Search results for "OCHRATOXIN"

showing 10 items of 138 documents

Mycotoxins in herbal teas marketed in Latvia and dietary exposure assessment

2019

The occurrence of 12 mycotoxins has been analysed by liquid chromatography - time of flight mass spectrometry in the batch of 60 herbal teas purchased from drugstores in Latvia. Among the dry tea samples, 90% were positive for one to eight mycotoxins. Enniatin B and deoxynivalenol (DON) were the most frequently detected mycotoxins in 55% and 45% of the samples, respectively. DON reached the highest level, from 129 µg kg-1 in herbal blend to 5,463 µg kg-1 in wormwood tea. Ochratoxin A (OTA) and aflatoxin B1 (AFB1) were found in 10% and 20% of the samples at the concentrations ranged between 2.99-30.3 µg kg-1 and 3.40-23.7 µg kg-1. Studies of the tea infusion process indicated that 32-100% of…

Ochratoxin AAflatoxinHplc tof msFood ContaminationBiologyToxicologyRisk AssessmentDietary Exposurechemistry.chemical_compoundTandem Mass SpectrometryHumansFood scienceMycotoxinZearalenoneChromatography High Pressure LiquidEnniatin BDietary exposurePublic Health Environmental and Occupational HealthReproducibility of ResultsMycotoxinsLatviaHplc ms mschemistryTeas HerbalFood AnalysisFood ScienceFood Additives & Contaminants: Part B
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Occurrence of Mycotoxins in Botanical Dietary Supplement Infusion Beverages.

2019

The aim of the present work was to study the occurrence of mycotoxins [aflatoxins (1-4), 3-acetyldeoxyniavlenol (5), 15-acetyldeoxynivalenol (6), nivalenol (7), HT-2 (8), T-2 (9), ochratoxin A (10), zearalenone (11), enniatin A (12), enniatin A1 (13), enniatin B (14), enniatin B1 (15), and beauvericin (16)] present in potable products derived from herbal teas. Analysis was carried out by liquid chromatography coupled to ion-trap tandem mass spectrometry (LC-MS/MS-IT) after a dispersive liquid-liquid microextraction procedure (DLLME) was conducted. The DLLME method was applied to 52 commercial samples of chamomile, chamomile with anise, chamomile with honey, linden, pennyroyal mint, thyme, v…

Ochratoxin AAflatoxinLiquid Phase MicroextractionPharmaceutical Science01 natural sciencesRisk AssessmentAnalytical ChemistryBeverageschemistry.chemical_compoundHerbal teaTandem Mass SpectrometryDrug DiscoveryFood scienceMycotoxinZearalenonePharmacology010405 organic chemistryChemistryOrganic ChemistryMycotoxinsBeauvericin0104 chemical sciences010404 medicinal & biomolecular chemistryComplementary and alternative medicineDietary SupplementsMolecular MedicineEnniatinTeas HerbalPennyroyalChromatography LiquidJournal of natural products
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Determination of multiple mycotoxins in feedstuffs by combined use of UPLC–MS/MS and UPLC–QTOF–MS

2018

In this report, a UPLC-ESI-MS/MS method for the simultaneous determination of aflatoxins, ochratoxin A, zearalenone, deoxynivalenol, fumonisins, T-2 and HT-2 toxins, fusarenone X, diacetoxyscirpenol, and 3- and 15-acetyldeoxynivalenol in feedstuffs was developed. A quadrupole-time-of-flight mass spectrometer detector (QTOF-MS) operating in full scan mode was combined with the UPLC-ESI-MS/MS system to confirm the identity of detected mycotoxins and to identify other possible microbial metabolites occurring in samples. Sixty-two feed samples from the Spanish market were analyzed. Extraction of metabolites was carried out with acetonitrile-water-formic acid (80:19:1, v/v/v). Method detection a…

Ochratoxin AAflatoxinMass spectrometryFumonisins01 natural sciencesMass SpectrometryDiacetoxyscirpenolAnalytical Chemistrychemistry.chemical_compound0404 agricultural biotechnologyAflatoxinsMycotoxinZearalenoneChromatography High Pressure LiquidChromatography010401 analytical chemistry04 agricultural and veterinary sciencesGeneral MedicineMycotoxinsAnimal FeedOchratoxins040401 food science0104 chemical sciencesT-2 ToxinchemistryUplc qtof msZearalenoneUplc ms msTrichothecenesFood ScienceFood Chemistry
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Multi-mycotoxin occurrence in feed, metabolism and carry-over to animal-derived food products: A review

