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ZnO-Rutin nanostructure as a potent antibiofilm agent against Pseudomonasaeruginosa.

Authors :
Taslimi Eshkalak, Mahya
Mazloumi Jourkouyeh, Edris
Faezi Ghasemi, Mohammad
Zamani, Hojjatolah
Zahmatkesh, Hossein
Rasti, Behnam
Source :
Microbial Pathogenesis. Jan2025, Vol. 198, pN.PAG-N.PAG. 1p.
Publication Year :
2025

Abstract

Pseudomonas aeruginosa is a common human pathogen that is resistant to multiple antibiotics due to its ability to form biofilms. Developing novel nanoformulations capable of inhibiting and removing biofilms offers a promising solution for controlling biofilm-related infections. In this study, we investigated the anti-biofilm activity of rutin-conjugated ZnO nanoparticles (ZnO-Rutin NPs) in pathogenic strains of P. aeruginosa. The synthesized ZnO-Rutin NPs had amorphous shapes with sizes ranging from 14 to 100 nm. The broth microdilution assay revealed that ZnO-Rutin NPs, with an MIC value of 2 mg/mL, exhibit greater antimicrobial activity than ZnO NPs and rutin alone. Based on crystal violet staining, the biofilm inhibition rate by ½ MIC of the conjugated nanoparticles was recorded at above 90 %. The significant reduction in exopolysaccharide (62.75–66.37 %) and alginate (38.3–57.61 %) levels, as well as the formation of thin biofilms in the ZnO-Rutin NP-treated group, confirmed the anti-biofilm potential of these nanoparticles. Additionally, a significant decrease in the metabolic activity and viable cells of mature biofilms was observed after exposure to the conjugated nanoparticles. Furthermore, ZnO-Rutin NPs considerably attenuated the expression of the Las-Rhl quorum-sensing transcriptional regulator genes (lasR and rhlR) in P. aeruginosa by 0.39–0.40 and 0.25–0.42 folds, respectively. This work demonstrated that ZnO-Rutin NPs are remarkably capable of inhibiting the initial stage of biofilm formation and eradicating mature biofilms, suggesting they could be a useful agent for treating P. aeruginosa biofilm-related infections. • ZnO-Rutin NPs exhibited antibiofilm activity against P. aeruginosa. • ZnO-Rutin NPs reduced exopolysaccharide levels in P. aeruginosa. • ZnO-Rutin NPs disrupted P. aeruginosa biofilms. • Metabolic activity was reduced in ZnO-Rutin NP-treated biofilms. • ZnO-Rutin NPs decreased the expression of the lasR/rhlR genes in P. aeruginosa. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08824010
Volume :
198
Database :
Academic Search Index
Journal :
Microbial Pathogenesis
Publication Type :
Academic Journal
Accession number :
181574122
Full Text :
https://doi.org/10.1016/j.micpath.2024.107156