Search results for "SARI"

showing 10 items of 929 documents

A chemical approach for the reduction of beauvericin in a solution model and in food systems.

2014

Abstract Beauvericin (BEA) is a bioactive compound produced by the secondary metabolism of several Fusarium strains with a strong antibacterial, antifungal, and insecticidal activities. This study evaluated the reduction of BEA added at 25 mg/kg in phosphate buffer saline (PBS) solutions at pH of 4, 7 and 10, or to different cereal products (kernels and flours) by the bioactive compounds phenyl isothiocyanate (PITC) and benzyl isothiocyanate (BITC). The concentration of the mycotoxin was evaluated using liquid chromatography coupled to the diode array detector (LC-DAD). In solution, BEA reduction ranged from 9% to 94% on a time-dependent fashion and lower pH levels resulted in higher BEA re…

FusariumChromatographybiologyBenzyl isothiocyanatePhenyl isothiocyanatefood and beveragesFood ContaminationGeneral MedicineModels TheoreticalToxicologybiology.organism_classificationBeauvericinBioactive compoundchemistry.chemical_compoundchemistryChromatography detectorDepsipeptidesSecondary metabolismMycotoxinOxidation-ReductionFood ScienceChromatography LiquidFood and chemical toxicology : an international journal published for the British Industrial Biological Research Association
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Risk assessment associated to the intake of the emerging Fusarium mycotoxins BEA, ENs and FUS present in infant formula of Spanish origin

2012

Abstract Forty-five samples of Spanish follow-up infant formula with different chemical compositions were analyzed determining the emerging Fusarium mycotoxins beauvericin (BEA), enniatins (ENs) (A, A 1 , B, B 1 ), and fusaproliferin (FUS). The samples were extracted three times with ethyl acetate using an Ultra-turrax homogenizer. Mycotoxins were identified and quantified using a liquid chromatography (LC) coupled to a diode array detector (DAD). Results showed that the percentage of the samples contaminated with ENs and FUS were 46.6 and 20.0% respectively, whereas all analyzed samples were free of BEA. The ENs A and B were detected only in one sample with 149.6 and 39.4 mg/kg respectivel…

FusariumChromatographybiologyDaily intakeChemistryDietary exposurebiology.organism_classificationBeauvericinFusaproliferinchemistry.chemical_compoundInfant formulaSpanish OriginFood scienceMycotoxinFood ScienceBiotechnologyFood Control
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Influence of the heat treatment on the degradation of the minor Fusarium mycotoxin beauvericin

2012

Abstract Beauvericin (BEA) is a bioactive compound produced by the secondary metabolism of several Fusarium strains and known to have various biological activities. This study investigated the degradation of the minor Fusarium mycotoxin BEA present in the concentration of 5 mg/kg in a model solution and in different crispy breads produced with different flours typologies (corn, hole, wheat, durum wheat, soy and rice) during the heat treatment carried out in an oven at three different temperatures of 160, 180 and 200 °C and at 3, 6, 10, 15 and 20 min incubation. The concentration of the bioactive compound studied, analyzed with the technique of the liquid chromatography tandem mass spectrome…

FusariumChromatographybiologyMetabolitefood and beveragesbiology.organism_classificationBioactive compoundBeauvericinchemistry.chemical_compoundchemistryMicotossineLiquid chromatography–mass spectrometryDegradation (geology)MycotoxinIncubationfusariumFood ScienceBiotechnologyFood Control
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Beauvericin degradation during bread and beer making

2013

Abstract Beauvericin (BEA) is a bioactive compound produced by the secondary metabolism of several Fusarium species and known to have various biological activities. This study investigated the degradation of the minor Fusarium mycotoxin BEA present at the concentration of 5 mg/kg in barley and wheat flour during beer and bread making. The influence of the making processes and of the formation of degradation products of BEA were evaluated during the beer and bread making. The concentration of BEA and its evolution during the production processes were determined with the technique of the liquid chromatography tandem mass spectrometry in tandem (LC-MS/MS), whereas the formation of the BEA degr…

