MTA-Based Cements: Biocompatibility and Effects on the Gene Expression of Collagen Type 1 and TGF- β 1

This study sought to evaluate the biocompatibility of Neomineral Trioxide Aggregate (Neo-MTA), MTA Repair High Plasticity (MTA-HP), and Mineral Trioxide Aggregate-Angelus white (MTA-Ang) in fibroblasts of human dental pulp. Morphology was evaluated after 24 h of incubation. assay and cell adhesion t...

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Veröffentlicht in:BioMed research international 2022, Vol.2022 (1), p.2204698
Hauptverfasser: Escobar-García, Diana María, Medina-Rosas, María Guadalupe, González-Amaro, Ana María, Méndez-González, Verónica, Flores, Héctor, Pozos-Guillén, Amaury
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Sprache:eng
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Zusammenfassung:This study sought to evaluate the biocompatibility of Neomineral Trioxide Aggregate (Neo-MTA), MTA Repair High Plasticity (MTA-HP), and Mineral Trioxide Aggregate-Angelus white (MTA-Ang) in fibroblasts of human dental pulp. Morphology was evaluated after 24 h of incubation. assay and cell adhesion tests were performed at 24 h of treatment. Cell proliferation assays (MTSs) and Annexin V were performed at 48 h incubation with different treatments. The expression of Col-1 and TGF- 1 was tested by endpoint PCR at 5 days of treatment. Morphological changes were observed in all groups. Neo-MTA and MTA-Ang were associated with increased cell viability, and all materials induced apoptosis, with a higher percentage in the MTA-HP group than in the other groups. In the LIVE/DEAD assay, there was more damage to the cell membrane in the group of cells treated with MTA-HP than in the other groups. Neo-MTA and MTA-Ang presented similar biocompatibility, and both showed greater biocompatibility than MTA-HP. MTA-HP and MTA-Ang increased Col-1A gene expression, and Neo-MTA and MTA-Ang increased TGF- 1 gene expression in a similar way.
ISSN:2314-6133
2314-6141
DOI:10.1155/2022/2204698