Search results for "Liquid Phase Microextraction"

showing 10 items of 25 documents

Development of microextraction techniques in combination with GC-MS/MS for the determination of mycotoxins and metabolites in human urine.

2017

Simple and highly efficient sample preparation procedures, namely, dispersive liquid–liquid microextraction and salting-out liquid–liquid extraction for the analysis of ten Fusarium mycotoxins and metabolites in human urine were compared. Various parameters affecting extraction efficiency were carefully evaluated. Under optimal extraction conditions, salting-out liquid–liquid extraction showed a better accuracy (84–96%) and precision (<14%) than dispersive liquid–liquid microextraction. Hence, a multibiomarker method based on salting-out liquid–liquid extraction followed by gas chromatography with tandem mass spectrometry was proposed. Satisfactory results in terms of validation were achiev…

Accuracy and precisionLiquid Phase MicroextractionFiltration and SeparationPilot ProjectsUrineUrinalysisTandem mass spectrometry01 natural sciencesGas Chromatography-Mass SpectrometryAnalytical Chemistry0404 agricultural biotechnologyLimit of DetectionTandem Mass SpectrometryHumansSample preparationDetection limitChromatographyChemistry010401 analytical chemistryExtraction (chemistry)04 agricultural and veterinary sciencesMycotoxins040401 food science0104 chemical sciencesGas chromatographyGas chromatography–mass spectrometryJournal of separation science
researchProduct

Determination of free formaldehyde in cosmetics containing formaldehyde-releasing preservatives by reversed-phase dispersive liquid-liquid microextra…

2017

Abstract An analytical method for the determination of traces of formaldehyde in cosmetic products containing formaldehyde-releasing preservatives has been developed. The method is based on reversed-phase dispersive liquid–liquid microextraction (RP-DLLME), that allows the extraction of highly polar compounds, followed by liquid chromatography–ultraviolet/visible (LC–UV/vis) determination with post-column derivatization. The variables involved in the RP-DLLME process were studied to provide the best enrichment factors. Under the selected conditions, a mixture of 500 μL of acetonitrile (disperser solvent) and 50 μL of water (extraction solvent) was rapidly injected into 5 mL of toluene sampl…

AcetonitrilesLiquid Phase Microextraction02 engineering and technologyCosmetics01 natural sciencesBiochemistryChemistry Techniques AnalyticalAnalytical Chemistrychemistry.chemical_compoundLimit of DetectionFormaldehydeAcetonitrileDerivatizationDetection limitChromatographyElution010401 analytical chemistryOrganic ChemistryExtraction (chemistry)Preservatives PharmaceuticalReproducibility of ResultsWaterGeneral Medicine021001 nanoscience & nanotechnology0104 chemical sciencesSolventchemistryReagentSolvents0210 nano-technologyEnrichment factorChromatography LiquidTolueneJournal of chromatography. A
researchProduct

Mycotoxin Dietary Exposure Assessment through Fruit Juices Consumption in Children and Adult Population

2019

Consumption of fruit juice is becoming trendy for consumers seeking freshness and high vitamin and low caloric intake. Mycotoxigenic moulds may infect fruits during crop growth, harvest, and storage leading to mycotoxin production. Many mycotoxins are resistant to food processing, which make their presence in the final juice product very likely expected. In this way, the presence of 30 mycotoxins including aflatoxin B1 (AFB1), aflatoxin B2 (AFB2), aflatoxin G1 (AFG1), aflatoxin G2 (AFG2), alternariol (AOH), alternariol monomethyl ether (AME), Ochratoxin A (OTA), fumonisin B1 (FB1), fumonisin B2 (FB2), enniatin A (ENNA), enniatin A1 (ENNA1), enniatin B (ENNB), enniatin B1 (ENNB1), beauverici…

AdultMaleOchratoxin ACitrusAflatoxinLiquid Phase MicroextractionHealth Toxicology and Mutagenesislcsh:MedicineFood ContaminationBiologyToxicologyfruit juice01 natural sciencesArticleDietary ExposurePatulinGlycogen Storage Disease Type IIIchemistry.chemical_compound0404 agricultural biotechnologyTandem Mass SpectrometryHumansFood scienceChildMycotoxinFumonisin B2DLLMElcsh:R010401 analytical chemistryReproducibility of Resultsrisk assessment04 agricultural and veterinary sciencesMycotoxins040401 food scienceBeauvericin0104 chemical sciencesFruit and Vegetable JuiceschemistryMalusFemaleEnniatinSterigmatocystinToxins
researchProduct