FusariumChromatographybiologybusiness.industryWheat flourfood and beveragesbiology.organism_classificationBeauvericinBioactive compoundchemistry.chemical_compoundchemistryLiquid chromatography–mass spectrometryBrewingFermentationFood sciencebusinessMycotoxinFood ScienceBiotechnologyFood Control
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Study of the potential toxicity of enniatins A, A(1), B, B(1) by evaluation of duodenal and colonic bioavailability applying an in vitro method by Ca…

2010

Abstract The bioavailability of the minor Fusarium mycotoxins enniatins (ENs) utilizing an in vitro method which allows the simulation of the small and large intestine tracts has been studied. This method, based on the application of the Caco-2 cells grown alone or in symbiosis with several strains characteristics of the gastrointestinal tract, has permitted to simulate the duodenal and colonic intestinal compartments, respectively. The duodenal bioavailability expressed as absorption value after 4 h of exposure, ranged from 57.7 to 76.8% for EN A, from 68.8 to 70.2% for EN A1, from 65.0 to 67.0% for EN B, and from 62.2 to 65.1% for EN B1. Colonic bioavailability after 48 h of incubation ra…

FusariumColonDuodenumBiological AvailabilityAbsorption (skin)PharmacologyToxicologyRisk AssessmentFusariumDepsipeptidesToxicity TestsmedicineHumansLarge intestineIncubationGastrointestinal tractbiologyChemistryMycotoxinsbiology.organism_classificationIn vitroBioavailabilitymedicine.anatomical_structureIntestinal AbsorptionCaco-2Caco-2 CellsToxicon : official journal of the International Society on Toxinology
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Presence of Enniatins and Beauvericin in Romanian Wheat Samples: From Raw Material to Products for Direct Human Consumption

2017

In this study, a total of 244 wheat and wheat-based products collected from Romania were analyzed by liquid chromatography tandem mass spectrometry (LC-MS/MS) in order to evaluate the presence of four enniatins (ENs; i.e., ENA, ENA1, ENB, and ENB1) and beauvericin (BEA). For the wheat samples, the influence of agricultural practices was assessed, whereas the results for the wheat-based products were used to calculate the estimated daily intake of emerging mycotoxins through wheat consumption for the Romanian population. ENB presented the highest incidence (41% in wheat and 32% in wheat-based products), with its maximum levels of 815 μg kg−1 and 170 μg kg−1 in wheat and wheat-based products,…

FusariumDaily intakeHealth Toxicology and MutagenesisorganicFlourPopulationemerging mycotoxinslcsh:MedicineFood ContaminationRaw materialToxicologyRisk Assessment01 natural sciencesArticlechemistry.chemical_compound0404 agricultural biotechnologyFusariumLiquid chromatography–mass spectrometryDepsipeptidesHumansFood scienceLC-MS/MSeducationMycotoxinTriticumestimated daily intakeconventionalcerealseducation.field_of_studywheat productsbiologyRomania010401 analytical chemistrylcsh:Rfood and beveragesBread04 agricultural and veterinary sciencesMycotoxinsbiology.organism_classification040401 food scienceBeauvericin0104 chemical sciencesemerging mycotoxins; LC-MS/MS; cereals; organic; conventional; wheat products; estimated daily intakechemistryAgronomyEnvironmental MonitoringFood contaminantToxins
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Occurrence of Fusarium mycotoxins and their dietary intake through beer consumption by the European population

2014

Abstract Since cereals are raw materials for production of beer and beer-based drinks, the occurrence mycotoxins in 154 beer samples was topic of investigation in this study. The analyses were conducted using QuEChERS extraction and gas chromatography–tandem mass spectrometry determination. The analytical method showed recoveries for vast majority of analytes ranged from 70% to 110%, relative standard deviations lower than 15% and limits of detection from 0.05 to 8 μg/L. A significant incidence of HT-2 toxin and deoxynivalenol (DON) were found in 9.1% and 59.7% of total samples, respectively. The exposure of European population to mycotoxins through beer consumption was assessed. No toxicol…

