0000000000290815

AUTHOR

Angela Filocamo

showing 5 related works from this author

Effect of temperature on the release of carvacrol and cinnamaldehyde incorporated into polymeric systems to control growth and biofilms ofEscherichia…

2015

This study assessed the effect of temperature on the release of essential oil components incorporated by melt compounding into polymeric films. Specifically, polyethylene-co-vinylacetate (EVA) films containing carvacrol (CAR) and cinnamaldehyde (ALD), alone and in combination, were prepared and their surface and mechanical properties and antibacterial and anti-biofilm activity against Escherichia coli and Staphylococcus aureus were evaluated. The addition of ALD and CAR did not provoke variation in the surface morphology of EVA and allowed their delivery. At 37°C, films containing CAR, ALD or their combination (25+75%) were found to have the strongest bactericidal effect, whereas at lower t…

Staphylococcus aureusMorphology (linguistics)Aquatic Sciencemedicine.disease_causeApplied Microbiology and BiotechnologybiofilmCinnamaldehydelaw.inventionchemistry.chemical_compoundlawOils VolatileEscherichia colimedicineOrganic chemistryCarvacrolAcroleinEscherichia coliEssential oilWater Science and TechnologyAcroleinBiofilmtemperatureAnti-Bacterial Agentsantibacterial polymerchemistryStaphylococcus aureusBiofilmsMonoterpenesStaphylococcus aureuCymenesPolyvinylsPolyethylenestemperature; antibacterial polymers; biofilm; essential oil components; Escherichia coli; Staphylococcus aureusessential oil componentNuclear chemistryBiofouling
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Efficacia di film polimerici a base di etilen-vinil-acetato e componenti di oli essenziali nei confronti del biofilm

2012

film antibatterici EVA biofilm oli essenziali
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Development and characterization of essential oil component-based polymer films: a potential approach to reduce bacterial biofilm

2013

The development of new polymeric materials aimed to control the bacterial biofilm appears to be an important practical approach. The goal of the present study was to prepare and characterize poly(ethylene-co-vinyl acetate) copolymer (EVA) films containing citronellol, eugenol, and linalool and evaluate their efficiency on growth and biofilm formation of Listeria monocytogenes, Staphylococcus aureus, Staphylococcus epidermidis, Escherichia coli, and Pseudomonas aeruginosa in monospecies and dual species. The results showed that the addition of oil components influenced the elastic modulus (15 % decrease), the tensile stress (30 % decrease), the elongation at break (10 % increase), and the co…

XTT assayBacterial Physiological Phenomenamedicine.disease_causeApplied Microbiology and BiotechnologyEssential oillaw.inventionchemistry.chemical_compoundListeria monocytogenesStaphylococcus epidermidislawOils VolatilemedicineOrganic chemistryFood scienceIncubationEssential oilCitronellolBacteriaDual speciebiologyChemistryBiofilmBiofilmEssential oils; Polymeric film; Biofilm; Dual species; XTTassayGeneral Medicinebiology.organism_classificationAnti-Bacterial AgentsEugenolPolymeric filmStaphylococcus aureusBiofilmsPolyvinylsBiotechnologyApplied Microbiology and Biotechnology
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Polimeri antibatterici contenenti carvacrolo come approccio innovativo per il controllo del biofilm

2011

polimeri antibatterici biofilm oli essenziali
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Study on carvacrol and cinnamaldehyde polymeric films: mechanical properties, release kinetics and antibacterial and antibiofilm activities.

2012

Polyethylene-co-vinylacetate (EVA) films with different concentrations (3.5 wt% and 7 wt%) of essential oil constituents, carvacrol or cinnamaldehyde, were prepared and characterized by mechanical, antibacterial and antibiofilm properties. The incorporation of the compounds into copolymer films affected their elastic modulus, tensile stress and elongation at break. Carvacrol and cinnamaldehyde act as plasticizers which reduce the intermolecular forces of polymer chains, thus improving the flexibility and extensibility of the film. The analysis of the surface characteristics demonstrated that essential oil constituents lowered the contact angle values without causing any remarkable variation…

Carvacrol Cinnamaldehyde Polymeric film Mechanical properties Release kinetic BiofilmStaphylococcus aureusPolymersMechanical propertiesBacterial growthEscherichia coli O157Applied Microbiology and BiotechnologyCinnamaldehydelaw.inventionContact anglechemistry.chemical_compoundlawCarvacrolOrganic chemistryCarvacrolAcroleinEssential oilchemistry.chemical_classificationBiofilmBiofilmPlasticizerFood PackagingGeneral MedicinePolymerListeria monocytogenesAnti-Bacterial AgentsRelease kineticKineticsPolymeric filmchemistryBiofilmsMonoterpenesCymenesCarvacrol; Cinnamaldehyde; Polymeric film; Mechanical properties; Release kinetic; BiofilmCinnamaldehydeBiotechnologyNuclear chemistryApplied microbiology and biotechnology
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