Literature DB >> 25748206

Enamel and Dentin Microhardness and Chemical Composition After Experimental Light-activated Bleaching.

E Klaric, M Rakic, I Sever, O Milat, M Par, Z Tarle.   

Abstract

OBJECTIVES: To evaluate 1) the influence of five bleaching agents (with additional light activation) on enamel and dentin surface microhardness and chemical composition and 2) the remineralizing potential of artificial saliva and amorphous calcium phosphate (ACP). METHODS AND MATERIALS: The study was conducted on 125 human third molars dissected into quarters for separate enamel and dentin measurements. The bleaching process was performed with 38% and 25% hydrogen peroxide (HP) and 30%, 16%, and 10% carbamide peroxide (CP) gels two times for 15 minutes each time. All bleaching gels were tested alone and in combination with ZOOM2, light-emitting diode (LED), organic LED, and femtosecond laser. A total of 25 bleaching combinations (n=10) were evaluated. Microhardness was measured by a Vickers diamond. Chemical analysis was performed using energy-dispersive X-ray spectroscopy.
RESULTS: Bleaching agents used in the absence of light activation caused a significant reduction in enamel and dentin surface microhardness (p<0.001), ranging from 8% for 16% CP to 40% for 25% HP. The effects of different light activations were negligible. After two-week treatment with ACP and artificial saliva, maximum deviation from baseline microhardness was just 3%. Such treatment increased the concentrations of calcium, phosphorus, and fluorine.
CONCLUSIONS: An increase in peroxide concentration and gel acidity negatively affected microhardness and concentrations of calcium and phosphorus in enamel and dentin. ACP and artificial saliva stimulated the remineralization of hard tissues.

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Year:  2015        PMID: 25748206     DOI: 10.2341/14-148-L

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


  8 in total

1.  Accounting for measurement reliability to improve the quality of inference in dental microhardness research: a worked example.

Authors:  Ivan Sever; Eva Klaric; Zrinka Tarle
Journal:  Clin Oral Investig       Date:  2015-09-19       Impact factor: 3.573

2.  Color stability, Roughness, and Microhardness of Enamel and Composites Submitted to Staining/Bleaching Cycles.

Authors:  Sarah S Al-Angari; George J Eckert; Alaa H A Sabrah
Journal:  Saudi Dent J       Date:  2020-08-11

3.  Analysis of the Chemical Modification of Dental Enamel Submitted to 35% Hydrogen Peroxide "In-Office" Whitening, with or without Calcium.

Authors:  Rudá França Moreira; Fábio Pinheiro Santos; Estevão Antero Santos; Ramon Silva Dos Santos; Marcelino José Dos Anjos; Mauro Sayão de Miranda
Journal:  Int J Dent       Date:  2017-08-28

4.  Physicochemical changes in enamel submitted to pH cycling and bleaching treatment.

Authors:  Evania Eskelsen; Anderson Catelan; Natália Maria Aparecida Pinto Hernades; Luís Eduardo Silva Soares; Andrea Nóbrega Cavalcanti; Flávio Henrique Baggio Aguiar; Priscila Christiane Suzy Liporoni
Journal:  Clin Cosmet Investig Dent       Date:  2018-12-12

5.  The effect of 10% alpha-tocopherol solution and 5% grape seed extract on the microhardness and shear bond strength to bleached dentin.

Authors:  Manvi Srivastava; Ramakrishna Yeluri
Journal:  Dent Res J (Isfahan)       Date:  2021-07-19

6.  Effects of experimental bleaching agents on the mineral content of sound and demineralized enamels.

Authors:  Vanessa Cavalli; Denise Aparecida da Rosa; Daylana Pacheco da Silva; Matheus Kury; Priscila C S Liporoni; Luis Eduardo S Soares; Airton Abraão Martins
Journal:  J Appl Oral Sci       Date:  2018-10-04       Impact factor: 2.698

7.  Marginal integrity of aesthetic restorations following intracoronal bleaching with sweet potato extract as an additive: An SEM study.

Authors:  Gurucharan Ishwarya; Sampath Vidhya; Sekar Mahalaxmi
Journal:  Heliyon       Date:  2020-02-15

8.  Effect of photo-thermal acceleration on in-office bleaching.

Authors:  Feng Qi; Masayuki Otsuki; Noriko Hiraishi; Takashi Hatayama; Chamari Lasindra Wijethunge; Junji Tagami
Journal:  Odontology       Date:  2021-05-15       Impact factor: 2.634

  8 in total

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