Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications

Background & Objective: In recent years, the proliferation of microbial organisms has increased alarmingly, and the overuse of various antibiotics against microorganisms has increased drug resistance. On the other hand, the need to reduce health costs, the production of antimicrobials with low c...

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Main Authors: Merat Karimi, Ehsan Sadeghi, Mostafa Zahedifar
Format: Article
Language:English
Published: Fasa University of Medical Sciences 2022-04-01
Series:Journal of Advanced Biomedical Sciences
Subjects:
Online Access:http://jabs.fums.ac.ir/article-1-2766-en.pdf
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author Merat Karimi
Ehsan Sadeghi
Mostafa Zahedifar
author_facet Merat Karimi
Ehsan Sadeghi
Mostafa Zahedifar
author_sort Merat Karimi
collection DOAJ
description Background & Objective: In recent years, the proliferation of microbial organisms has increased alarmingly, and the overuse of various antibiotics against microorganisms has increased drug resistance. On the other hand, the need to reduce health costs, the production of antimicrobials with low costs, and the basic needs of today's human society have become. This led to a large-scale study of new drugs against microorganisms and the use of nanoparticles as antibacterial agents were considered. This study aimed to use biocompatible carbon quantum dots(CQDs) nanoparticles instead of antibiotics resistant to gram-positive and gram-negative microorganisms. Materials & Methods: Fluorescent carbon quantum dots were extracted from natural lemon juice using the hydrothermal approach. Analyzes of X-ray diffraction (XRD), Fourier transform infrared(FT-IR), ultraviolet-visible (UV-Vis), photoluminescence(PL), transmission electron microscope(TEM), and energy-dispersive spectrometer(EDS). CQDs were investigated on ten types of microorganisms by the microwell dilution method. In this study, the minimal inhibition concentrations) MIC) and the minimum bactericidal concentration(MBC) was determined. Results: Fluorescent CQDs less than 5 nm in size were fabricated and confirmed by structural and microscopic analysis. This test showed that four microorganisms B. subtilis, E. coli, P. aeruginosa, S. pyogenes and C. albicans were resistant to the antibiotic nystatin and showed the highest sensitivity to CQDs, the lowest MIC and MBC for CQDs are 250 µg/ml and 1000 µg/ml. Conclusions: In general, the results obtained from this study can claim that CQDs have antibacterial properties and can be introduced after further studies as candidates are used to treat or prevent a variety of infections caused by microorganisms.
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spelling doaj.art-e3cba51445c74e168d9d5eb0bea6cfb22023-09-20T21:29:24ZengFasa University of Medical SciencesJournal of Advanced Biomedical Sciences2228-51052783-15232022-04-01122152161Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial ApplicationsMerat Karimi0Ehsan Sadeghi1Mostafa Zahedifar2 Institute of Nanoscience and Nanotechnology, University of Kashan, Kashan, Iran Institute of Nanoscience and Nanotechnology, University of Kashan, Kashan, Iran Department of Physics, University of Kashan, Kashan, Iran Background & Objective: In recent years, the proliferation of microbial organisms has increased alarmingly, and the overuse of various antibiotics against microorganisms has increased drug resistance. On the other hand, the need to reduce health costs, the production of antimicrobials with low costs, and the basic needs of today's human society have become. This led to a large-scale study of new drugs against microorganisms and the use of nanoparticles as antibacterial agents were considered. This study aimed to use biocompatible carbon quantum dots(CQDs) nanoparticles instead of antibiotics resistant to gram-positive and gram-negative microorganisms. Materials & Methods: Fluorescent carbon quantum dots were extracted from natural lemon juice using the hydrothermal approach. Analyzes of X-ray diffraction (XRD), Fourier transform infrared(FT-IR), ultraviolet-visible (UV-Vis), photoluminescence(PL), transmission electron microscope(TEM), and energy-dispersive spectrometer(EDS). CQDs were investigated on ten types of microorganisms by the microwell dilution method. In this study, the minimal inhibition concentrations) MIC) and the minimum bactericidal concentration(MBC) was determined. Results: Fluorescent CQDs less than 5 nm in size were fabricated and confirmed by structural and microscopic analysis. This test showed that four microorganisms B. subtilis, E. coli, P. aeruginosa, S. pyogenes and C. albicans were resistant to the antibiotic nystatin and showed the highest sensitivity to CQDs, the lowest MIC and MBC for CQDs are 250 µg/ml and 1000 µg/ml. Conclusions: In general, the results obtained from this study can claim that CQDs have antibacterial properties and can be introduced after further studies as candidates are used to treat or prevent a variety of infections caused by microorganisms.http://jabs.fums.ac.ir/article-1-2766-en.pdfantibacterial activityhydrothermalcarbon quantum dotslemon juice
spellingShingle Merat Karimi
Ehsan Sadeghi
Mostafa Zahedifar
Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
Journal of Advanced Biomedical Sciences
antibacterial activity
hydrothermal
carbon quantum dots
lemon juice
title Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
title_full Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
title_fullStr Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
title_full_unstemmed Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
title_short Carbon Quantum Dots Extracted from Natural Lemon Juice: Efficient Material for Fluorescence and Antibacterial Applications
title_sort carbon quantum dots extracted from natural lemon juice efficient material for fluorescence and antibacterial applications
topic antibacterial activity
hydrothermal
carbon quantum dots
lemon juice
url http://jabs.fums.ac.ir/article-1-2766-en.pdf
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AT ehsansadeghi carbonquantumdotsextractedfromnaturallemonjuiceefficientmaterialforfluorescenceandantibacterialapplications
AT mostafazahedifar carbonquantumdotsextractedfromnaturallemonjuiceefficientmaterialforfluorescenceandantibacterialapplications