In vitro effect of energy drinks on human enamel surface
Autor: | Mitsue Fujimaki, Selma Sano Suga, Raquel Sano Suga Terada, Dayla Thyeme Higashi, Antônio Carlos Guedes-Pinto, Marise Sano Suga Matumoto |
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Jazyk: | angličtina |
Předmět: |
energy drinks
Population lcsh:Medicine Titratable acid Acid–base titration Neutralization 03 medical and health sciences chemistry.chemical_compound 0302 clinical medicine dental enamel 030212 general & internal medicine Food science education Tooth erosion education.field_of_study Enamel paint Chemistry lcsh:R tooth demineralization 030206 dentistry General Medicine lcsh:RK1-715 Distilled water visual_art lcsh:Dentistry visual_art.visual_art_medium Knoop hardness test Citric acid |
Zdroj: | Revista de Odontologia da UNESP, Vol 47, Iss 1, Pp 57-62 Revista de Odontologia da UNESP v.47 n.1 2018 Revista de Odontologia da UNESP Universidade Estadual Paulista (UNESP) instacron:UNESP |
ISSN: | 1807-2577 |
Popis: | Introduction Energy drinks (ED) possess low pH and citric acid in their composition, making them potentially erosive beverages that can contribute to the high dental erosion rates found currently in the general population and also in young people. Objective To evaluate the mean pH and titratable acidity of commercial ED and the influence of a brand of ED on the superficial microhardness of human enamel. Material and method Ten commercial ED were selected and the pH of two lots of each ED with and without gas was obtained. Acid titration was conducted with the addition of NaOH aliquots until the pH 7 was reached. Eighteen human enamel specimens were allocated in three groups (N=6), Red Bull (RB), Red Bull Light (RBL) and distilled water (C), submitted to an acid challenge with the ED, six consecutive times, with 12 hours intervals, during three days. Knoop microhardness was measured before and after the acid challenge. Result All ED brands tested presented low pH levels ranging from 2.1 to 3.2. Regarding titratable acidity, it was found that the amount of base required promoting the neutralization of the solutions ranged from 1200μL to 3750μL. Samples of human enamel in the RB and RBL groups submitted to the acid challenge presented significantly decreased Knoop microhardness when compared with the group C. Conclusion All ED examined have potential to promote mineral loss due to the low pH and high titratable acidity. The ED analyzed promoted significant mineral losses on the dental enamel surface. |
Databáze: | OpenAIRE |
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