Literature DB >> 15741724

Effect of sucrose containing iron (II) on dental biofilm and enamel demineralization in situ.

G D Pecharki1, J A Cury, A F Paes Leme, C P M Tabchoury, A A Del Bel Cury, P L Rosalen, W H Bowen.   

Abstract

Since the effect of iron (Fe) on the cariogenicity of sucrose in humans is unexplored, this study assessed in situ the effect of Fe co-crystallized with sucrose (Fe-sucrose) topically applied in vitro on the acidogenicity, biochemical and microbiological composition of the dental biofilm formed in vivo and on the demineralization of the enamel. During two phases of 14 days each, 16 volunteers wore palatal appliances containing blocks of human enamel, which were submitted to four groups of separate treatments: (1) water; (2) 20% sucrose; (3) 20% (w/v) sucrose plus 18 microg Fe/ml, and (4) 20% (w/v) sucrose plus 70 microg Fe/ml. The solutions were dripped onto the blocks 8 times per day. The biofilms formed on the blocks were analyzed with respect to acidogenicity, biochemical and microbiological composition. Mineral loss was determined on enamel by surface and cross-sectional microhardness. Lower demineralization was found in the blocks subjected to Fe-sucrose (70 microg Fe/ml) than in those treated with sucrose (p < 0.05). This concentration of Fe also reduced significantly the populations of mutans streptococci in the biofilm formed on the blocks. In conclusion, our data suggest that Fe may reduce in situ the cariogenic potential of sucrose and the effect seems to be related to the reduction in the populations of mutans streptococci in the dental biofilm formed. Copyright (c) 2005 S. Karger AG, Basel.

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Year:  2005        PMID: 15741724     DOI: 10.1159/000083157

Source DB:  PubMed          Journal:  Caries Res        ISSN: 0008-6568            Impact factor:   4.056


  16 in total

Review 1.  The role of sucrose in cariogenic dental biofilm formation--new insight.

Authors:  A F Paes Leme; H Koo; C M Bellato; G Bedi; J A Cury
Journal:  J Dent Res       Date:  2006-10       Impact factor: 6.116

2.  Effect of a sugar-free pediatric antibiotic on primary tooth enamel hardness when exposed to different sucrose exposure conditions in situ.

Authors:  Viviane Santos Silva Pierro; Natalia Lopes Pontes Iorio; Leandro Araujo Lobo; Lúcio Mendes Cabral; Kátia Regina Netto Dos Santos; Lucianne Cople Maia
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3.  Effects of sucrose on the extracellular matrix of plaque-like biofilm formed in vivo, studied by proteomic analysis.

Authors:  A F Paes Leme; C M Bellato; G Bedi; A A Del Bel Cury; H Koo; J A Cury
Journal:  Caries Res       Date:  2008-10-03       Impact factor: 4.056

4.  Monitoring of extracellular pH in young dental biofilms grown in vivo in the presence and absence of sucrose.

Authors:  Irene Dige; Vibeke Baelum; Bente Nyvad; Sebastian Schlafer
Journal:  J Oral Microbiol       Date:  2016-02-15       Impact factor: 5.474

Review 5.  Devices for In situ Development of Non-disturbed Oral Biofilm. A Systematic Review.

Authors:  Isabel Prada-López; Víctor Quintas; Carlos Vilaboa; David Suárez-Quintanilla; Inmaculada Tomás
Journal:  Front Microbiol       Date:  2016-07-19       Impact factor: 5.640

6.  Virulence modulation of Streptococcus mutans biofilms by metal ions released from orthodontic appliances.

Authors:  Alinne Ulbrich Mores Rymovicz; Maiara Medeiros Ronsani; Ana Maria Trindade Grégio; Odilon Guariza Guariza-Filho; Orlando Tanaka; Edvaldo Antonio Ribeiro Rosa
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7.  Effect of iron containing supplements on rats' dental caries progression.

Authors:  Ar Eshghi; R Kowsari-Isfahan; M Rezaiefar; M Razavi; S Zeighami
Journal:  J Dent (Tehran)       Date:  2012-03-31

8.  Topical effect of a medically prescribed pediatric antibiotic on dental biofilm: a cross-over, in situ study.

Authors:  Viviane Santos da Silva Pierro; Dennis de Carvalho Ferreira; Hugo Emiliano de Jesus; Alexandre Soares Rosado; Ronir Raggio Luiz; Kátia Regina Netto dos Santos; Lucianne Cople Maia
Journal:  PLoS One       Date:  2013-01-31       Impact factor: 3.240

9.  Effect of iron supplementation on the erosive potential of carbonated or decarbonated beverage.

Authors:  Melissa Thiemi Kato; Andrea Gutierrez Maria; Luís Guilherme Matiazi Vaz; Flávia de Moraes Italiani; Sílvia Helena de Carvalho Sales-Peres; Marília Afonso Rabelo Buzalaf
Journal:  J Appl Oral Sci       Date:  2007-02       Impact factor: 2.698

10.  Iron supplementation reduces the erosive potential of a cola drink on enamel and dentin in situ.

Authors:  Melissa Thiemi Kato; Marília Afonso Rabelo Buzalaf
Journal:  J Appl Oral Sci       Date:  2012 May-Jun       Impact factor: 2.698

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