2021

The world requests for raw materials used in animal feed has been steadily rising in the last years driven by higher demands for livestock production. Mycotoxins are frequent toxic metabolites present in these raw materials. The exposure of farm animals to mycotoxins could result in undesirable residues in animal-derived food products. Thus, the potential ingestion of edible animal products (milk, meat and fish) contaminated with mycotoxins constitutes a public health concern, since they enter the food chain and may cause adverse effects upon human health. The present review summarizes the state-of-the-art on the occurrence of mycotoxins in feed, their metabolism and carry-over into animal …

Ochratoxin AAflatoxinMeatAnimal foodbusiness.industryAnimal feedtechnology industry and agriculturefood and beveragesFood ContaminationGeneral MedicineMycotoxinsBiologyToxicologyAnimal FeedMycotoxins in animal feedchemistry.chemical_compoundchemistryAnimal source foodsAnimalsLivestockFood sciencebusinessMycotoxinFood ScienceFood and Chemical Toxicology
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Mycobiota and mycotoxin producing fungi from cocoa beans.

2008

The present study reports on the natural mycobiota occurring in cocoa beans, paying special attention to the incidence of fungal species that are potential producers of mycotoxins. The results show that predominant fungi were different species of the genus Aspergillus belonging to section Flavi and Nigri. Of the 214 strains of Aspergillus section Flavi collected from cocoa beans, 120 were identified as A. flavus and 94 as A. tamarii. Of Aspergillus section Nigri 138 strains were isolated, with 132 belonging to A. niger aggregate and 6 to A. carbonarius species. Potential ability to produce aflatoxins (AFs) B1, B2, G1 and G2, cyclopiazonic acid (CPA) and ochratoxin A (OTA) was studied by iso…

Ochratoxin AAflatoxinMycobiotaAspergillus flavusFood ContaminationMicrobiologyRisk Assessmentchemistry.chemical_compoundBotanyHumansheterocyclic compoundsFood scienceMycotoxinChromatography High Pressure LiquidAspergillusCacaobiologyAspergillus nigerfood and beveragesGeneral MedicineMycotoxinsbiology.organism_classificationOchratoxinsAspergilluschemistryConsumer Product SafetyAspergillus nigerCyclopiazonic acidFood ScienceAspergillus flavusInternational journal of food microbiology
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Mycotoxin contamination of animal feedingstuff: detoxification by gamma irradiation and reduction of aflatoxins and ochratoxin A concentrations

2014

Mycotoxins are fungal secondary metabolites identified in many agricultural products screened for toxigenic moulds. They have been reported to be carcinogenic, teratogenic, tremorogenic, haemorrhagic and dermatitic to a wide range of organisms. With the increasing stringent regulations for mycotoxins imposed by importing countries such as those of the European Union, many cereals that are not safe for human consumption are used in formulations intended for animal feed. Gamma-rays are reported in the scientific literature to destroy ochratoxin A and aflatoxin in food crops and feed. The present study provides preliminary data for establishing the effect of dose of gamma-irradiation, ranging …

Ochratoxin AAflatoxinMycotoxin contaminationAnimal feedHealth Toxicology and MutagenesisFood ContaminationBiologyToxicologyPoultrymycotoxinToxicologychemistry.chemical_compoundAflatoxinsgamma-irradiationDetoxificationAnimalsmedia_common.cataloged_instanceFood scienceEuropean unionMycotoxinaflatoxins; commercial animal feed; gamma-irradiation; mycotoxin; ochratoxin Amedia_commoncommercial animal feedPublic Health Environmental and Occupational HealthReproducibility of Resultsfood and beveragesDose-Response Relationship RadiationGeneral ChemistryGeneral MedicineSettore CHIM/08 - Chimica FarmaceuticaAnimal FeedOchratoxinsItalychemistryGamma RaysFood IrradiationEdible Grainochratoxin AFood ScienceGamma irradiation
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Occurrence of Free and Conjugated Mycotoxins in Aromatic and Medicinal Plants and Dietary Exposure Assessment in the Moroccan Population.

2021

Aromatic and medicinal plants (AMPs), as herbal material, are subjected to contamination by various mycotoxin-producing fungi, either free and conjugated. Such a problem is associated with poor storage practices, and lack of adopting good agricultural practices and good harvesting practices. Nevertheless, AMPs are poorly investigated. The purpose of this study was to investigate the co-occurrence of 15 mycotoxins (four aflatoxins (AFB1, AFB2, AFG1, and AFG2), ochratoxin A (OTA), beauvericin (BEA), four enniatins (ENA, ENA1, ENB, and ENB1), zearalenone (ZEN), alternariol (AOH), tentoxin (TENT), T-2, and HT-2 toxins) in 40 samples of AMPs frequently consumed in Morocco by using liquid chromat…

