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Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods

Hydroxyapatite (HA) is the main inorganic mineral that constitutes bone matrix and represents the most used biomaterial for bone regeneration. Over the years, it has been demonstrated that HA exhibits good biocompatibility, osteoconductivity, and osteoinductivity both in vitro and in vivo, and can b...

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Autores principales: Franco, Domenico, Calabrese, Giovanna, Petralia, Salvatore, Neri, Giulia, Corsaro, Carmelo, Forte, Lucia, Squarzoni, Stefano, Guglielmino, Salvatore, Traina, Francesco, Fazio, Enza, Conoci, Sabrina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923154/
https://www.ncbi.nlm.nih.gov/pubmed/33669712
http://dx.doi.org/10.3390/molecules26041099
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author Franco, Domenico
Calabrese, Giovanna
Petralia, Salvatore
Neri, Giulia
Corsaro, Carmelo
Forte, Lucia
Squarzoni, Stefano
Guglielmino, Salvatore
Traina, Francesco
Fazio, Enza
Conoci, Sabrina
author_facet Franco, Domenico
Calabrese, Giovanna
Petralia, Salvatore
Neri, Giulia
Corsaro, Carmelo
Forte, Lucia
Squarzoni, Stefano
Guglielmino, Salvatore
Traina, Francesco
Fazio, Enza
Conoci, Sabrina
author_sort Franco, Domenico
collection PubMed
description Hydroxyapatite (HA) is the main inorganic mineral that constitutes bone matrix and represents the most used biomaterial for bone regeneration. Over the years, it has been demonstrated that HA exhibits good biocompatibility, osteoconductivity, and osteoinductivity both in vitro and in vivo, and can be prepared by synthetic and natural sources via easy fabrication strategies. However, its low antibacterial property and its fragile nature restricts its usage for bone graft applications. In this study we functionalized a MgHA scaffold with gold nanorods (AuNRs) and evaluated its antibacterial effect against S. aureus and E. coli in both suspension and adhesion and its cytotoxicity over time (1 to 24 days). Results show that the AuNRs nano-functionalization improves the antibacterial activity with 100% bacterial reduction after 24 h. The toxicity study, however, indicates a 4.38-fold cell number decrease at 24 days. Although further optimization on nano-functionalization process are needed for cytotoxicity, these data indicated that Au-NRs nano-functionalization is a very promising method for improving the antibacterial properties of HA.
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spelling pubmed-79231542021-03-03 Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods Franco, Domenico Calabrese, Giovanna Petralia, Salvatore Neri, Giulia Corsaro, Carmelo Forte, Lucia Squarzoni, Stefano Guglielmino, Salvatore Traina, Francesco Fazio, Enza Conoci, Sabrina Molecules Article Hydroxyapatite (HA) is the main inorganic mineral that constitutes bone matrix and represents the most used biomaterial for bone regeneration. Over the years, it has been demonstrated that HA exhibits good biocompatibility, osteoconductivity, and osteoinductivity both in vitro and in vivo, and can be prepared by synthetic and natural sources via easy fabrication strategies. However, its low antibacterial property and its fragile nature restricts its usage for bone graft applications. In this study we functionalized a MgHA scaffold with gold nanorods (AuNRs) and evaluated its antibacterial effect against S. aureus and E. coli in both suspension and adhesion and its cytotoxicity over time (1 to 24 days). Results show that the AuNRs nano-functionalization improves the antibacterial activity with 100% bacterial reduction after 24 h. The toxicity study, however, indicates a 4.38-fold cell number decrease at 24 days. Although further optimization on nano-functionalization process are needed for cytotoxicity, these data indicated that Au-NRs nano-functionalization is a very promising method for improving the antibacterial properties of HA. MDPI 2021-02-19 /pmc/articles/PMC7923154/ /pubmed/33669712 http://dx.doi.org/10.3390/molecules26041099 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Franco, Domenico
Calabrese, Giovanna
Petralia, Salvatore
Neri, Giulia
Corsaro, Carmelo
Forte, Lucia
Squarzoni, Stefano
Guglielmino, Salvatore
Traina, Francesco
Fazio, Enza
Conoci, Sabrina
Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title_full Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title_fullStr Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title_full_unstemmed Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title_short Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods
title_sort antimicrobial effect and cytotoxic evaluation of mg-doped hydroxyapatite functionalized with au-nano rods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923154/
https://www.ncbi.nlm.nih.gov/pubmed/33669712
http://dx.doi.org/10.3390/molecules26041099
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