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Effect of Tooth Brushing Cycles and Dentifrice Fluoride Concentration on a Glazed CAD/CAM Ceramic

  • Fernanda Bidoli
    ,
  • Eduardo F. de Castro(corresponding author)
    ,
  • Veber L.B. Azevedo
    ,
  • Richard B. Price
    ,
  • ,
  • Oswaldo S. de Andrade
*Corresponding author for this work
  • São Leopoldo Mandic Dental Institute and Research Centre
    ,
  • University of Campinas
    ,
  • Ilhéus Higher Education Center
    ,
  • Dalhousie University
    ,
  • ,
  • Senac University Center
Research Output:
Contribution to journal
Article
Peer-review

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 451-459 (9 pages)

Journal (Volume, Issue Number)

The International journal of prosthodontics (Volume 36, Issue 4)

Publication milestones

  • Published - 2023

Publication status

Published - 2023

ISSN

0893-2174

Publication IDs

  • Scopus: 85171119528
  • PubMed: 37699186

Abstract

Purpose: To evaluate the effect of tooth brushing and dentifrice fluoride (F-) concentration on changes in color and translucency (∆E00 and ∆T00, respectively), surface gloss (GS), surface roughness (Sa), and microstructure of a glazed CAD/CAM ceramic. Materials and Methods: Ceramic blocks (e.max/CAD) were sectioned into rectangular plates (14 x 12 x 1 mm), and one surface of each sample was glazed. Samples were divided into three groups according to the F- concentration in the dentifrice (0, 1,100, and 5,000 µg/g) and were then subjected to 60,000 tooth brushing cycles. Luminosity and color were measured using a spectrophotometer at baseline and after every 20,000 cycles to obtain their ∆E00 and ∆T00 values. Another set of samples was prepared to measure the GS with a gloss meter and the Sa with a confocal laser microscope. The GS and Sa results were subjected to analysis of variance, Tukey test, and Dunnett test (α =.05). Results: After 60,000 tooth brushing cycles, all of the variables were clinically acceptable, and there were no significant differences in the ∆E00, ∆T00, GS, or Sa among the fluoridated dentifrices. The GS values decreased significantly as the number of tooth brushing cycles increased. Conclusion: The ∆E00, ∆T00, GS, and Sa values were all clinically acceptable after the glazed e.max/CAD ceramic had been subjected to 60,000 tooth brushing cycles with dentifrices containing up to 5,000 µg/g of F-.

Funding Details

The authors would like to thank Dr Elliot W. Kitajima and Renato B. Salaroli, from the College of Agriculture “Luiz de Queiroz,” Univer- sity of São Paulo, for the assistance in microscopy analyses, and Dr Juliana J. Faraoni and Dr Regina G. Palma Dibb from the Ribeirão Preto School of Dentistry, University of São Paulo, for the assistance in surface roughness analyses. This research was supported by grants from PIBIC/CNPq – SAE/PRP (University of Campinas) and the Na- tional Council for Scientific and Technological Development (grants # 304692/2018-2), Brazil. The authors do not have any financial interest in the companies whose materials are included in this article. The authors report no conflicts of interest. The authors would like to thank Dr Elliot W. Kitajima and Renato B. Salaroli, from the College of Agriculture “Luiz de Queiroz,” University of São Paulo, for the assistance in microscopy analyses, and Dr Juliana J. Faraoni and Dr Regina G. Palma Dibb from the Ribeirão Preto School of Dentistry, University of São Paulo, for the assistance in surface roughness analyses. This research was supported by grants from PIBIC/CNPq – SAE/PRP (University of Campinas) and the National Council for Scientific and Technological Development (grants # 304692/2018-2), Brazil. The authors do not have any financial interest in the companies whose materials are included in this article. The authors report no conflicts of interest.
FundersFunding numbers
Council for Scientific and Technological Development
-
Ribeirão Preto School of Dentistry, University of São Paulo
-
College of Agriculture, Purdue University
-
CNPq
304692/2018-2

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