FusariumDaily intakeeducationFood ContaminationQuechersGas Chromatography-Mass SpectrometryAnalytical Chemistrychemistry.chemical_compoundTandem Mass SpectrometryBeer drinkersHumansFood scienceMycotoxinExposure assessmentMycotoxinbiologyDietary intakeBeerGC–MS/MSfood and beveragesGeneral MedicineEuropean populationMycotoxinsbiology.organism_classificationT-2 ToxinchemistryExposure assessmentTrichotheceneshuman activitiesHumanFood ScienceFood Chemistry
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Relationship between the Stages of Development of Fusarium moniliforme ATCC 38932 and Production of Fusarin C

2019

A study of the kinetics of fusarin C production by Fusarium moniliforme ATCC 38932, a known producer of fusarin C, was carried out. This strain was subcultured on an EG medium for an adequate sporulation, and a 4% inoculum was transferred to the 10% ICI N medium. The conditions for the production of fusarin C in this synthetic culture medium were optimized. The time-course study of fusarin C performed over 26 days with this strain showed three different developmental stages in which a maximum production of fusarin C was reached on the 8th day of incubation; thereafter this strain ceased growing exponentially and exhibited a sharp decrease of fusarin C from that moment on.

FusariumDevelopmental stagebiologyStrain (chemistry)Fungi imperfectibiology.organism_classificationMicrobiologySporeMicrobiologychemistry.chemical_compoundchemistryFood scienceMycotoxinIncubationFood ScienceJournal of Food Protection
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Interaction effects of Fusarium enniatins (A, A1, B and B1) combinations on in vitro cytotoxicity of Caco-2 cells

2014

Abstract Foodstuff is usually contaminated by more than one mycotoxin, however toxicological data are lacking as regards the effects in combinations compared to their individual effect. This study investigated the in vitro effects of enniatins (ENs) A, A1, B and B1, alone and in combinations, on Caco-2 cells viability by MTT assay after 24 h of exposure. Cells were treated with concentrations ranging from 0.9 to 15.0 μM, individually and in combination of two, three and four mycotoxins. Dose–response curves were generated for each mycotoxin and the isobologram method was used to determine the interactive effects of tested mixtures. Tested ENs produced significant cytotoxic effects both indi…

FusariumDose-Response Relationship DrugbiologyCell SurvivalChemistryDrug SynergismGeneral MedicineMycotoxinsToxicologybiology.organism_classificationInteractionIn vitroToxicologyInhibitory Concentration 50chemistry.chemical_compoundFusariumCaco-2DepsipeptidesHumansCytotoxic T cellMTT assayFood scienceCaco-2 CellsMycotoxinCytotoxicityToxicology in Vitro
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Isolation, purification, LC–MS/MS characterization and reactive oxygen species induced by fumonisin B1 in VERO cells

2010

Fumonisins are mycotoxins produced by Fusarium verticillioides that commonly contaminate maize and maize products. The present work shows the results of a comparative study of three different fermentation's techniques (solid and liquid medium of corn and a solid agarized medium) for the production of fumonisins B-1, B-2 and B-3 with strains of F. verticillioides. The solid medium of corn was the most effective in the production of fumonisins, being Fumonisin B-1 the one produced with higher concentration, so the extract obtained by solid fermentation process was used for FB1 purification. Fumonisins characterization and quantification were performed with reversed-phase high-performance liqu…

FusariumEXTRACTIONVERTICILLIOIDESCULTURESToxicologyFumonisinsMECHANISMSchemistry.chemical_compoundFUSARIUM-MONILIFORMEFusariumTandem Mass SpectrometryLiquid chromatography–mass spectrometryDichlorofluoresceinChlorocebus aethiopsFumonisinAnimalsOXIDATIVE STRESSMycotoxinVero CellsChromatography High Pressure LiquidPROLIFERATUMFumonisin B1ChromatographyMYCOTOXINSbiologyfood and beveragesGeneral MedicineReference StandardsFluoresceinsbiology.organism_classificationCulture MediaDNA-DAMAGEchemistryFermentationVero cellFermentationOCHRATOXINReactive Oxygen SpeciesFood ScienceFood and Chemical Toxicology
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