Search results for "Ion Mobility Spectrometry"

showing 10 items of 12 documents

Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker…

2020

A major problem with dietary assessments is their subjective nature. Untargeted metabolomics and new technologies can shed light on this issue and provide a more complete picture of dietary intake by measuring the profile of metabolites in biological samples. Oranges are one of the most consumed fruits in the world, and therefore one of the most studied for their properties. The aim of this work was the application of untargeted metabolomics approach with the novel combination of ion mobility separation coupled to high resolution mass spectrometry (IMS-HRMS) and study the advantages that this technique can bring to the area of dietary biomarker discovery, with the specific case of biomarker…

AdultMale0301 basic medicineCitruslcsh:TX341-641Orange (colour)Diet Surveys01 natural sciencesorange intakeArticleMass SpectrometryEating03 medical and health sciencesMetabolomicsion mobilityIon Mobility SpectrometryHumansBiomarker discoveryChromatography High Pressure LiquidCross-Over Studies030109 nutrition & dieteticsNutrition and DieteticsChromatographyPlasma samplesChemistryDietary intake010401 analytical chemistryfood and beveragesbiomarkersCrossover studyIntervention studiesmetabolomicsHealthy Volunteers0104 chemical sciencesDietary biomarkersFemalelcsh:Nutrition. Foods and food supplyFood Science
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Magnetic molecularly imprinted polymers for the selective determination of cocaine by ion mobility spectrometry

2018

Abstract Magnetic molecularly imprinted polymers (MMIPs) were prepared for cocaine recognition by bulk polymerization in the presence of magnetic nanoparticles (MNPs). Two reagents (polyethylene glycol (PEG) and 3-(trimethoxysilyl)propyl methacrylate (V)) were used for MNPs modification. MMIPs were characterized and compared in terms of loading capacity, reusability, accuracy and precision for the extraction of cocaine from saliva samples. It was observed that V-MMIPs gave higher physical stability than PEG-MMIPs. Thus, V-MMIP were used for the analysis of cocaine users saliva. The developed procedure based on ion mobility spectrometry (IMS) provided limits of detection and quantification o…

AdultMaleBulk polymerizationPolymersIon-mobility spectrometry02 engineering and technologyPolyethylene glycolTandem mass spectrometryMethacrylate01 natural sciencesBiochemistryPolyethylene GlycolsAnalytical ChemistryMolecular ImprintingMagneticsYoung Adultchemistry.chemical_compoundCocaineIon Mobility SpectrometryHumansOrganosilicon CompoundsSalivaChromatography High Pressure LiquidDetection limitChromatography010401 analytical chemistryOrganic ChemistryMolecularly imprinted polymerSignal Processing Computer-AssistedGeneral Medicine021001 nanoscience & nanotechnology0104 chemical scienceschemistryMethacrylatesMagnetic nanoparticlesFemale0210 nano-technologyJournal of Chromatography A
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Tuning the selectivity of molecularly imprinted polymer extraction of arylcyclohexylamines: From class-selective to specific

2020

Abstract A molecularly imprinted polymer (MIP) has been prepared in presence of 3-hydroxy phencyclidine (3-OH PCP) as template by bulk polymerization using N,N-dimethylformamide, as porogenic solvent, for the selective solid-phase extraction (SPE) of arylcyclohexylamines from oral fluids. Experimental variables of the extraction procedure have been studied in order to increase both, extraction recovery of 3-OH PCP, used as model analyte, and imprinting factor. By modifying the composition of the washing solvent, the selectivity of the MIP extraction procedure can be tuned, moving from an arylcyclohexylamine selective method to a 3-OH PCP specific method. The applicability of the synthesized…

AnalyteArylcyclohexylamineBulk polymerizationSurface PropertiesIon-mobility spectrometry02 engineering and technology01 natural sciencesBiochemistryPolymerizationAnalytical ChemistryMolecularly Imprinted PolymersIon Mobility SpectrometrymedicineEnvironmental ChemistryParticle SizeSpectroscopyDetection limitCyclohexylaminesChromatographyMolecular StructureChemistry010401 analytical chemistryMolecularly imprinted polymer021001 nanoscience & nanotechnology0104 chemical sciencesSolvent0210 nano-technologySelectivitymedicine.drugAnalytica Chimica Acta
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Ion mobility mass spectrometry – an efficient tool for the analysis of conformational switch of macrocyclic receptors upon anion binding

