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Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light

Authorized Users Only
2024
Authors
Dorontić, Slađana
Jovanović, Svetlana
Stefanović, Anđela
Kepić, Dejan
Scopelliti, Michelangelo
Ciasca, Gabriele
Di Santo, Riccardo
Bajuk Bogdanović, Danica
Marković, Olivera
Todorović Marković, Biljana
Marković, Zoran M.
Article (Published version)
Metadata
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Abstract
Over the last decades, bacterial resistance has become one of the emerging health threats. Particularly dangerousare bacterial strains resistant to various antibacterial drugs. Herein, we modified graphene quantum dots (GQDs)to produce efficient photo-induced antibacterial agents. GQDs were modified with (a) ethylene-diamine (EDA),(b) with EDA and gold nanoparticles (AuNPs), and (c) 3-amino-1,2,4-triazole (TA) using carbodiimide coupling.Photo-induced antibacterial activity of modified GQDs was tested against 8 bacterial strains. Treatment withmodified GQDs and blue light (wavelength of 470 nm) resulted in remarkable antibacterial activity with minimalinhibitory concentrations (MIC) of 7.81 μg mL -1 for K. pneumoniae and S. aureus and 3.9 μg mL-1 against MRSAand E. faecalis. Planar organization of GQDs functionalized with AuNPs allowed direct access of molecular oxygento AuNPs leading to more efficient 1O2 production as well as the 1O2 production from excited GQDs. Thus,GQDs functional...ized with AuNPs showed outstanding efficiency in the battle against several bacterial strains,particularly those that lead to nosocomial infections.

Keywords:
graphene quantum dots / Photodynamic therapy / Antibacterial agent / Carbodiimide coupling / Singlet oxygen production
Source:
Synthetic Metals, 2024, 309, 117753-
Funding / projects:
  • PHOTOGUN4MICROBES - Are photoactive nanoparticles salvation for global infectional treath? (RS-ScienceFundRS-Ideje-7741955)
  • Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200017 (University of Belgrade, Institute of Nuclear Sciences 'Vinča', Belgrade-Vinča) (RS-MESTD-inst-2020-200017)
  • Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM) (RS-MESTD-inst-2020-200026)

DOI: 10.1016/j.synthmet.2024.117753

ISSN: 0379-6779

WoS: 001319064000001

Scopus: 2-s2.0-85204178453
[ Google Scholar ]
1
1
URI
https://vinar.vin.bg.ac.rs/handle/123456789/13773
Collections
  • Radovi istraživača
  • PHOTOGUN4MICROBES
Institution/Community
Vinča
TY  - JOUR
AU  - Dorontić, Slađana
AU  - Jovanović, Svetlana
AU  - Stefanović, Anđela
AU  - Kepić, Dejan
AU  - Scopelliti, Michelangelo
AU  - Ciasca, Gabriele
AU  - Di Santo, Riccardo
AU  - Bajuk Bogdanović, Danica
AU  - Marković, Olivera
AU  - Todorović Marković, Biljana
AU  - Marković, Zoran M.
PY  - 2024
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/13773
AB  - Over the last decades, bacterial resistance has become one of the emerging health threats. Particularly dangerousare bacterial strains resistant to various antibacterial drugs. Herein, we modified graphene quantum dots (GQDs)to produce efficient photo-induced antibacterial agents. GQDs were modified with (a) ethylene-diamine (EDA),(b) with EDA and gold nanoparticles (AuNPs), and (c) 3-amino-1,2,4-triazole (TA) using carbodiimide coupling.Photo-induced antibacterial activity of modified GQDs was tested against 8 bacterial strains. Treatment withmodified GQDs and blue light (wavelength of 470 nm) resulted in remarkable antibacterial activity with minimalinhibitory concentrations (MIC) of 7.81 μg mL -1 for K. pneumoniae and S. aureus and 3.9 μg mL-1 against MRSAand E. faecalis. Planar organization of GQDs functionalized with AuNPs allowed direct access of molecular oxygento AuNPs leading to more efficient 1O2 production as well as the 1O2 production from excited GQDs. Thus,GQDs functionalized with AuNPs showed outstanding efficiency in the battle against several bacterial strains,particularly those that lead to nosocomial infections.
T2  - Synthetic Metals
T1  - Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light
VL  - 309
SP  - 117753
DO  - 10.1016/j.synthmet.2024.117753
ER  - 
@article{
author = "Dorontić, Slađana and Jovanović, Svetlana and Stefanović, Anđela and Kepić, Dejan and Scopelliti, Michelangelo and Ciasca, Gabriele and Di Santo, Riccardo and Bajuk Bogdanović, Danica and Marković, Olivera and Todorović Marković, Biljana and Marković, Zoran M.",
year = "2024",
abstract = "Over the last decades, bacterial resistance has become one of the emerging health threats. Particularly dangerousare bacterial strains resistant to various antibacterial drugs. Herein, we modified graphene quantum dots (GQDs)to produce efficient photo-induced antibacterial agents. GQDs were modified with (a) ethylene-diamine (EDA),(b) with EDA and gold nanoparticles (AuNPs), and (c) 3-amino-1,2,4-triazole (TA) using carbodiimide coupling.Photo-induced antibacterial activity of modified GQDs was tested against 8 bacterial strains. Treatment withmodified GQDs and blue light (wavelength of 470 nm) resulted in remarkable antibacterial activity with minimalinhibitory concentrations (MIC) of 7.81 μg mL -1 for K. pneumoniae and S. aureus and 3.9 μg mL-1 against MRSAand E. faecalis. Planar organization of GQDs functionalized with AuNPs allowed direct access of molecular oxygento AuNPs leading to more efficient 1O2 production as well as the 1O2 production from excited GQDs. Thus,GQDs functionalized with AuNPs showed outstanding efficiency in the battle against several bacterial strains,particularly those that lead to nosocomial infections.",
journal = "Synthetic Metals",
title = "Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light",
volume = "309",
pages = "117753",
doi = "10.1016/j.synthmet.2024.117753"
}
Dorontić, S., Jovanović, S., Stefanović, A., Kepić, D., Scopelliti, M., Ciasca, G., Di Santo, R., Bajuk Bogdanović, D., Marković, O., Todorović Marković, B.,& Marković, Z. M.. (2024). Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light. in Synthetic Metals, 309, 117753.
https://doi.org/10.1016/j.synthmet.2024.117753
Dorontić S, Jovanović S, Stefanović A, Kepić D, Scopelliti M, Ciasca G, Di Santo R, Bajuk Bogdanović D, Marković O, Todorović Marković B, Marković ZM. Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light. in Synthetic Metals. 2024;309:117753.
doi:10.1016/j.synthmet.2024.117753 .
Dorontić, Slađana, Jovanović, Svetlana, Stefanović, Anđela, Kepić, Dejan, Scopelliti, Michelangelo, Ciasca, Gabriele, Di Santo, Riccardo, Bajuk Bogdanović, Danica, Marković, Olivera, Todorović Marković, Biljana, Marković, Zoran M., "Graphene quantum dots with covalently bonded gold nanoparticles winning the battle against methicillin-resistant Staphylococcus aureus under blue light" in Synthetic Metals, 309 (2024):117753,
https://doi.org/10.1016/j.synthmet.2024.117753 . .

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