Biomonitoring of Multiple Mycotoxins in Urine by GC–MS/MS: A Pilot Study on Patients with Esophageal Cancer in Golestan Province, Northeastern Iran

2021

A pilot study to investigate the occurrence of 10 mycotoxins (deoxynivalenol, DON

AdultMalemedicine.medical_specialtyEsophageal NeoplasmsLiquid Phase MicroextractionHealth Toxicology and Mutagenesislcsh:MedicinePilot ProjectsUrineIranToxicologymedicine.disease_cause01 natural sciencesGastroenterologyDiacetoxyscirpenolGas Chromatography-Mass SpectrometryArticlechemistry.chemical_compoundYoung Adult0404 agricultural biotechnologyInternal medicinemycotoxinsmedicineHumansZearalanoneesophageal cancerMycotoxinZearalenoneAgedAged 80 and overCreatininebusiness.industryToxin010401 analytical chemistrylcsh:RGC–MS/MSurine biomarkers04 agricultural and veterinary sciencesMiddle Aged040401 food science0104 chemical scienceschemistryCase-Control StudiesBody BurdenFemaleGas chromatography–mass spectrometrybusinessBiological MonitoringToxins
researchProduct

High Pressure Processing Impact on Alternariol and Aflatoxins of Grape Juice and Fruit Juice-Milk Based Beverages.

2021

High-pressure processing (HPP) has emerged over the last 2 decades as a good alternative to traditional thermal treatment for food safety and shelf-life extension, supplying foods with similar characteristics to those of fresh products. Currently, HPP has also been proposed as a useful tool to reduce food contaminants, such as pesticides and mycotoxins. The aim of the present study is to explore the effect of HPP technology at 600 MPa during 5 min at room temperature on alternariol (AOH) and aflatoxin B1 (AFB1) mycotoxins reduction in different juice models. The effect of HPP has also been compared with a thermal treatment performed at 90 °C during 21 s. For this, different juice models, or…

AflatoxinFood industryFood HandlingLiquid Phase MicroextractionAlternariolPharmaceutical ScienceOrganic chemistryFood Contamination01 natural sciencesArticlealternariolAnalytical ChemistryPascalizationBeverageschemistry.chemical_compoundLactones0404 agricultural biotechnologyQD241-441AflatoxinsTandem Mass Spectrometryjuice modelsDrug Discoverydispersive liquid–liquid microextractionAnimalsVitisFood sciencePhysical and Theoretical ChemistryMycotoxinChromatography High Pressure LiquidOrange juicehigh-pressure processingbusiness.industry010401 analytical chemistry04 agricultural and veterinary sciencesMycotoxinsFood safety040401 food science0104 chemical sciencesFruit and Vegetable JuicesMilkchemistryChemistry (miscellaneous)Fruitaflatoxin B1Molecular Medicinebusinessliquid chromatography coupled to tandem mass spectrometryFood contaminantMolecules (Basel, Switzerland)
researchProduct

Green aspects, developments and perspectives of liquid phase microextraction techniques.

2014

Determination of analytes at trace levels in complex samples (e.g. biological or contaminated water or soils) are often required for the environmental assessment and monitoring as well as for scientific research in the field of environmental pollution. A limited number of analytical techniques are sensitive enough for the direct determination of trace components in samples and, because of that, a preliminary step of the analyte isolation/enrichment prior to analysis is required in many cases. In this work the newest trends and innovations in liquid phase microextraction, like: single-drop microextraction (SDME), hollow fiber liquid-phase microextraction (HF-LPME), and dispersive liquid-liqu…

AnalyteChromatographyChemistryLiquid Phase MicroextractionEnvironmental pollutionSolid-phase microextractionAnalytical ChemistrySolutionschemistry.chemical_compoundCapillary electrophoresisLiquid–liquid extractionIonic liquidSolventsSample preparationGas chromatographyTalanta
researchProduct

Stir bar sorptive-dispersive microextraction mediated by magnetic nanoparticles-metal organic framework composite: Determination of N-nitrosamines in…

2019

Abstract A new analytical method based on the recently proposed stir bar sorptive-dispersive microextraction (SBSDME) technique has been developed to determine eight hazardous N-nitrosamines in cosmetic products. As previous step, a simple clean-up is carried out with hexane to remove those highly lipophilic compounds that disturb the SBSDME step. Subsequently, SBSDME is performed by using magnetic nanoparticles–metal organic framework composite, CoFe2O4/MIL-101(Fe), as sorbent to entrap the target analytes, which are later chemically desorbed and measured by liquid chromatography–tandem mass spectrometry (LC–MS/MS). The experimental variables related to the SBSDME procedure were studied to…