2021

Interactions between anions and synthetic macrocyclic receptors belong to the extensively explored area of research due to the particularly important functions of anions in biological and environmental sciences. Structures of anion-macrocycle complexes are closely related to their function, highlighting the importance of structural analysis of the complexes. Here, we discuss the application of ion mobility mass spectrometry (IM-MS) and theoretical calculations to the structural analysis of tetralactam macrocycles (M) with varying flexibility and structural properties, and their complexes with anions [M + X]−. Collision cross section (CCS) values obtained from both direct drift tube (DT) and…

AnionsDrift tubeIon-mobility spectrometry010401 analytical chemistryMolecular Conformation010402 general chemistry01 natural sciencesBiochemistryMass Spectrometry0104 chemical sciencesAnalytical ChemistryIonCharacterization (materials science)Computational chemistryIon Mobility SpectrometryElectrochemistryEnvironmental ChemistryReceptorAnion bindingSpectroscopyThe Analyst
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Molecularly imprinted polymer-based device for field collection of oral fluid samples for cocaine identification.

2020

In this paper, a low-cost, rapid, easy, and potentially portable tool for the identification of cocaine and its semi-quantitative determination in oral fluid has been proposed. A field collection device has been designed, based on a cotton pad with an indicator and a molecularly imprinted polymer (MIP) sorbent, to selective retain cocaine from oral fluid components. After sample collection, cocaine is transferred by using phosphate buffer to the MIP and then eluted with 2-propanol. The obtained extract is analysed by ion mobility spectrometry (IMS), providing a cut-off value of 20 µg L-1 that identifies 100 % true-positive and 95 % true-negative samples. The MIP-IMS procedure has been valid…

ChromatographyElutionIon-mobility spectrometryChemistryPolymers010401 analytical chemistryOrganic ChemistryMolecularly imprinted polymerGeneral Medicine010402 general chemistry01 natural sciencesBiochemistry0104 chemical sciencesAnalytical ChemistryMolecular ImprintingSubstance Abuse DetectionHealth personnelIdentification (information)CocaineIon Mobility SpectrometryOral fluidHumansSample collectionSalivaLateral flow immunoassayJournal of chromatography. A
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Analysis of drugs including illicit and new psychoactive substances in oral fluids by gas chromatography-drift tube ion mobility spectrometry

2021

Abstract In this study, a gas chromatograph (GC) has been coupled to a drift tube ion mobility spectrometer (IMS) in order to develop an analytical procedure for the determination of psychoactive substances in oral fluids. Working parameters, including the GC-IMS interface ones, were adjusted in order to obtain sensitive and robust signals. A volume of 500 μL of oral fluid was extracted with 250 μL chloroform and, after centrifugation, were injected into the GC-IMS system. Amphetamine, methylone, α-PVP, ketamine, lidocaine, MPHP, cocaine, THJ-2201, and 5F-ADB were employed as model compounds, providing limits of detection from 6 to 15 μg L−1 and recoveries from 70 to 115% for field oral flu…

Detection limitAnalyteChloroformChromatographyIon-mobility spectrometryMethyloneGas Chromatography-Mass SpectrometryAnalytical ChemistryAmphetaminechemistry.chemical_compoundCertified reference materialsCocainePharmaceutical PreparationschemistryLiquid–liquid extractionIon Mobility SpectrometrymedicineGas chromatographymedicine.drugTalanta
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Determination of the new psychoactive substance dichloropane in saliva by microextraction by packed sorbent – Ion mobility spectrometry

2018

Abstract A simple procedure based on microextraction by packed sorbent (MEPS) has been proposed for the extraction of dichloropane in oral fluids and its determination by ion mobility spectrometry (IMS). Extraction conditions such as type of sorbent (octyl and octadecyl silica), sample pH, number of sample loadings, and elution volume were evaluated to obtain the most appropriate values. Dichloropane was extracted from saliva samples using C8 MEPS, loading with 100 μL sample (adjusted to pH 7) in 4 cycles, washing with 100 μL deionized water, and eluting with 50 μL 2-propanol in 10 cycles. The proposed MEPS procedure has been validated in terms of linearity, accuracy, and precision. A limit…

Detection limitSalivaSorbentChromatographyChemistryIon-mobility spectrometryElution010401 analytical chemistryOrganic ChemistryExtraction (chemistry)General Medicine010402 general chemistryMass spectrometry01 natural sciencesBiochemistryGas Chromatography-Mass Spectrometry0104 chemical sciencesAnalytical ChemistryCocaineLimit of DetectionIon Mobility SpectrometryHumansGas chromatography–mass spectrometrySalivaSolid Phase MicroextractionJournal of Chromatography A
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Indoor and outdoor determination of pesticides in air by ion mobility spectrometry.

