H. Baroudi, K.; Samir, S. Sealing Ability of MTA Used in Perforation Repair of Permanent Teeth; Literature Review.  |  ; Kucukyilmaz, E.; Sari, T. Evaluation of temperature changes in the pulp chamber during polymerization of light-cured pulp-capping materials by using a VALO LED light curing unit at different curing distances. Vital pulp therapy of mature permanent teeth with irreversible pulpitis from the perspective of pulp biology. Tunnel defects in dentin bridges: Their formation following direct pulp capping. ; Forner, L.; Llena, C.; an Lozano, A.; Moraleda, J.M. help prevent the need for a re-entry procedure weeks later for removal of the residual caries, with further excavation steps. Felman, D.; Parashos, P. Coronal tooth discoloration and white mineral trioxide aggregate. Managing Carious Lesions: Consensus Recommendations on Carious Tissue Removal. In Vivo evaluation of the inflammatory response and IL-6 immunoexpression promoted by Biodentine and MTA Angelus. Properties of NeoMTA plus and MTA plus cements for endodontics. 30. Nekoofar, M.H. ; Jensen, E.; Örtengren, U.; Michelsen, V.B. Oral Radiol. ; Omar, N.; Salem, H.N. ; Lo, E.C.M. Hence, the caries progression is arrested with the simple reduction in the number of bacteria. • - Stimulate reparative dentin formation. Cells. • 2- Mineral Trioxide Aggregate MTA. ; Li, H.B. Fonseca, T.S. ; Simon, S.; El-Karim, I.; Kundzina, R.; Krastl, G.; Dammaschke, T.; Fransson, H.; Markvart, M.; et al. Muhamad, A.; Azzaldeen, A.; Hanali, A. Pameijer, C.H. ; Alamoudi, N.M.; Khafagi, M.G. Sulwińska, M.; Szczesio, A.; Bołtacz-Rzepkowska, E. Bond strength of a resin composite to MTA at various time intervals and with different adhesive strategies. Mc Cabe, P.S. Asgary, S.; Parirokh, M.; Eghbal, M.; Brink, F. Chemical Differences between White and Gray Mineral Trioxide Aggregate. Nowicka, A.; Lipski, M.; Parafiniuk, M.; Sporniak-Tutak, K.; Lichota, D.; Kosierkiewicz, A.; Kaczmarek, W.; Buczkowska-Radlińska, J. Zhu, C.; Ju, B.; Ni, R. Clinical outcome of direct pulp capping with MTA or calcium hydroxide: A systematic review and meta-analysis. Yelamali, S.; Patil, A.C. About, I. Dentin-pulp regeneration: The primordial role of the microenvironment and its modification by traumatic injuries and bioactive materials. ; Cooper, P.R. Katge, F.A. The article is aimed at analyzing the available research and comparing the properties of bio-inductive materials in direct and indirect pulp capping procedures. 2020 doi: 10.1016/j.joen.2019.11.009. Hargreaves, K.M. Zanini, M.; Sautier, J.M. Nevertheless, to this day there is insufficient evidence and there have been too few clinical studies to support its reliability in vital pulp therapies. ; Singh, U.P. • - Adhere well to dentin and restorative material. 2006;31(2):68-71. ; Patil, D.P. In the present study, no differences were observed in the outcomes between the two indirect pulp-capping materials, and both materials exhibited very similar success rates. Hong, K. Kwon Dentin Bonding of TheraCal LC Calcium Silicate Containing an Acidic Monomer: An In Vitro Study. The promotion of biologically-based treatment strategies has been advocated for partial caries removal aimed at avoiding carious pulp exposure. ; Lumley, P.J. This systematic review is reported using the PRISMA guidelines (Moher et al. Ha, W.N. There are only a few studies on novel CSMs, as the scientific evidence is in general focused on materials that have been available for a longer time, such as ProRoot MTA and later Biodentine. Long term clinical observations of calcium hydroxide are incomparable to any other bioactive material, as the first reports of successful pulpal healing using Ca (OH) 2 were published between 1934 and 1941 [ 20 ]. Available online: Rajasekharan, S.; Martens, L.C. Pulpdent Activa BioActive White Paper. Int Endod J. Benetti, A.R. ; Zapata, R.O. Ha, H.-T. 2020 Oct 29;15:216-225. doi: 10.1016/j.reth.2020.10.001. Formation following direct pulp capping agents in Carious teeth ; Llena, C. ; Hieawy A.. Being explored for vital pulp therapy of Mature permanent teeth ; 9 ( 10 ) doi... Be used in Perforation repair of permanent molars and immunohistochemistry bonding agent SBS—shear... A quantitative systematic review and Meta-Analysis MTA-like material for pulp capping have read and agreed to the occlusal.. Hong, K. bond strength of different restorative materials to resin composite ; Oñate-Sánchez R.E. 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