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Antimicrobial Activity and Metabolomic Analysis of Linalool Against Pathogenic Bacteria Methicillin-Resistant Staphylococcus aureus
by
Qiu, Min
, Zuo, Youwei
, Deng, Hongping
, Long, Nana
in
Amino acids
/ Analysis
/ Antibacterial activity
/ Antibiotics
/ Antimicrobial activity
/ Antimicrobial agents
/ antimicrobial resistance
/ Bacteria
/ Cosmetics
/ Dalfopristin
/ Daptomycin
/ Drug resistance
/ Drug resistance in microorganisms
/ Energy metabolism
/ Glutathione
/ Levofloxacin
/ Linalool
/ Linezolid
/ Metabolites
/ metabolome
/ Metabolomics
/ Methicillin
/ Microorganisms
/ Minimum inhibitory concentration
/ MRSA
/ Original Research
/ Penicillin
/ Preservatives
/ Quinupristin
/ Quinupristin-dalfopristin
/ Skin
/ Staphylococcus aureus
/ Staphylococcus aureus infections
/ Staphylococcus infections
/ Strains (organisms)
/ Streptococcus infections
/ Telithromycin
/ Tetracycline
/ Tetracyclines
/ Toxicity
/ Vancomycin
2025
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Antimicrobial Activity and Metabolomic Analysis of Linalool Against Pathogenic Bacteria Methicillin-Resistant Staphylococcus aureus
by
Qiu, Min
, Zuo, Youwei
, Deng, Hongping
, Long, Nana
in
Amino acids
/ Analysis
/ Antibacterial activity
/ Antibiotics
/ Antimicrobial activity
/ Antimicrobial agents
/ antimicrobial resistance
/ Bacteria
/ Cosmetics
/ Dalfopristin
/ Daptomycin
/ Drug resistance
/ Drug resistance in microorganisms
/ Energy metabolism
/ Glutathione
/ Levofloxacin
/ Linalool
/ Linezolid
/ Metabolites
/ metabolome
/ Metabolomics
/ Methicillin
/ Microorganisms
/ Minimum inhibitory concentration
/ MRSA
/ Original Research
/ Penicillin
/ Preservatives
/ Quinupristin
/ Quinupristin-dalfopristin
/ Skin
/ Staphylococcus aureus
/ Staphylococcus aureus infections
/ Staphylococcus infections
/ Strains (organisms)
/ Streptococcus infections
/ Telithromycin
/ Tetracycline
/ Tetracyclines
/ Toxicity
/ Vancomycin
2025
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Antimicrobial Activity and Metabolomic Analysis of Linalool Against Pathogenic Bacteria Methicillin-Resistant Staphylococcus aureus
by
Qiu, Min
, Zuo, Youwei
, Deng, Hongping
, Long, Nana
in
Amino acids
/ Analysis
/ Antibacterial activity
/ Antibiotics
/ Antimicrobial activity
/ Antimicrobial agents
/ antimicrobial resistance
/ Bacteria
/ Cosmetics
/ Dalfopristin
/ Daptomycin
/ Drug resistance
/ Drug resistance in microorganisms
/ Energy metabolism
/ Glutathione
/ Levofloxacin
/ Linalool
/ Linezolid
/ Metabolites
/ metabolome
/ Metabolomics
/ Methicillin
/ Microorganisms
/ Minimum inhibitory concentration
/ MRSA
/ Original Research
/ Penicillin
/ Preservatives
/ Quinupristin
/ Quinupristin-dalfopristin
/ Skin
/ Staphylococcus aureus
/ Staphylococcus aureus infections
/ Staphylococcus infections
/ Strains (organisms)
/ Streptococcus infections
/ Telithromycin
/ Tetracycline
/ Tetracyclines
/ Toxicity
/ Vancomycin
2025
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Antimicrobial Activity and Metabolomic Analysis of Linalool Against Pathogenic Bacteria Methicillin-Resistant Staphylococcus aureus
Journal Article
Antimicrobial Activity and Metabolomic Analysis of Linalool Against Pathogenic Bacteria Methicillin-Resistant Staphylococcus aureus
2025
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Overview
The purpose of this study was to evaluate the antibacterial activity and mechanism of linalool against Methicillin-resistant
(MRSA).
The determination of the antibacterial activity of linalool against clinically isolated MRSA strains was based on the minimum inhibitory concentration (MIC) and growth curve analysis. Finally, the inhibition mechanism of linalool was elucidated through metabolomic analysis and molecular docking.
Among the isolated strains, penicillin resistance was found to be the highest, while resistance to daptomycin/quinupristin-dalfopristin, linezolid, vancomycin, tetracycline, telithromycin, and levofloxacin was not observed. The MIC range of linalool was 211.24-1.65 μg/mL, with MIC
and MIC
values of 13.2 μg/mL and 105.62 μg/mL, respectively. Metabolomic analysis revealed that linalool interferes with various substance metabolisms and energy metabolism in MRSA, with the glutathione pathway potentially being a key pathway affected by linalool. Molecular docking revealed that linalool exhibited good binding potential to the target glutathione.
This study suggests that linalool could be developed as a drug or preservative to inhibit MRSA growth.
Publisher
Dove Medical Press Limited,Taylor & Francis Ltd,Dove Press,Dove,Dove Medical Press
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