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Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg

Composite materials are increasingly used as dental restoration. In the field of biomaterials, infections remain the main reason of dental devices failure. Silver, in the form of nanoparticles (AgNPs), ions and salt, well known for its antimicrobial properties, is used in several medical application...

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Autores principales: Cataldi, Amelia, Gallorini, Marialucia, Di Giulio, Mara, Guarnieri, Simone, Mariggiò, Maria Addolorata, Traini, Tonino, Di Pietro, Roberta, Cellini, Luigina, Marsich, Eleonora, Sancilio, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2016
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789204/
https://www.ncbi.nlm.nih.gov/pubmed/26970770
http://dx.doi.org/10.1007/s10856-016-5701-x
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author Cataldi, Amelia
Gallorini, Marialucia
Di Giulio, Mara
Guarnieri, Simone
Mariggiò, Maria Addolorata
Traini, Tonino
Di Pietro, Roberta
Cellini, Luigina
Marsich, Eleonora
Sancilio, Silvia
author_facet Cataldi, Amelia
Gallorini, Marialucia
Di Giulio, Mara
Guarnieri, Simone
Mariggiò, Maria Addolorata
Traini, Tonino
Di Pietro, Roberta
Cellini, Luigina
Marsich, Eleonora
Sancilio, Silvia
author_sort Cataldi, Amelia
collection PubMed
description Composite materials are increasingly used as dental restoration. In the field of biomaterials, infections remain the main reason of dental devices failure. Silver, in the form of nanoparticles (AgNPs), ions and salt, well known for its antimicrobial properties, is used in several medical applications in order to avoid bacterial infection. To reduce both bacterial adhesion to dental devices and cytotoxicity against eukaryotic cells, we coated BisGMA/TEGDMA methacrylic thermosets with a new material, Chitlac-nAg, formed by stabilized AgNPs with a polyelectrolyte solution containing Chitlac. Here we analyzed the proliferative and adhesive ability of human gingival fibroblasts (HGFs) on BisGMA/TEGDMA thermosets uncoated and coated with AgNPs in a coculture model system with Streptococcus mitis. After 48 h, HGFs well adhered onto both surfaces, while S. mitis cytotoxic response was higher in the presence of AgNPs coated thermosets. After 24 h thermosets coated with Chitlac as well as those coated with Chitlac-nAg exerted a minimal cytotoxic effect on HGFs, while after 48 h LDH release raised up to 20 %. Moreover the presence of S. mitis reduced this release mainly when HGFs adhered to Chitlac-nAg coated thermosets. The reduced secretion of collagen type I was significant in the presence of both surfaces with the co-culture system even more when saliva is added. Integrin β1 localized closely to cell membranes onto Chitlac-nAg thermosets and PKCα translocated into nuclei. These data confirm that Chitlac-nAg have a promising utilization in the field of restorative dentistry exerting their antimicrobial activity due to AgNPs without cytotoxicity for eukaryotic cells.
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spelling pubmed-47892042016-04-05 Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg Cataldi, Amelia Gallorini, Marialucia Di Giulio, Mara Guarnieri, Simone Mariggiò, Maria Addolorata Traini, Tonino Di Pietro, Roberta Cellini, Luigina Marsich, Eleonora Sancilio, Silvia J Mater Sci Mater Med Tissue Engineering Constructs and Cell Substrates Composite materials are increasingly used as dental restoration. In the field of biomaterials, infections remain the main reason of dental devices failure. Silver, in the form of nanoparticles (AgNPs), ions and salt, well known for its antimicrobial properties, is used in several medical applications in order to avoid bacterial infection. To reduce both bacterial adhesion to dental devices and cytotoxicity against eukaryotic cells, we coated BisGMA/TEGDMA methacrylic thermosets with a new material, Chitlac-nAg, formed by stabilized AgNPs with a polyelectrolyte solution containing Chitlac. Here we analyzed the proliferative and adhesive ability of human gingival fibroblasts (HGFs) on BisGMA/TEGDMA thermosets uncoated and coated with AgNPs in a coculture model system with Streptococcus mitis. After 48 h, HGFs well adhered onto both surfaces, while S. mitis cytotoxic response was higher in the presence of AgNPs coated thermosets. After 24 h thermosets coated with Chitlac as well as those coated with Chitlac-nAg exerted a minimal cytotoxic effect on HGFs, while after 48 h LDH release raised up to 20 %. Moreover the presence of S. mitis reduced this release mainly when HGFs adhered to Chitlac-nAg coated thermosets. The reduced secretion of collagen type I was significant in the presence of both surfaces with the co-culture system even more when saliva is added. Integrin β1 localized closely to cell membranes onto Chitlac-nAg thermosets and PKCα translocated into nuclei. These data confirm that Chitlac-nAg have a promising utilization in the field of restorative dentistry exerting their antimicrobial activity due to AgNPs without cytotoxicity for eukaryotic cells. Springer US 2016-03-12 2016 /pmc/articles/PMC4789204/ /pubmed/26970770 http://dx.doi.org/10.1007/s10856-016-5701-x Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Tissue Engineering Constructs and Cell Substrates
Cataldi, Amelia
Gallorini, Marialucia
Di Giulio, Mara
Guarnieri, Simone
Mariggiò, Maria Addolorata
Traini, Tonino
Di Pietro, Roberta
Cellini, Luigina
Marsich, Eleonora
Sancilio, Silvia
Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title_full Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title_fullStr Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title_full_unstemmed Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title_short Adhesion of human gingival fibroblasts/Streptococcus mitis co-culture on the nanocomposite system Chitlac-nAg
title_sort adhesion of human gingival fibroblasts/streptococcus mitis co-culture on the nanocomposite system chitlac-nag
topic Tissue Engineering Constructs and Cell Substrates
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789204/
https://www.ncbi.nlm.nih.gov/pubmed/26970770
http://dx.doi.org/10.1007/s10856-016-5701-x
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