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Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity

Carbon nanoparticles with antimicrobial properties, such as fullerenes, can be distinguished among the promising means of combating pathogens characterized by resistance to commercial antibiotics. However, they have a number of limitations for their use in medicine. In particular, the insolubility o...

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Autores principales: Bolshakova, Olga, Lebedev, Vasily, Mikhailova, Elena, Zherebyateva, Olga, Aznabaeva, Liliya, Burdakov, Vladimir, Kulvelis, Yuri, Yevlampieva, Natalia, Mironov, Andrey, Miroshnichenko, Igor, Sarantseva, Svetlana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383838/
https://www.ncbi.nlm.nih.gov/pubmed/37514170
http://dx.doi.org/10.3390/pharmaceutics15071984
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author Bolshakova, Olga
Lebedev, Vasily
Mikhailova, Elena
Zherebyateva, Olga
Aznabaeva, Liliya
Burdakov, Vladimir
Kulvelis, Yuri
Yevlampieva, Natalia
Mironov, Andrey
Miroshnichenko, Igor
Sarantseva, Svetlana
author_facet Bolshakova, Olga
Lebedev, Vasily
Mikhailova, Elena
Zherebyateva, Olga
Aznabaeva, Liliya
Burdakov, Vladimir
Kulvelis, Yuri
Yevlampieva, Natalia
Mironov, Andrey
Miroshnichenko, Igor
Sarantseva, Svetlana
author_sort Bolshakova, Olga
collection PubMed
description Carbon nanoparticles with antimicrobial properties, such as fullerenes, can be distinguished among the promising means of combating pathogens characterized by resistance to commercial antibiotics. However, they have a number of limitations for their use in medicine. In particular, the insolubility of carbon nanoparticles in water leads to a low biocompatibility and especially strong aggregation when transferred to liquid media. To overcome the negative factors and enhance the action of fullerenes in an extended range of applications, for example, in antimicrobial photodynamic therapy, we created new water-soluble complexes containing, in addition to C60 fullerene, purified detonation nanodiamonds (AC960) and/or polyvinylpyrrolidone (PVP). The in vitro antibacterial activity and toxicity to human cells of the three-component complex C60+AC960+PVP were analyzed in comparison with binary C60+PVP and C60+AC960. All complexes showed a low toxicity to cultured human skin fibroblasts and ECV lines, as well as significant antimicrobial activity, which depend on the type of microorganisms exposed, the chemical composition of the complex, its dosage and exposure time. Complex C60+PVP+AC960 at a concentration of 175 µg/mL showed the most stable and pronounced inhibitory microbicidal/microbiostatic effect.
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spelling pubmed-103838382023-07-30 Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity Bolshakova, Olga Lebedev, Vasily Mikhailova, Elena Zherebyateva, Olga Aznabaeva, Liliya Burdakov, Vladimir Kulvelis, Yuri Yevlampieva, Natalia Mironov, Andrey Miroshnichenko, Igor Sarantseva, Svetlana Pharmaceutics Article Carbon nanoparticles with antimicrobial properties, such as fullerenes, can be distinguished among the promising means of combating pathogens characterized by resistance to commercial antibiotics. However, they have a number of limitations for their use in medicine. In particular, the insolubility of carbon nanoparticles in water leads to a low biocompatibility and especially strong aggregation when transferred to liquid media. To overcome the negative factors and enhance the action of fullerenes in an extended range of applications, for example, in antimicrobial photodynamic therapy, we created new water-soluble complexes containing, in addition to C60 fullerene, purified detonation nanodiamonds (AC960) and/or polyvinylpyrrolidone (PVP). The in vitro antibacterial activity and toxicity to human cells of the three-component complex C60+AC960+PVP were analyzed in comparison with binary C60+PVP and C60+AC960. All complexes showed a low toxicity to cultured human skin fibroblasts and ECV lines, as well as significant antimicrobial activity, which depend on the type of microorganisms exposed, the chemical composition of the complex, its dosage and exposure time. Complex C60+PVP+AC960 at a concentration of 175 µg/mL showed the most stable and pronounced inhibitory microbicidal/microbiostatic effect. MDPI 2023-07-19 /pmc/articles/PMC10383838/ /pubmed/37514170 http://dx.doi.org/10.3390/pharmaceutics15071984 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
Bolshakova, Olga
Lebedev, Vasily
Mikhailova, Elena
Zherebyateva, Olga
Aznabaeva, Liliya
Burdakov, Vladimir
Kulvelis, Yuri
Yevlampieva, Natalia
Mironov, Andrey
Miroshnichenko, Igor
Sarantseva, Svetlana
Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title_full Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title_fullStr Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title_full_unstemmed Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title_short Fullerenes on a Nanodiamond Platform Demonstrate Antibacterial Activity with Low Cytotoxicity
title_sort fullerenes on a nanodiamond platform demonstrate antibacterial activity with low cytotoxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383838/
https://www.ncbi.nlm.nih.gov/pubmed/37514170
http://dx.doi.org/10.3390/pharmaceutics15071984
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