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Experimental resin-based dual-cured calcium aluminate and calcium titanate materials for vital pulp therapy
Vieira, Fabiano Paiva; Gonini Júnior, Alcides; Piva, Evandro; Oliveira, Héllen de Lacerda; da Rosa, Wellington Luiz de Oliveira; da Silva, Adriana Fernandes; Vitti, Rafael Pino; Zanchi, Cesar Henrique; Cava, Sergio da Silva.
  • Vieira, Fabiano Paiva; Instituto Federal de Goiás. Department of Academic Areas. Formosa. BR
  • Gonini Júnior, Alcides; Universidade Estadual de Londrina. School of Dentistry. Londrina. BR
  • Piva, Evandro; Universidade Federal de Pelotas - UFPes. School of Dentistry. Department of Restorative Dentistry. Pelotas. BR
  • Oliveira, Héllen de Lacerda; Faculdade Sobres. School of Dentistry. Santa Maria. BR
  • da Rosa, Wellington Luiz de Oliveira; Universidade Federal de Pelotas - UFPes. School of Dentistry. Department of Restorative Dentistry. Pelotas. BR
  • da Silva, Adriana Fernandes; Universidade Federal de Pelotas - UFPes. School of Dentistry. Department of Restorative Dentistry. Pelotas. BR
  • Vitti, Rafael Pino; Herminio Ometto University Center. School of Dentistry. Araras. BR
  • Zanchi, Cesar Henrique; Universidade Federal de Pelotas - UFPes. School of Dentistry. Department of Restorative Dentistry. Pelotas. BR
  • Cava, Sergio da Silva; Universidade Federal de Pelotas - UFPes. Materials Engineering Graduate Program. Advanced Crystal Growth and Photonics. Pelotas. BR
Braz. oral res. (Online) ; 36: e037, 2022. tab, graf
Article in English | LILACS-Express | LILACS, BBO | ID: biblio-1364588
ABSTRACT
Abstract This paper evaluates the physicochemical and biological properties of experimental resin-based dual-cured calcium aluminate (CA) and calcium titanate (CTi) materials for vital pulp therapy (VPT). The experimental dual-cured materials were obtained as two pastes a) Bis-EMA 10, PEG 400, DHEPT, EDAB, camphorquinone, and butylated hydroxytoluene; and b) fluoride ytterbium, Bis-EMA 10, Bis-EMA 30, benzoyl peroxide, and butylated hydroxytoluene. The materials were divided into six groups based on the added calcium component MTA (MTA®, Angelus); CLQ (Clinker-Fillapex®, Angelus); CA (calcined at ,1200°C in pastes a and b); CA800 (calcined at 800°C in paste a); CA1200 (calcined at 1,200°C in paste a); and CTi (paste a). The real-time degree of conversion and rate of polymerization (n = 3), diametral tensile strength (n = 10), hydrogen potential (n = 15), calcium ion release (n = 10), water sorption and solubility (n = 10), and cell viability (n = 6) were evaluated. One- and two-way ANOVA and Tukey's post hoc test were used in the analysis of the parametric data, and Kruskal-Wallis and Dunn's multiple tests were used to analyze the nonparametric data (α = 0.05). CLQ, CA800 and CA1200 had the highest diametral tensile strength. The water solubility of MTA was similar to that of CA800, CA1200 and CTi. CA800 and CA1200 resulted in cell viabilities similar to those of MTA and CLQ. The experimental dual-cured CA-based material that calcined at 800°C showed physicochemical and biological properties suitable for VPT, and similar to those of MTA.


Full text: Available Index: LILACS (Americas) Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2022 Type: Article Affiliation country: Brazil Institution/Affiliation country: Faculdade Sobres/BR / Herminio Ometto University Center/BR / Instituto Federal de Goiás/BR / Universidade Estadual de Londrina/BR / Universidade Federal de Pelotas - UFPes/BR

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Full text: Available Index: LILACS (Americas) Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2022 Type: Article Affiliation country: Brazil Institution/Affiliation country: Faculdade Sobres/BR / Herminio Ometto University Center/BR / Instituto Federal de Goiás/BR / Universidade Estadual de Londrina/BR / Universidade Federal de Pelotas - UFPes/BR