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Impact of calcium aluminate cement with additives on dental pulp-derived cells

Calcium aluminate cement (CAC) has been highlighted as a promising alternative for endodontic use aiming at periapical tissue repair. However, its effects on dental pulp cells have been poorly explored. Objective: This study assessed the impact of calcium chloride (CaCl(2)) and bismuth oxide (Bi2O(3...

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Detalles Bibliográficos
Autores principales: Messias, Nadyne Saab, Grisote, Gabriela, Martorano, Antonio Secco, Fernandes, Roger Rodrigo, de Oliveira, Ivone Regina, Bombonato-Prado, Karina Fittipaldi, de Oliveira, Paulo Tambasco, de Castro-Raucci, Larissa Moreira Spinola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Faculdade De Odontologia De Bauru - USP 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6886393/
https://www.ncbi.nlm.nih.gov/pubmed/31800873
http://dx.doi.org/10.1590/1678-7757-2019-0105
Descripción
Sumario:Calcium aluminate cement (CAC) has been highlighted as a promising alternative for endodontic use aiming at periapical tissue repair. However, its effects on dental pulp cells have been poorly explored. Objective: This study assessed the impact of calcium chloride (CaCl(2)) and bismuth oxide (Bi2O(3)) or zinc oxide (ZnO) additives on odontoblast cell response to CAC. Methodology: MDPC-23 cells were exposed for up to 14 d: 1) CAC with 2.8% CaCl(2) and 25% ZnO (CACz); 2) CAC with 2.8% CaCl(2) and 25% Bi(2)O(3) (CACb); 3) CAC with 10% CaCl(2) and 25% Bi(2)O(3) (CACb+); or 4) mineral trioxide aggregate (MTA), placed on inserts. Non-exposed cultures served as control. Cell morphology, cell viability, gene expression of alkaline phosphatase (ALP), bone sialoprotein (BSP), and dentin matrix protein 1 (DMP-1), ALP activity, and extracellular matrix mineralization were evaluated. Data were compared using ANOVA (α=5%). Results: Lower cell density was detected only for MTA and CACb+ compared with Control, with areas showing reduced cell spreading. Cell viability was similar among groups at days one and three (p>0.05). CACb+ and MTA showed the lowest cell viability values at day seven (p>0.05). CACb and CACb+ promoted higher ALP and BSP expression compared with CACz (p<0.05); despite that, all cements supported ALP activity. Matrix mineralization were enhanced in CACb+ and MTA. Conclusion: In conclusion, CAC with Bi(2)O(3), but not with ZnO, supported the expression of odontoblastic phenotype, but only the composition with 10% CaCl(2) promoted mineralized matrix formation, rendering it suitable for dentin-pulp complex repair.