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Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications

The objective of this work was to evaluate the mechanical performance of Z350 resin composite modified with Bombyx mori cocoons silk nanoparticles for dental applications. Four experimental groups were analyzed G0% = Filtek Z350 resin composite (control); G1% = Filtek Z350 with 1% of silk nanopartic...

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Autores principales: Torres, Adriana da Silva, da Silveira, João Vinícios Wirbitzki, Torres, Moisés de Matos, de Araujo, Cintia Tereza Pimenta, Galo, Rodrigo, de Oliveira, Simone Gomes Dias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Fundação Odontológica de Ribeirão Preto 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208285/
https://www.ncbi.nlm.nih.gov/pubmed/37194858
http://dx.doi.org/10.1590/0103-6440202304950
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author Torres, Adriana da Silva
da Silveira, João Vinícios Wirbitzki
Torres, Moisés de Matos
de Araujo, Cintia Tereza Pimenta
Galo, Rodrigo
de Oliveira, Simone Gomes Dias
author_facet Torres, Adriana da Silva
da Silveira, João Vinícios Wirbitzki
Torres, Moisés de Matos
de Araujo, Cintia Tereza Pimenta
Galo, Rodrigo
de Oliveira, Simone Gomes Dias
author_sort Torres, Adriana da Silva
collection PubMed
description The objective of this work was to evaluate the mechanical performance of Z350 resin composite modified with Bombyx mori cocoons silk nanoparticles for dental applications. Four experimental groups were analyzed G0% = Filtek Z350 resin composite (control); G1% = Filtek Z350 with 1% of silk nanoparticles; G3% = Filtek Z350 with 3% of silk nanoparticles; G5% = Filtek Z350 with 5% of silk nanoparticles. It was employed scanning electron microscopy, energy dispersive X-ray spectroscopy, X-ray diffraction, 3-point flexural strength test, Knoop hardness test, and surface roughness. From 3-point flexural strength tests the control group presented the best results G(0%) = 113.33 MPa (±23.73). The higher flexural modulus was shown by groups G(3%) = 29.150 GPa (±5.191) and G(5%) = 34.101 GPa (±7.940), which are statistically similar. The Knoop microhardness test has shown statistical difference only among the G(3%) group between the top 80.78 (± 3.00) and bottom 68.80 (±3.62) and no difference between the groups. The roughness test presented no statistical difference between the groups. The incorporation of silk nanoparticles reduced the flexural strength of Z350 resin composite. The surface roughness and microhardness tests showed no changes in any of the groups studied.
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spelling pubmed-102082852023-05-25 Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications Torres, Adriana da Silva da Silveira, João Vinícios Wirbitzki Torres, Moisés de Matos de Araujo, Cintia Tereza Pimenta Galo, Rodrigo de Oliveira, Simone Gomes Dias Braz Dent J Article The objective of this work was to evaluate the mechanical performance of Z350 resin composite modified with Bombyx mori cocoons silk nanoparticles for dental applications. Four experimental groups were analyzed G0% = Filtek Z350 resin composite (control); G1% = Filtek Z350 with 1% of silk nanoparticles; G3% = Filtek Z350 with 3% of silk nanoparticles; G5% = Filtek Z350 with 5% of silk nanoparticles. It was employed scanning electron microscopy, energy dispersive X-ray spectroscopy, X-ray diffraction, 3-point flexural strength test, Knoop hardness test, and surface roughness. From 3-point flexural strength tests the control group presented the best results G(0%) = 113.33 MPa (±23.73). The higher flexural modulus was shown by groups G(3%) = 29.150 GPa (±5.191) and G(5%) = 34.101 GPa (±7.940), which are statistically similar. The Knoop microhardness test has shown statistical difference only among the G(3%) group between the top 80.78 (± 3.00) and bottom 68.80 (±3.62) and no difference between the groups. The roughness test presented no statistical difference between the groups. The incorporation of silk nanoparticles reduced the flexural strength of Z350 resin composite. The surface roughness and microhardness tests showed no changes in any of the groups studied. Fundação Odontológica de Ribeirão Preto 2023-05-15 /pmc/articles/PMC10208285/ /pubmed/37194858 http://dx.doi.org/10.1590/0103-6440202304950 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
spellingShingle Article
Torres, Adriana da Silva
da Silveira, João Vinícios Wirbitzki
Torres, Moisés de Matos
de Araujo, Cintia Tereza Pimenta
Galo, Rodrigo
de Oliveira, Simone Gomes Dias
Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title_full Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title_fullStr Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title_full_unstemmed Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title_short Composite resin reinforced with silk nanoparticles from Bombyx mori cocoon for dental applications
title_sort composite resin reinforced with silk nanoparticles from bombyx mori cocoon for dental applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208285/
https://www.ncbi.nlm.nih.gov/pubmed/37194858
http://dx.doi.org/10.1590/0103-6440202304950
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