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Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study

This in vitro study evaluated bacterial cell proliferation and biofilm adhesion on titanium discs with and without antibacterial surface treatment to reduce the chances of peri-implant infections. Hexagonal boron nitride with 99.5% purity was converted to hexagonal boron nitride nanosheets via the l...

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Autores principales: Raval, Anjali, S. Yadav, Naveen, Narwani, Shweta, Somkuwar, Kirti, Verma, Varsha, Almubarak, Hussain, Alqahtani, Saeed M., Tasleem, Robina, Luke, Alexander Maniangat, Kuriadom, Sam Thomas, Karobari, Mohmed Isaqali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145549/
https://www.ncbi.nlm.nih.gov/pubmed/37103292
http://dx.doi.org/10.3390/jfb14040201
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author Raval, Anjali
S. Yadav, Naveen
Narwani, Shweta
Somkuwar, Kirti
Verma, Varsha
Almubarak, Hussain
Alqahtani, Saeed M.
Tasleem, Robina
Luke, Alexander Maniangat
Kuriadom, Sam Thomas
Karobari, Mohmed Isaqali
author_facet Raval, Anjali
S. Yadav, Naveen
Narwani, Shweta
Somkuwar, Kirti
Verma, Varsha
Almubarak, Hussain
Alqahtani, Saeed M.
Tasleem, Robina
Luke, Alexander Maniangat
Kuriadom, Sam Thomas
Karobari, Mohmed Isaqali
author_sort Raval, Anjali
collection PubMed
description This in vitro study evaluated bacterial cell proliferation and biofilm adhesion on titanium discs with and without antibacterial surface treatment to reduce the chances of peri-implant infections. Hexagonal boron nitride with 99.5% purity was converted to hexagonal boron nitride nanosheets via the liquid phase exfoliation process. The spin coating method was used for uniform coating of h-BNNSs over titanium alloy (Ti6Al4V) discs. Two groups of titanium discs were formed: Group I (n = 10) BN-coated titanium discs and Group II (n = 10) uncoated titanium discs. Two bacterial strains, Streptococcus mutans (initial colonizers) and Fusobacterium nucleatum (secondary colonizers), were used. A zone of inhibition test, microbial colony forming units assay, and crystal violet staining assay were used to evaluate bacterial cell viability. Surface characteristics and antimicrobial efficacy were examined by scanning electron microscopy with energy dispersion X-ray spectroscopy. SPSS (Statistical Package for Social Sciences) version 21.0 was used to analyze the results. The data were analyzed for probability distribution using the Kolmogorov-Smirnov test, and a non-parametric test of significance was applied. An inter-group comparison was done using the Mann-Whitney U test. A statistically significant increase was observed in the bactericidal action of BN-coated discs compared to uncoated discs against S. mutans, but no statistically significant difference was found against F. nucleatum.
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spelling pubmed-101455492023-04-29 Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study Raval, Anjali S. Yadav, Naveen Narwani, Shweta Somkuwar, Kirti Verma, Varsha Almubarak, Hussain Alqahtani, Saeed M. Tasleem, Robina Luke, Alexander Maniangat Kuriadom, Sam Thomas Karobari, Mohmed Isaqali J Funct Biomater Article This in vitro study evaluated bacterial cell proliferation and biofilm adhesion on titanium discs with and without antibacterial surface treatment to reduce the chances of peri-implant infections. Hexagonal boron nitride with 99.5% purity was converted to hexagonal boron nitride nanosheets via the liquid phase exfoliation process. The spin coating method was used for uniform coating of h-BNNSs over titanium alloy (Ti6Al4V) discs. Two groups of titanium discs were formed: Group I (n = 10) BN-coated titanium discs and Group II (n = 10) uncoated titanium discs. Two bacterial strains, Streptococcus mutans (initial colonizers) and Fusobacterium nucleatum (secondary colonizers), were used. A zone of inhibition test, microbial colony forming units assay, and crystal violet staining assay were used to evaluate bacterial cell viability. Surface characteristics and antimicrobial efficacy were examined by scanning electron microscopy with energy dispersion X-ray spectroscopy. SPSS (Statistical Package for Social Sciences) version 21.0 was used to analyze the results. The data were analyzed for probability distribution using the Kolmogorov-Smirnov test, and a non-parametric test of significance was applied. An inter-group comparison was done using the Mann-Whitney U test. A statistically significant increase was observed in the bactericidal action of BN-coated discs compared to uncoated discs against S. mutans, but no statistically significant difference was found against F. nucleatum. MDPI 2023-04-06 /pmc/articles/PMC10145549/ /pubmed/37103292 http://dx.doi.org/10.3390/jfb14040201 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Raval, Anjali
S. Yadav, Naveen
Narwani, Shweta
Somkuwar, Kirti
Verma, Varsha
Almubarak, Hussain
Alqahtani, Saeed M.
Tasleem, Robina
Luke, Alexander Maniangat
Kuriadom, Sam Thomas
Karobari, Mohmed Isaqali
Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title_full Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title_fullStr Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title_full_unstemmed Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title_short Antibacterial Efficacy and Surface Characteristics of Boron Nitride Coated Dental Implant: An In-Vitro Study
title_sort antibacterial efficacy and surface characteristics of boron nitride coated dental implant: an in-vitro study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145549/
https://www.ncbi.nlm.nih.gov/pubmed/37103292
http://dx.doi.org/10.3390/jfb14040201
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