Author:
Abu Hasna Amjad,de Paula Ramos Lucas,Campos Tiago Moreira Bastos,de Castro Lopes Sergio Lucio Pereira,Rachi Maisour Ala,de Oliveira Luciane Dias,Carvalho Cláudio Antonio Talge
Abstract
AbstractCalcium silicate-based cements have diverse applications in endodontics. This study aimed to evaluate the antibiofilm action, biocompatibility, morphological structure, chemical composition and radiopacity of Five Mineral Oxides (5MO), Mineral Trioxide Aggregate Repair High Plasticity (MTA Repair HP), and Mineral Trioxide Aggregate (MTA) cements. MTT analysis was used to test the antibiofilm action of these cements against five anaerobic microorganisms, and test their biocompatibility with mouse macrophage (RAW 264.7) and osteoblasts (MG-63) cultures. Their morphological structure and chemical composition were evaluated by scanning electron microscopy (SEM) coupled to energy dispersion X-ray spectroscopy (EDX), and the phase analysis was performed by X-ray diffraction (XRD). Conventional radiography was used to assess the radiopacity of the cements. 5MO, MTA Repair HP and MTA were effective against Porphyromonas gingivalis, Parvimonas micra, Fusobacterium nucleatum and Prevotella intermedia, they were biocompatible with macrophages and osteoblasts after 5 min of contact, and they had adequate radiopacity to be used clinically. Bismuth oxide (Bi2O3) is used as a radiopacifier in MTA and 5MO, and calcium tungstate, in MTA Repair HP. Titanium dioxide (TiO2) (ANATASE) is responsible for the antimicrobial action and biocompatibility of 5MO.
Funder
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
Publisher
Springer Science and Business Media LLC
Reference44 articles.
1. Torabinejad, M. US5415547A—Tooth filling material and method of use—Google Patents. https://patents.google.com/patent/US5415547A/en (1993).
2. Linsuwanont, P., Wimonsutthikul, K., Pothimoke, U. & Santiwong, B. Treatment outcomes of mineral trioxide aggregate pulpotomy in vital permanent teeth with carious pulp exposure: The retrospective study. J. Endod. 43, 225–230 (2017).
3. Linsuwanont, P., Kulvitit, S. & Santiwong, B. Reinforcement of simulated immature permanent teeth after mineral trioxide aggregate apexification. J. Endod. 44, 163–167 (2018).
4. Alsulaimani, R. S. Immediate and delayed repair of 2 sizes of furcal perforations in dogs’ teeth using mineral trioxide aggregate cement. J. Endod. 44, 1000–1006 (2018).
5. Matsuzaki, K., Fujii, H. & Machida, Y. Experimental study of pulpotomy with calcium hydroxide-iodoform paste in dogs’ immature permanent teeth. Bull. Tokyo Dent. Coll. 31, 9–15 (1990).
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