Ochratoxin AAflatoxinSpectrometry Mass Electrospray IonizationHealth Toxicology and MutagenesisPopulationAlternariollcsh:MedicineToxicology01 natural sciencesRisk AssessmentArticleQ-TOF-LC/MSDietary Exposurechemistry.chemical_compound0404 agricultural biotechnologyLiquid chromatography–mass spectrometryTandem Mass Spectrometryco-occurrenceHumansFood scienceeducationMycotoxinZearalenoneeducation.field_of_studyPlants Medicinallcsh:R010401 analytical chemistry04 agricultural and veterinary sciencesMycotoxins040401 food scienceBeauvericin0104 chemical sciencesMoroccochemistryexposureFood MicrobiologyChromatography LiquidToxins
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Bee pollen, a substrate that stimulates ochratoxin A production by Aspergillus ochraceus Wilh.

2004

The capacity of bee pollen as a substrate for production of ochratoxin A (OTA) by a strain of Aspergillus ochraceus was studied. For control purposes corn, wheat and rice grains, and eleven liquid media were assayed. They were Yeast Extract Sucrose broth (YES), YES supplemented with 0.05, 0.1, 0.5, 1 and 5% bee pollen, YES supplemented with 0.5% peptone, 50% must, Wickerham medium, Aflatoxin Production medium and Coconut Broth Medium. Cultures were maintained at 28 degrees C for 4 weeks and were analyzed every seven days for OTA by liquid chromatography with fluorescence detection. OTA production in bee pollen was significantly (P < 0.01) higher than production in corn, wheat and rice grain…

Ochratoxin AAflatoxinSucrosemedicine.disease_causeApplied Microbiology and BiotechnologyMicrobiologychemistry.chemical_compoundPollenBotanymedicineYeast extractAnimalsFood scienceEcology Evolution Behavior and SystematicsAspergillus ochraceusbiologyfood and beveragesBeesbiology.organism_classificationOchratoxinsYeastchemistryBee pollenPollenEdible GrainAspergillus ochraceusChromatography LiquidSystematic and applied microbiology
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Determination of Aflatoxins and Ochratoxins in Sicilian Sweet Wines by High-Performance Liquid Chromatography with Fluorometric Detection and Immunoa…

2015

Ochratoxin A is the only mycotoxins with legal limits in the European Union for wine, by contrast, there is no EU legislation imposed for Aflatoxins and Ochratoxin B. A reproducible and sensitive analytical method for six mycotoxins: Ochratoxin A, Ochratoxin B, Aflatoxins B1, Aflatoxin B2, Aflatoxin G1 and Aflatoxin G2 was developed by using immunoaffinity column cleanup and HPLC-FLD method in 30 sweet wines produced in Sicily. This typical type of wine is manufactured from grapes grown in warmer climates, which have a higher sugar content; also, the over-ripening and the drying process of the grapes before fermentation conditions are responsible for the particular susceptibility of these b…

Ochratoxin AAflatoxinSweet dessert wineSettore CHIM/10 - Chimica Degli AlimentiApplied Microbiology and BiotechnologyOchratoxinsAnalytical Chemistrychemistry.chemical_compoundAflatoxinmedia_common.cataloged_instanceFood scienceEuropean unionSafety Risk Reliability and QualityMycotoxinOchratoxinmedia_commonWineChromatographyChemistryIACOchratoxin AOchratoxin BContaminationSettore CHIM/08 - Chimica FarmaceuticaSafety ResearchFood ScienceHPLC-FLD analysi
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Mycotoxins and mycotoxigenic moulds in nuts and sunflower seeds for human consumption

1991

A survey was carried out to obtain data on the occurrence of mycotoxins and the mycotoxin-producing potential of fungi isolated from nuts (almonds, peanuts, hazelnuts, pistachio nuts) and sunflower seeds in Spain. Thin-layer chromatography was used to separate the toxins. Aflatoxins were detected in one sample of almonds (95 ppb aflatoxin B1 and 15 ppb aflaxtoxin B2) and in one sample of peanuts at a level below 10 ppb of aflatoxin B1. 100% of samples showed variable incidence of fungal contamination. The predominant fungi present in samples were Penicillium spp, Aspergillus niger, A. flavus, A. glaucus and Rhizopus spp. The results showed that isolates of different species were able to pro…

Ochratoxin AAflatoxinVeterinary (miscellaneous)Applied Microbiology and BiotechnologyMicrobiologyPatulinchemistry.chemical_compoundPenicillic acidBotanyHumansNutsFood scienceMycotoxinAnalysis of VariancebiologyFungitechnology industry and agriculturefood and beveragesMycotoxinsbiology.organism_classificationCitrininchemistrySeedsPenicilliumFood MicrobiologyHelianthusChromatography Thin LayerAgronomy and Crop ScienceSterigmatocystinMycopathologia
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