4.1 Article

Investigation of a modified hydraulic calcium silicate-based material - Bio-C Pulpo

期刊

BRAZILIAN ORAL RESEARCH
卷 35, 期 -, 页码 -

出版社

SOCIEDADE BRASILEIRA DE PESQUISA ODONTOLOGICA
DOI: 10.1590/1807-3107bor-2021.vol35.0077

关键词

Endodontics; Dental Pulp Capping

资金

  1. State of Sao Paulo Research Foundation [FAPESP 2017/05096-7, 2017/18413-0, 2018/16722-9, 2018/06515-6]

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The study evaluated a new hydraulic calcium silicate-based modified material and compared it with MTA Repair HP and MTA Angelus in terms of physicochemical, biological, and antimicrobial properties. Testing included color luminosity, color change, radiopacity, setting time, linear flow, volumetric filling, volume change, cytotoxicity, and microbiological assessment. MTA Repair HP showed faster setting time and highest cytocompatibility, while Bio-C Pulpo exhibited the highest alkalinity and cytotoxicity, with concerns over properties modification and calcium hydroxide deposition.
This study evaluated the physicochemical, biological, and antimicrobial properties of a new hydraulic calcium silicate-based modified material, and compared it with MTA Repair HP and MTA Angelus. The materials were assessed regarding color luminosity (L), color change, radiopacity, setting time, and ISO 6876:2012 linear flow. Volumetric filling and volume change were evaluated using microcomputed-tomography (mu CT). Chemical characterization after 28 days in Hank's Balanced Salt Solution (HBSS) and pH analysis were also assessed. Biological characterization of cytotoxicity and microbiological assessment were also undertaken. Shapiro-Wilk, ANOVA, Levene and post hoc analyses with Bonferroni correction were performed, adopting a 5% significance level (p <0.05). Bio-C Pulpo exhibited the highest L values after 90 days. All tested materials demonstrated color change during the analyses, and had radiopacity above 5 mm Al. MTA Repair HP set faster than Bio-C Pulpo, whereas the latter had the highest linear flow. MTA Repair HP had the highest volumetric filling in mu CT analysis. Bio-C Pulpo showed the highest alkalinity during all tested periods, and the highest volumetric loss (above 9%), in comparison with MTA Repair HP and MTA Angelus. Bio-C Pulpo did not form calcium hydroxide after hydration. MTA Repair HP demonstrated the highest cytocompatibility, and Bio-C Pulpo, the highest cytotoxicity. No inhibition halos were observed for any material, and similar higher turbidity values were seen after direct contact. Composition additives used in Bio-C Pulpo modified its properties, and both the absence of calcium hydroxide deposition after hydration, and the related cytotoxicity of this material are of particular concern.

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