Search results for "food preservation"

showing 10 items of 112 documents

Inhibitory effect of sweet whey fermented by Lactobacillus plantarum strains against fungal growth: A potential application as an antifungal agent

2020

Abstract: The presence of mycotoxigenic fungi such as Aspergillus, Penicillium, and Fusarium genera represents a problem in food preservation and consequently, its spoilage. During the fermentation process with lactic acid bacteria, a range of secondary metabolites associated with beneficial health effects were released. In the present study, goat whey fermented by Lactobacillus plantarum (CECT 220, 221, 223, and 748) species has shown a satisfactory inhibitory effect against 28 fungi, showing for certain species of Fusarium genus and also, for Aspergillus steynii, a value of minimum inhibitory concentration until 1.95 g/L. In addition, phenyllactic acid was identified in each sample of fer…

FusariumPreservativeAntifungal Agentsfermentation proceFood spoilageMicrobial Sensitivity TestsShelf lifeFusariumWheymycotoxigenic fungiAnimalsFood sciencephenyllactic acidbiologyChemistryGoatsantifungal activitydigestive oral and skin physiologyPenicilliumFood preservationfood and beveragesbiology.organism_classificationAspergillusWhey ProteinsFermentationPenicilliumFermentationLactobacillus plantarumLactobacillus plantarumFood ScienceJournal of Food Science
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Untargeted metabolomics of rind essential oils allowed to differentiate two closely related clementine varieties

2021

[EN] Chemical characterization of clementine varieties (Citrus clementina Hort. ex Tan.) essential oils (EO) can lead to variety identification and valorization of their potential use in food and aroma industries. The goal of this study was the chemometric discrimination between two very closely related and morphologically identical clementine varieties, Clemenules (NL) and Clemenpons (PO), based on their rind EO, to identify the differential volatile organic compounds (VOCs) and to determine their antioxidant capacity. EO rind volatile profile was determined by gas chromatography coupled to mass spectrometry in Citrus fruit at different ripening stages grown two independent years in two di…

antioxidant activity<i>Citrus clementina</i>Plant ScienceflavedoSesquiterpeneArticlechemistry.chemical_compoundvolatile organic compoundsBIOQUIMICA Y BIOLOGIA MOLECULARCitrus clementinaFood scienceEcology Evolution Behavior and SystematicsAromaEcologybiologyBotanyClemenulesFood preservationVolatile organics compoundsRipeningClemenponsDodecanalQ01 Food science and technologybiology.organism_classificationF60 Plant physiology and biochemistryUntargeted metabolomicschemistryU30 Research methodsQK1-989clemenulesGas chromatographycitrus clementinaclemenponsClementineF30 Plant genetics and breeding
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Oxidative stability of virgin olive oils

2001

An investigation was carried out on virgin olive oils of the Gentile (Larino), Gentile (Colletorto), Coratina, and Leccino varieties, harvested at different times, to assess their oxidation stability. The olive oils were analyzed by means of peroxide, K-232, and K 270 values at 1, 6, 12, and 18 mon of storage in green bottles, in the dark, at temperatures ranging from a mean of 6degreesC in winter to 12degreesC in summer. A subsample was also oven-tested at 75degreesC and then analyzed on a weekly basis using the same oxidative parameters. The less ripe the olives (harvested in the same area, during 1 mon), the more resistant the olive oils were to forced oxidation. The amount of total phen…

AntioxidantChemistryGeneral Chemical Engineeringmedicine.medical_treatmentOrganic ChemistryFood preservationSettore AGR/15 - Scienze E Tecnologie AlimentariShelf lifevirgin olive oil stability oxidationchemistry.chemical_compoundVegetable oilOleuropeinBotanymedicinePhenolsCultivarPeroxide valueFood science
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Fermentation profiles of Manzanilla-Aloreña cracked green table olives in different chloride salt mixtures.

