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Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge

OBJECTIVE: Our study aims to synthesize, characterize, and determine the effects of a ChNPs suspension on human enamel after cariogenic challenge via pH-cycling. METHODOLOGY: ChNPs were synthesized by ion gelation and characterized by Transmission Electron Microscopy (TEM) and Dynamic Light Scatteri...

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Autores principales: MAGALHÃES, Taís Chaves, TEIXEIRA, Natália Moreira, FRANÇA, Renata Sobreira, DENADAI, Ângelo Márcio Leite, dos SANTOS, Rogério Lacerda, CARLO, Hugo Lemes, MUNCHOW, Eliseu Aldrighi, de CARVALHO, Fabíola Galbiatti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Faculdade De Odontologia De Bauru - USP 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8523102/
https://www.ncbi.nlm.nih.gov/pubmed/34644779
http://dx.doi.org/10.1590/1678-7757-2021-0120
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author MAGALHÃES, Taís Chaves
TEIXEIRA, Natália Moreira
FRANÇA, Renata Sobreira
DENADAI, Ângelo Márcio Leite
dos SANTOS, Rogério Lacerda
CARLO, Hugo Lemes
MUNCHOW, Eliseu Aldrighi
de CARVALHO, Fabíola Galbiatti
author_facet MAGALHÃES, Taís Chaves
TEIXEIRA, Natália Moreira
FRANÇA, Renata Sobreira
DENADAI, Ângelo Márcio Leite
dos SANTOS, Rogério Lacerda
CARLO, Hugo Lemes
MUNCHOW, Eliseu Aldrighi
de CARVALHO, Fabíola Galbiatti
author_sort MAGALHÃES, Taís Chaves
collection PubMed
description OBJECTIVE: Our study aims to synthesize, characterize, and determine the effects of a ChNPs suspension on human enamel after cariogenic challenge via pH-cycling. METHODOLOGY: ChNPs were synthesized by ion gelation and characterized by Transmission Electron Microscopy (TEM) and Dynamic Light Scattering. Forty enamel blocks were divided into four groups (n=10/group): (i) ChNPs suspension; (ii) chitosan solution; (iii) 0.05% sodium fluoride (NaF) solution; and (iv) distilled water. Specimens were exposed to cariogenic challenge by cycling in demineralization solution (3 h) and then remineralized (21h) for 7 days. Before each demineralization cycle, the corresponding solutions were passively applied for 90 s. After 7 days, specimens were examined for surface roughness (Ra) and Knoop hardness (KHN) before and after the cariogenic challenge; % KHN change (variation between initial and final hardness), and surface topography by an optical profilometer. The data were analyzed by repeated-measures ANOVA, One-way ANOVA, and Tukey tests (α=0.05). RESULTS: TEM images showed small spherical particles with diameter and zeta potential values of 79.3 nm and +47.9 mV, respectively. After the challenge, all groups showed an increase in Ra and a decrease in KHN values. Optical profilometry indicated that ChNPs- and NaF-treated specimens showed uneven roughness interspersed with smooth areas and the lowest %KHN values. CONCLUSION: The ChNPs suspension was successfully synthesized and minimized human enamel demineralization after a cariogenic challenge, showing an interesting potential for use as an oral formulation for caries prevention.
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spelling pubmed-85231022021-10-22 Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge MAGALHÃES, Taís Chaves TEIXEIRA, Natália Moreira FRANÇA, Renata Sobreira DENADAI, Ângelo Márcio Leite dos SANTOS, Rogério Lacerda CARLO, Hugo Lemes MUNCHOW, Eliseu Aldrighi de CARVALHO, Fabíola Galbiatti J Appl Oral Sci Original Article OBJECTIVE: Our study aims to synthesize, characterize, and determine the effects of a ChNPs suspension on human enamel after cariogenic challenge via pH-cycling. METHODOLOGY: ChNPs were synthesized by ion gelation and characterized by Transmission Electron Microscopy (TEM) and Dynamic Light Scattering. Forty enamel blocks were divided into four groups (n=10/group): (i) ChNPs suspension; (ii) chitosan solution; (iii) 0.05% sodium fluoride (NaF) solution; and (iv) distilled water. Specimens were exposed to cariogenic challenge by cycling in demineralization solution (3 h) and then remineralized (21h) for 7 days. Before each demineralization cycle, the corresponding solutions were passively applied for 90 s. After 7 days, specimens were examined for surface roughness (Ra) and Knoop hardness (KHN) before and after the cariogenic challenge; % KHN change (variation between initial and final hardness), and surface topography by an optical profilometer. The data were analyzed by repeated-measures ANOVA, One-way ANOVA, and Tukey tests (α=0.05). RESULTS: TEM images showed small spherical particles with diameter and zeta potential values of 79.3 nm and +47.9 mV, respectively. After the challenge, all groups showed an increase in Ra and a decrease in KHN values. Optical profilometry indicated that ChNPs- and NaF-treated specimens showed uneven roughness interspersed with smooth areas and the lowest %KHN values. CONCLUSION: The ChNPs suspension was successfully synthesized and minimized human enamel demineralization after a cariogenic challenge, showing an interesting potential for use as an oral formulation for caries prevention. Faculdade De Odontologia De Bauru - USP 2021-09-28 /pmc/articles/PMC8523102/ /pubmed/34644779 http://dx.doi.org/10.1590/1678-7757-2021-0120 Text en https://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
MAGALHÃES, Taís Chaves
TEIXEIRA, Natália Moreira
FRANÇA, Renata Sobreira
DENADAI, Ângelo Márcio Leite
dos SANTOS, Rogério Lacerda
CARLO, Hugo Lemes
MUNCHOW, Eliseu Aldrighi
de CARVALHO, Fabíola Galbiatti
Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title_full Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title_fullStr Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title_full_unstemmed Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title_short Synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
title_sort synthesis of a chitosan nanoparticle suspension and its protective effects against enamel demineralization after an in vitro cariogenic challenge
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8523102/
https://www.ncbi.nlm.nih.gov/pubmed/34644779
http://dx.doi.org/10.1590/1678-7757-2021-0120
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