2016

Abstract The use of ion mobility spectrometry (IMS) has been evaluated as analytical methodology to detect and evaluate the occupational exposure to pesticides. The developed IMS methodology was used, in positive and negative modes, to determine the presence of pesticides in air and to evaluate possible inhalation exposures of workers and users based on active sampling on Teflon membranes and direct thermal desorption IMS. The negative IMS mode was used to determine bensulfuron, clorpyrifos, diniconazole, diuron, flutolanil and imidacloprid, while the positive mode was employed to evaluate formetanate, metalaxyl, metamitrone, metribuzin, paclobutrazol and pirimicarb. The IMS measurements pr…

FarmsIon-mobility spectrometry02 engineering and technologyPirimicarb01 natural sciencesAnalytical Chemistrychemistry.chemical_compoundMetribuzinOccupational ExposureIon Mobility SpectrometryHumansPesticidesAir quality indexPolytetrafluoroethylenePhytosanitary certificationAir PollutantsInhalation ExposureChemistry010401 analytical chemistryPesticide021001 nanoscience & nanotechnology0104 chemical sciencesFormetanateEnvironmental chemistryAir Pollution IndoorOccupational exposure0210 nano-technologyEnvironmental MonitoringTalanta
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Dispersive magnetic immunoaffinity extraction. Anatoxin-a determination.

2017

Specific monoclonal antibodies were coupled with magnetic Sepharose-based beads and used, for the first time. The methodology was applied to preconcentrate anatoxin-a from water and the later determination by ion mobility spectrometry (IMS). Dispersive magnetic immunoaffinity (d-MagIA) extraction methodology provided a limit of detection of 0.02μgL-1 and a satisfactory precision with a relative standard deviation lower than 15%. Recoveries were evaluated at 0.5, 1.0 and 5.0μgL-1 anatoxin-a with quantitative values from 91 to 115%. Additionally, isobaric interferences with phenylalanine were completely avoided by the use of the developed d-MagIA extraction coupled to IMS determinations.

Ion-mobility spectrometryRelative standard deviationAnalytical chemistry02 engineering and technology01 natural sciencesBiochemistryAnalytical ChemistryAnatoxin-aSepharosechemistry.chemical_compoundMagneticsLimit of DetectionIon Mobility SpectrometryDetection limitChromatographyCyanobacteria ToxinsSepharose010401 analytical chemistryOrganic ChemistryExtraction (chemistry)Antibodies MonoclonalWaterGeneral Medicine021001 nanoscience & nanotechnology0104 chemical scienceschemistryIsobaric process0210 nano-technologyWater Pollutants ChemicalEnvironmental MonitoringTropanesJournal of chromatography. A
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OpenTIMS, TimsPy, and TimsR: Open and Easy Access to timsTOF Raw Data

2021

The Bruker timsTOF Pro is an instrument that couples trapped ion mobility spectrometry (TIMS) to high-resolution time-of-flight (TOF) mass spectrometry (MS). For proteomics, lipidomics, and metabolomics applications, the instrument is typically interfaced with a liquid chromatography (LC) system. The resulting LC-TIMS-MS data sets are, in general, several gigabytes in size and are stored in the proprietary Bruker Tims data format (TDF). The raw data can be accessed using proprietary binaries in C, C++, and Python on Windows and Linux operating systems. Here we introduce a suite of computer programs for data accession, including OpenTIMS, TimsR, and TimsPy. OpenTIMS is a C++ library capable …

Proteomics0301 basic medicineSwift030102 biochemistry & molecular biologyComputer scienceReading (computer)SuiteGeneral Chemistrycomputer.file_formatPython (programming language)Hierarchical Data Formatcomputer.software_genreBiochemistryMass Spectrometry03 medical and health sciences030104 developmental biologyData accessIon Mobility SpectrometryOperating systemRaw datacomputerSoftwareChromatography Liquidcomputer.programming_languageCodebaseJournal of Proteome Research
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