2010

NaCl plays an important role in table olive processing affecting the flavour and microbiological stability of the final product. However, consumers demand foods low in sodium, which makes necessary to decrease levels of this mineral in fruits. In this work, the effects of diverse mixtures of NaCl, CaCl2 and KCl on the fermentation profiles of cracked directly brined Manzanilla-Aloreña olives, were studied by means of response surface methodology based in a simplex lattice mixture design with constrains. All salt combinations led to lactic acid processes. The growth of Enterobacteriaceae populations was always limited and partially inhibited by the presence of CaCl2. Only time to reach half …

Time FactorsWater activityFood HandlingTable oliveSodium chlorideSodiumPopulationMicroorganismsColony Count Microbialchemistry.chemical_elementBacterial growthSodium ChlorideMicrobiologyFermentation profileCalcium chloridePotassium Chloridechemistry.chemical_compoundCalcium ChlorideBriningEnterobacteriaceaeSpecies SpecificityFood PreservationOleaYeastsFood scienceeducationeducation.field_of_studyDose-Response Relationship DrugWaterHydrogen-Ion ConcentrationYeastLactic acidKineticschemistryBiochemistryPotassium chlorideTasteFermentationFood MicrobiologyFermentationSaltsFood ScienceFood microbiology
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Shelf life extension of mozzarella cheese contaminated with Penicillium spp. using the antifungal compound ɛ-polylysine.

2019

Molds are one of the most important spoilage organisms on cheese which can lead to economic loss as well as raising public health concerns due to the production of mycotoxins. This study investigates the use of ɛ-polylysine as natural antimicrobial to inhibit fungal growth. The minimal inhibitory concentrations and minimal fungicidal concentrations of ɛ-polylysine were determined against Penicillium roqueforti, Penicillium nordicum, and Penicillium solitum. Then, polylysine was tested as surface antimicrobial for the preservation of mozzarella slice cheese inoculated with these Penicillium spp. and stored in plastic trays during 25 days. The minimal inhibitory concentrations calculated for…

0106 biological sciencesAntifungal AgentsFood HandlingGeneral Chemical EngineeringFood spoilageMicrobial Sensitivity TestsShelf life01 natural sciencesIndustrial and Manufacturing EngineeringPenicillium solitumchemistry.chemical_compound0404 agricultural biotechnologyAnti-Infective AgentsCheese010608 biotechnologyFood PreservationPolylysineFood scienceMycotoxinbiologyFungiPenicilliumfood and beveragesPenicillium roqueforti04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040401 food sciencechemistryFood StoragePenicilliumFood MicrobiologyPenicillium nordicumFood ScienceFood science and technology international = Ciencia y tecnologia de los alimentos internacional
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Microbial inactivation and evaluation of furan formation in high hydrostatic pressure (HHP) treated vegetable-based infant food.

2017

Abstract The inactivation of pathogenic and spoilage bacteria as well as the formation of food processing contaminants (e.g. acrylamide, furan, etc.) in infant foods is of utmost importance for industry, consumers as well as regulatory bodies. In this study, the potential of high hydrostatic pressure (HHP) for microorganism inactivation including total mesophilic aerobic bacteria (TMA) and total yeasts and molds (TYM) at equivalent processing conditions, as well as its effects on furan formation in vegetable-based infant food was evaluated. The process parameters evaluated were combinations of pressures (200, 300, and 400 MPa), temperatures (25, 35, and 45 °C), and treatment times (5, 10, a…

Food SafetyAerobic bacteriaFood HandlingMicroorganismHydrostatic pressure01 natural scienceschemistry.chemical_compound0404 agricultural biotechnologyFuranFood PreservationYeastsVegetablesHydrostatic PressurePressureFood scienceFuransMicrobial ViabilityBacteriabusiness.industry010401 analytical chemistryFungiTemperature04 agricultural and veterinary sciencesContamination040401 food science0104 chemical scienceschemistryAcrylamideFood processingInfant FoodbusinessFood ScienceMesophileFood research international (Ottawa, Ont.)
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Mould germination: data treatment and modelling.

