New Insights into the Antibacterial Activity of Hydroxytyrosol Extracted from Olive Leaves: Molecular Docking Simulations of its Antibacterial Mechanisms

Abstract: This study investigated the biological activities of a hydroxytyrosol‐rich extract from Olea europaea leaves, particularly its ability to eradicate severe pathogenic bacteria producing Extended‐Spectrum Beta‐Lactamases (ESBLs). The latter bacteria are emerging microorganisms that pose significant challenges due to their resistance to a broad range of potent therapeutic drugs. The extract was prepared through an accessible acid hydrolysis method. In vitro and In silico analyses through MIC, MBC analysis and molecular docking were conducted to evaluate the antibacterial properties. The extract showed remarkable antioxidant activity and significant antibacterial potential against reference species and ESBL bacteria. MIC and MBC calculations confirmed the extract's capacity to kill bacteria rather than just inhibit their growth. Further in silico analyzes demonstrated the high binding affinity of HT to the active sites of the gyrase B subunit and the peptidoglycan DD‐transpeptidase domain from proteins located in the cytoplasm and the cell wall of the bacteria, respectively. Results confirmed the structure‐activity relationship and the ability of HT to disrupt essential bacterial functions. This study validates the debated antimicrobial potential of HT and highlights its importance as a potential therapeutic agent against resistant bacteria, which is a critical area of research given the global challenge of antibiotic resistance.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
New Insights into the Antibacterial Activity of Hydroxytyrosol Extracted from Olive Leaves: Molecular Docking Simulations of its Antibacterial Mechanisms ; day:31 ; month:10 ; year:2024 ; extent:9
Chemistry & biodiversity ; (31.10.2024) (gesamt 9)

Creator
Ben Hassena, Amal
Abidi, Jihen
Miled, Nabil
Kulinowski, Łukasz
Skalicka‐Woźniak, Krystyna
Bouaziz, Mohamed

DOI
10.1002/cbdv.202401714
URN
urn:nbn:de:101:1-2411011324466.084294334006
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:30 AM CEST

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Associated

  • Ben Hassena, Amal
  • Abidi, Jihen
  • Miled, Nabil
  • Kulinowski, Łukasz
  • Skalicka‐Woźniak, Krystyna
  • Bouaziz, Mohamed

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