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Preparation, characterization, and enhanced antimicrobial activity: quercetin-loaded PLGA nanoparticles against foodborne pathogens

dc.contributor.authorArasoglu, Tulin
dc.contributor.authorDerman, Serap
dc.contributor.authorMansuroglu, Banu
dc.contributor.authorUzunoglu, Deniz
dc.contributor.authorKocyigit, Busra
dc.contributor.authorGumus, Busra
dc.contributor.authorAcar, Tayfun
dc.contributor.authorTuncer, Burcu
dc.date.accessioned2026-06-27T13:59:00Z
dc.date.issued2017
dc.description.abstractThe use of quercetin as a bioflavonoid is becoming increasingly common in food industries even though poor water solubility, instability, absorption, and permeability have limited its application. The oil-in-water single-emulsion solvent evaporation method to synthesize highly stable and soluble quercetin-encapsulated nanoparticles (NPs), in which the reaction yield, particle size, and polydispersity of the NPs are varied greatly within the process parameters of the synthesis method, has been optimized. NPs with different initial quercetin amounts were used to determine how the quercetin amount affected nanoparticle properties and antimicrobial efficiency. Listeria monocytogenes, Salmonella typhimurium, Escherichia coli, and Staphylococcus aureus were chosen as model bacteria due to their being foodborne pathogens. The results of antimicrobial activity evaluated by three different methods showed that the antimicrobial activity of both quercetin NPs and free quercetin was effective on gram-positive strains (L. monocytogenes and S. aureus). Additionally, it was detected that Q31 NPs have more effective antimicrobial activity than other synthesized quercetin nanoparticles depending on the amount of substance and release. Furthermore, on the basis of assessing the antibacterial effects by scanning electron microscopy, it was detected that bacteria cells lost their integrity and became pale with the release of cytoplasm and decomposed after treatment with Q31 NPs.en
dc.description.sponsorshipYildiz Technical University Scientific Research Projects Coordination Department [2015-01-07-KAP03, 2014-07-04-GEP03]
dc.description.urihttps://doi.org/10.3906/biy-1604-80
dc.identifier.doi10.3906/biy-1604-80
dc.identifier.eissn1303-6092
dc.identifier.endpage140
dc.identifier.issn1300-0152
dc.identifier.issue1
dc.identifier.startpage127
dc.identifier.urihttps://hdl.handle.net/20.500.14981/56230
dc.identifier.volume41
dc.identifier.wos000394539800014
dc.language.isoeng
dc.publisherTubitak Scientific & Technological Research Council Turkey
dc.relation.ispartofTURKISH JOURNAL OF BIOLOGY
dc.subjectAntimicrobial activity
dc.subjectnanoparticle
dc.subjectpathogens
dc.subjectPLGA
dc.subjectquercetin
dc.subjectBIODEGRADABLE NANOPARTICLES
dc.subjectPARTICLE-SIZE
dc.subjectLISTERIA-MONOCYTOGENES
dc.subjectPHENOLIC-COMPOUNDS
dc.subjectDRUG-DELIVERY
dc.subjectSTAPHYLOCOCCUS
dc.subjectHYDROCHLORIDE
dc.subjectEXTRACT
dc.subjectAGENTS
dc.subjectLife Sciences & Biomedicine - Other Topics
dc.titlePreparation, characterization, and enhanced antimicrobial activity: quercetin-loaded PLGA nanoparticles against foodborne pathogens
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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