2006

Abstract The objectives of this study were i/ to examine germination data sets over a range of environmental conditions (water activity, temperature) for eight food spoilage moulds, ii/ to compare the ability of the Gompertz equation and logistic function to fit the experimental plots, iii/ to simulate germination by assessing various distributions of the latent period for germination amongst a population of spores. Data sets (percentage germination, P (%), versus time, t) of Aspergillus carbonarius, Aspergillus ochraceus, Fusarium verticillioides, Fusarium proliferatum, Gibberella zeae, Mucor racemosus, Penicillium chrysogenum and Penicillium verrucosum were analysed. No correlation, or re…

PopulationGompertz functionColony Count MicrobialFusarium proliferatumGerm tubeFood ContaminationMicrobiologyModels BiologicalAnimal scienceFood PreservationBotanyPenicillium verrucosumLogistic functioneducationeducation.field_of_studybiologyFungiTemperatureWaterGeneral MedicineSpores Fungalbiology.organism_classificationKineticsGibberella zeaeGerminationFood MicrobiologyFood ScienceInternational journal of food microbiology
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Elemental composition of seasoning products

2007

The elemental composition of seasoning products, like spices garlic and onion, has been reviewed paying special attention to methods proposed in the literature to determine specific elements or as much as possible components of these products which are widespread used in food preservation or food flavouring and can contribute to the intake of both, essential and toxic elements. Sample treatment and metal speciation aspects have been critically revised concerning onion, garlic and pepper (the most commonly studied products).

Elemental compositionSeasoningPlant ExtractsChemistryFood preservationFood scienceSpicesChemistry Techniques AnalyticalTrace ElementsAnalytical ChemistryMetal speciationTalanta
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Use of a logistic model to assess spoilage by Byssochlamys fulva in clarified apple juice

2010

Abstract The percentage P (%) of spoiled bottles (n = 40) of clarified apple juice due to Byssochlamys fulva, was modeled by using a logistic model: P = P max 1 + exp ( k ( τ − t ) ) where Pmax (%) the maximum percentage of spoiled bottles, k (h− 1) a slope parameter and τ (h) the time for P = Pmax/2. Bottles of pasteurized apple juice were inoculated with B. fulva IOC 4518 ascospores for low and high initial loads, 4.8 ± 2.3 ascospores/100 mL and 19.3 ± 4.6 ascospores/100 mL respectively and incubated at 21 °C and 30 °C. Pmax was not significantly different from 100% except for a low initial load at 21 °C. Model parameters were estimated with a good accuracy, RMSE in the range 3.89–7.50. T…

ByssochlamysTime FactorsbiologyFood HandlingChemistryByssochlamys fulvaFood spoilageTemperatureByssochlamysPasteurizationModel parametersGeneral Medicinebiology.organism_classificationMicrobiologylaw.inventionBeveragesLogistic ModelslawFood PreservationMalusInitial loadFruit juiceFood scienceFood qualityFood ScienceInternational Journal of Food Microbiology
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High-performance liquid chromatographic determination of furfural compounds in infant formulas during full shelf-life

2005

Abstract In order to evaluate the extent of the Maillard reaction in adapted and follow-up infant formulas (IF), a study was made of the evolution of furfural compound (2-furaldehyde, 5-hydroxymethyl-2-furfuraldehyde, 2-furylmethylketone and 5-methyl-2-furaldehyde) in these products, along with their relation to available lysine during the shelf-life period (two years at 20 and 37 °C). Total and free furfural contents were measured by RP-HPLC and UV detection, heating or not the sample in boiling water to free the furfurals bound to proteins and the furfurals formed from precursors. Only 2-furylmethylketone and 5-hydroxymethyl-2-furfuraldehyde were detected. Adapted and follow-up IF showed …

ChromatographyChemistryAdvanced stageFood preservationGeneral MedicineShelf lifeFurfuralHigh-performance liquid chromatographyAnalytical ChemistryWarehouseMaillard reactionsymbols.namesakechemistry.chemical_compoundBoilingsymbolsFood ScienceFood Chemistry
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