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TiO2 nanotubes improve physico-mechanical properties of glass ionomer cement.
Kantovitz, Kamila Rosamilia; Fernandes, Fernando Pelegrim; Feitosa, Isabella Vidal; Lazzarini, Marcela Oliveira; Denucci, Giovanna Corrêa; Gomes, Orisson Ponce; Giovani, Priscila Alves; Moreira, Kelly Maria Silva; Pecorari, Vanessa Gallego Arias; Borges, Ana Flávia Sanches; Nociti, Francisco Humberto; Basting, Roberta Tarkany; Lisboa-Filho, Paulo Noronha; Puppin-Rontani, Regina Maria.
Afiliação
  • Kantovitz KR; Faculdade São Leopoldo Mandic - SLMANDIC, Campinas, São Paulo, Brazil; Department of Pediatric Dentistry, Piracicaba Dental School, University of Campinas, Piracicaba - UNICAMP, São Paulo, Brazil. Electronic address: kamila.kantovitz@slmandic.edu.br.
  • Fernandes FP; Faculdade São Leopoldo Mandic - SLMANDIC, Campinas, São Paulo, Brazil. Electronic address: ferfernandes89@hotmail.com.
  • Feitosa IV; Faculdade São Leopoldo Mandic - SLMANDIC, Campinas, São Paulo, Brazil. Electronic address: isabellafeitosa@hotmail.com.
  • Lazzarini MO; Department of Pediatric Dentistry, Piracicaba Dental School, University of Campinas, Piracicaba - UNICAMP, São Paulo, Brazil. Electronic address: marcelazzarini@hotmail.com.
  • Denucci GC; Faculdade São Leopoldo Mandic - SLMANDIC, Campinas, São Paulo, Brazil. Electronic address: gdenucci27@gmail.com.
  • Gomes OP; Department of Physics, School of Science, São Paulo State University - UNESP, Bauru, São Paulo, Brazil. Electronic address: orissongomes@gmail.com.
  • Giovani PA; Department of Pediatric Dentistry, Piracicaba Dental School, University of Campinas, Piracicaba - UNICAMP, São Paulo, Brazil. Electronic address: prialvesodonto@gmail.com.
  • Moreira KMS; Department of Pediatric Dentistry, Piracicaba Dental School, University of Campinas, Piracicaba - UNICAMP, São Paulo, Brazil. Electronic address: kellynhaodonto@yahoo.com.br.
  • Pecorari VGA; Department of Biostatistics, Dental School, São Paulo University - UNIP, São Paulo, Brazil. Electronic address: pecorarivanessa@yahoo.com.br.
  • Borges AFS; Department of Dentistry, Endodontic and Dental Materials, Bauru Dental School, University of São Paulo - USP, Bauru, São Paulo, Brazil. Electronic address: afborges@fob.usp.br.
  • Nociti FH; Department of Prosthodontics and Periodontics, Division of Periodontics, Piracicaba Dental School, University of Campinas - UNICAMP, Piracicaba, São Paulo, Brazil. Electronic address: nociti@unicamp.br.
  • Basting RT; Faculdade São Leopoldo Mandic - SLMANDIC, Campinas, São Paulo, Brazil. Electronic address: rbasting@yahoo.com.
  • Lisboa-Filho PN; Department of Physics, School of Science, São Paulo State University - UNESP, Bauru, São Paulo, Brazil. Electronic address: paulo.lisboa@unesp.br.
  • Puppin-Rontani RM; Department of Pediatric Dentistry, Piracicaba Dental School, University of Campinas, Piracicaba - UNICAMP, São Paulo, Brazil. Electronic address: rmpuppin@unicamp.br.
Dent Mater ; 36(3): e85-e92, 2020 03.
Article em En | MEDLINE | ID: mdl-32019690
ABSTRACT

OBJECTIVES:

The aim of this study was to determine the physico-mechanical properties of a high viscosity glass ionomer cement (GIC) reinforced with TiO2 nanotubes (TiO2-nt).

METHODS:

TiO2-nt was incorporated into the GIC powder components (Ketac Molar EasyMix™) in concentrations of 0% (control group), 3%, 5%, 7% by weight. Compressive strength (n = 10/group), three point bending for flexural strength (n = 18/group), microshear bond strength to dentin and failure mode (n = 20/group), and surface roughness and weight loss before and after brushing simulation (30,000 cycles) (n = 8/group) were evaluated. Data were submitted to Shapiro-Wilk, ANOVA, Tukey and Chi-square tests (α ≤ 0.05).

RESULTS:

Addition of 5% of TiO2-nt into GIC presented the highest values for compressive strength and differed from the control, 3% and 7% groups (p = 0.023). There were no significant differences in flexural strength (p = 0.107) and surface roughness before and after the dental brushing (p = 0.287) among the groups. GIC added with 5% TiO2-nt showed the lowest weight loss values (p = 0.01), whereas the control, 3% or 5% TiO2-nt groups presented similar microshear bond strength values (p ≥ 0.05). The 5% TiO2-nt group featured higher microshear bond strength than the 7% TiO2-nt group (p = 0.034). Cohesive in material was the most representative failure mode for all groups.

SIGNIFICANCE:

The incorporation of TiO2-nt did not affect GIC's adhesiveness to dentin, but improved its compressive strength at 5%. Furthermore, TiO2-nt decreased the percentage of weight loss after GIC's surface wear.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Colagem Dentária / Nanotubos Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Colagem Dentária / Nanotubos Idioma: En Ano de publicação: 2020 Tipo de documento: Article