Cargando…

Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties

A series of experiments were conducted to characterize a novel restorative material. We explored the effect on biological, physical and chemical properties of glass ionomer cement (GIC) adding-the naturally occurring tt-farnesol (900 mM). Two groups were accomplished for all assays: GIC+tt-farnesol...

Descripción completa

Detalles Bibliográficos
Autores principales: de Castilho, Aline Rogéria Freire, Rosalen, Pedro Luiz, de Souza Araújo, Isaac Jordão, Kitagawa, Igor Lebedenco, Costa, Cecilia Atem Gonçalves de Araújo, Janal, Malvin N., Alves, Marcelo Corrêa, Duarte, Simone, Lisboa Filho, Paulo Noronha, Stipp, Rafael Nobrega, Puppin-Rontani, Regina Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701760/
https://www.ncbi.nlm.nih.gov/pubmed/31430298
http://dx.doi.org/10.1371/journal.pone.0220718
_version_ 1783445104685481984
author de Castilho, Aline Rogéria Freire
Rosalen, Pedro Luiz
de Souza Araújo, Isaac Jordão
Kitagawa, Igor Lebedenco
Costa, Cecilia Atem Gonçalves de Araújo
Janal, Malvin N.
Alves, Marcelo Corrêa
Duarte, Simone
Lisboa Filho, Paulo Noronha
Stipp, Rafael Nobrega
Puppin-Rontani, Regina Maria
author_facet de Castilho, Aline Rogéria Freire
Rosalen, Pedro Luiz
de Souza Araújo, Isaac Jordão
Kitagawa, Igor Lebedenco
Costa, Cecilia Atem Gonçalves de Araújo
Janal, Malvin N.
Alves, Marcelo Corrêa
Duarte, Simone
Lisboa Filho, Paulo Noronha
Stipp, Rafael Nobrega
Puppin-Rontani, Regina Maria
author_sort de Castilho, Aline Rogéria Freire
collection PubMed
description A series of experiments were conducted to characterize a novel restorative material. We explored the effect on biological, physical and chemical properties of glass ionomer cement (GIC) adding-the naturally occurring tt-farnesol (900 mM). Two groups were accomplished for all assays: GIC+tt-farnesol and GIC (control). Biological assays: 1) agar diffusion against some cariogenic bacteria; 2) S. mutans biofilm formation and confocal laser scanning microscopy-CLSM. 3) gtfB, gtfC, gtfD, gbpB, vicR, and covR expression; 4) MTT and microscopic morphology. Physical properties assays: 1) roughness; 2) hardness; 3) compressive strength and 4) diametral tensile strength. Chemical assay: Raman spectroscopy. The adding of tt-farnesol to GIC led to larger zones of inhibition (p<0.05), biofilms with a short-term reduction in bacterial viability but similar biomass (p>0.05). Polysaccharides levels increased over time, similarly over groups (p>0.05). Viable and non-viable S. mutans were seen on the specimens’ surface by CLSM but their virulence was not modulated by tt-farnesol. The tt-farnesol increased the HaCaT cell viability without impact on compressive and diametral tensile strength and roughness although the hardness was positively affected (p<0.05). Raman confirmed the presence of tt-farnesol. The incorporation of tt-farnesol into GIC inhibited the growth of cariogenic bacteria but had a little effect on the composition, structure and physiology of the biofilm matrices. Also, the tt-farnesol increased the hardness and the biocompatibility of the GIC, not influencing negatively other physical properties of the restorative material.
format Online
Article
Text
id pubmed-6701760
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-67017602019-09-04 Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties de Castilho, Aline Rogéria Freire Rosalen, Pedro Luiz de Souza Araújo, Isaac Jordão Kitagawa, Igor Lebedenco Costa, Cecilia Atem Gonçalves de Araújo Janal, Malvin N. Alves, Marcelo Corrêa Duarte, Simone Lisboa Filho, Paulo Noronha Stipp, Rafael Nobrega Puppin-Rontani, Regina Maria PLoS One Research Article A series of experiments were conducted to characterize a novel restorative material. We explored the effect on biological, physical and chemical properties of glass ionomer cement (GIC) adding-the naturally occurring tt-farnesol (900 mM). Two groups were accomplished for all assays: GIC+tt-farnesol and GIC (control). Biological assays: 1) agar diffusion against some cariogenic bacteria; 2) S. mutans biofilm formation and confocal laser scanning microscopy-CLSM. 3) gtfB, gtfC, gtfD, gbpB, vicR, and covR expression; 4) MTT and microscopic morphology. Physical properties assays: 1) roughness; 2) hardness; 3) compressive strength and 4) diametral tensile strength. Chemical assay: Raman spectroscopy. The adding of tt-farnesol to GIC led to larger zones of inhibition (p<0.05), biofilms with a short-term reduction in bacterial viability but similar biomass (p>0.05). Polysaccharides levels increased over time, similarly over groups (p>0.05). Viable and non-viable S. mutans were seen on the specimens’ surface by CLSM but their virulence was not modulated by tt-farnesol. The tt-farnesol increased the HaCaT cell viability without impact on compressive and diametral tensile strength and roughness although the hardness was positively affected (p<0.05). Raman confirmed the presence of tt-farnesol. The incorporation of tt-farnesol into GIC inhibited the growth of cariogenic bacteria but had a little effect on the composition, structure and physiology of the biofilm matrices. Also, the tt-farnesol increased the hardness and the biocompatibility of the GIC, not influencing negatively other physical properties of the restorative material. Public Library of Science 2019-08-20 /pmc/articles/PMC6701760/ /pubmed/31430298 http://dx.doi.org/10.1371/journal.pone.0220718 Text en © 2019 de Castilho et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
de Castilho, Aline Rogéria Freire
Rosalen, Pedro Luiz
de Souza Araújo, Isaac Jordão
Kitagawa, Igor Lebedenco
Costa, Cecilia Atem Gonçalves de Araújo
Janal, Malvin N.
Alves, Marcelo Corrêa
Duarte, Simone
Lisboa Filho, Paulo Noronha
Stipp, Rafael Nobrega
Puppin-Rontani, Regina Maria
Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title_full Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title_fullStr Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title_full_unstemmed Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title_short Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
title_sort trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701760/
https://www.ncbi.nlm.nih.gov/pubmed/31430298
http://dx.doi.org/10.1371/journal.pone.0220718
work_keys_str_mv AT decastilhoalinerogeriafreire transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT rosalenpedroluiz transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT desouzaaraujoisaacjordao transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT kitagawaigorlebedenco transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT costaceciliaatemgoncalvesdearaujo transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT janalmalvinn transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT alvesmarcelocorrea transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT duartesimone transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT lisboafilhopaulonoronha transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT stipprafaelnobrega transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties
AT puppinrontanireginamaria transtransfarnesolanantimicrobialnaturalcompoundimprovesglassionomercementproperties