AnalyteNitrosaminesSorbentLiquid Phase MicroextractionCosmetics010402 general chemistryMass spectrometry01 natural sciencesBiochemistryChemistry Techniques AnalyticalAnalytical Chemistrychemistry.chemical_compoundLimit of DetectionTandem Mass SpectrometryLiquid chromatography–mass spectrometryMagnetite NanoparticlesMetal-Organic FrameworksDetection limitChromatography010401 analytical chemistryOrganic ChemistryGeneral MedicineRepeatability0104 chemical sciencesHexanechemistryMagnetic nanoparticlesHydrophobic and Hydrophilic InteractionsChromatography LiquidJournal of Chromatography A
researchProduct

Application of a low transition temperature mixture for the dispersive liquid–liquid microextraction of illicit drugs from urine samples

2021

© 2021 by the authors.

BioanalysisLiquid Phase MicroextractionProductes biològicsIllicit drugsDispersive liquid–liquid mi-croextractionPharmaceutical ScienceOrganic chemistryUrineUrineHigh-performance liquid chromatographyBiological samples; Deep eutectic solvents; Dispersive liquid–liquid mi-croextraction; Drugs; High performance liquid chromatography; Illicit drugs; Low transition temperature mixtures; UrineArticleLow transition temperature mixturesAnalytical Chemistrychemistry.chemical_compoundBiological samplesQD241-441Limit of DetectionDrug DiscoveryHumansTransition TemperatureSample preparationPhysical and Theoretical ChemistryChromatographyChemistryExtraction (chemistry)Deep eutectic solventsDrugsSolventCold TemperatureChemistry (miscellaneous)Dispersive liquid–liquid microextractionMolecular MedicineDroguesGlass transitionCholine chlorideHigh performance liquid chromatography
researchProduct

Passive exposure to nicotine from e-cigarettes

2016

A procedure based on the use of ion mobility spectrometry (IMS), after liquid-liquid microextraction (LLME), has been successfully employed for the determination of passive exposure to nicotine from cigarette and e-cigarette smoking. Nicotine has been determined in exhaled breath and oral fluids of both, active and passive smokers. The aforementioned studies, made in closed environments, evidenced that the exhaled breath after conventional blend cigarette smoke provides nicotine levels of the order of 220 ng per puff, in the case of experienced smokers, being exhaled only 32 ng in the case of e-cigarettes. On the other hand, the nicotine amount in oral fluids of passive vapers was between 8…

Bodily SecretionsNicotineLiquid Phase MicroextractionElectronic Nicotine Delivery Systems01 natural sciencesAnalytical ChemistryNicotine03 medical and health sciences0302 clinical medicinemedicineHumansCigarette smoke030212 general & internal medicineChromatographyChemistry010401 analytical chemistryEnvironmental ExposurePassive ExposureEnvironmental exposureExhaled air0104 chemical sciencesBreath TestsOral fluidTobacco Smoke PollutionBodily secretionsmedicine.drugTalanta
researchProduct

In-situ suspended aggregate microextraction: A sample preparation approach for the enrichment of organic compounds in aqueous solutions.

2015

Abstract This work presents in-situ suspended aggregate microextraction (iSAME) as a new and expedient sample preparation method. This new concept capitalizes on the general principles of in-situ solvent formation microextraction, in the sense that extraction is carried out in a supramolecular aggregate phase, which is formed in-situ in the sample through one-step process involving ion-association between a cationic surfactant and a benzene sulfonic acid derivative. The suspended aggregate containing the analytes is then collected in the form of a thin-film on the surface of a common filter paper by suction filtration. The entrapped analytes are released by completely dissolving the thin-fi…

Calibration curveLiquid Phase MicroextractionAnalytical chemistryBiochemistryAnalytical Chemistrylaw.inventionMatrix (chemical analysis)ElectrolyteslawSample preparationSolid phase extractionOrganic ChemicalsDissolutionFiltrationAqueous solutionChromatographyChemistryOrganic ChemistryExtraction (chemistry)Osmolar ConcentrationWaterGeneral MedicineHydrogen-Ion ConcentrationSolventsFiltrationWater Pollutants ChemicalJournal of chromatography. A
researchProduct