Literature DB >> 21827225

In vitro evaluation of surface roughness and microhardness of restorative materials submitted to erosive challenges.

A L F Briso1, L P Caruzo, A P A Guedes, A Catelan, P H dos Santos.   

Abstract

The aim of this study was to evaluate the effect of different acidic solutions on the microhardness and surface roughness of restorative materials. The 120 specimens of restorative materials (Fuji II LC, Vitremer, Supreme XT, and Supreme XT + Biscover LV) were randomly divided into three groups according to the immersion media: hydrochloric acid, soft drink, or distilled water. Over a period of five weeks, the groups were immersed in the solutions, which were changed weekly. Data were tested using analysis of variance and the Fisher protected least significant difference test (p<0.05). The results showed that the glass ionomer materials showed the highest surface roughness values (Fuji II LC: 0.111 ± 0.014 μm before and 0.139 ± 0.016 μm after immersion; Vitremer: 0.177 ± 0.012 μm before and 0.084 ± 0.012 μm after immersion), whereas the lowest values were found for the resin sealed with Biscover LV before (0.047 ± 0.011 μm) and after exposure in distilled water (0.043 ± 0.007 μm), soft drink (0.040 ± 0.005 μm), and hydrochloric acid (0.045 ± 0.005 μm). The Supreme XT showed the highest microhardness values before (44.96 ± 2.51 KHN) and after the aging process (41.26 ± 1.22 KHN in water, 35.96 ± 0.81 KHN in soft drink, and 34.74 ± 0.97 KHN in HCl), with significant differences from the other materials (p<0.0001). The lowest microhardness values were found for glass ionomer materials. The solutions used in this study decreased the microhardness of all studied materials, whereas the sealed surface suffered minor changes in microhardness and surface roughness after exposure to acidic solutions.

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Year:  2011        PMID: 21827225     DOI: 10.2341/10-356-L

Source DB:  PubMed          Journal:  Oper Dent        ISSN: 0361-7734            Impact factor:   2.440


  11 in total

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2.  Biofilm formation affects surface properties of novel bioactive glass-containing composites.

Authors:  Hong-Keun Hyun; Satin Salehi; Jack L Ferracane
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Journal:  J Clin Exp Dent       Date:  2017-03-01

4.  Flexural Properties and Elastic Modulus of Different Esthetic Restorative Materials: Evaluation after Exposure to Acidic Drink.

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6.  Effect of denture-coating composite on Candida albicans biofilm and surface degradation after disinfection protocol.

Authors:  Matheus Jacobina Silva; Denise G de Oliveira; Oscar O Marcillo; Karin H Neppelenbroek; Vanessa S Lara; Vinícius C Porto
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7.  Effect of a Combined Bleaching Regimen on the Microhardness of a Sealed Methacrylate-based and a Silorane-based Composite.

Authors:  F Shafiei; S Doustfatemeh
Journal:  J Dent (Shiraz)       Date:  2013-09

8.  Change in surface roughness of esthetic restorative materials after exposure to different immersion regimes in a cola drink.

Authors:  Navroop Kaur Bajwa; Anuradha Pathak
Journal:  ISRN Dent       Date:  2014-03-23

9.  In vitro quantitative comparison of erosive potential of infant mouthwashes on glass ionomer cement.

Authors:  Aline-Bastos da Silva; Nayre-Maria-Lauande Rapôso; Isabella-Azevedo Gomes; Letícia-Machado Gonçalves; Marco-Aurélio-Benini Paschoal
Journal:  J Clin Exp Dent       Date:  2018-03-01

10.  Fluoride Release of Fresh and Aged Glass Ionomer Cements after Recharging with High-Fluoride Dentifrice.

Authors:  Fabiana Gouveia Rolim; Allan David de Araújo Lima; Islany Cardoso Lima Campos; Robson de Sousa Ferreira; Carlos da Cunha Oliveira-Júnior; Vera Lúcia Gomes Prado; Glauber Campos Vale
Journal:  Int J Dent       Date:  2019-12-10
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